Changes for page 3.3 Control

Last modified by Admin on 2025/04/09 12:14

From version 10.8
edited by Admin
on 2024/12/24 16:27
Change comment: There is no comment for this version
To version 45.1
edited by Admin
on 2025/04/09 12:08
Change comment: There is no comment for this version

Summary

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Content
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1 1  (% data-numbered-headings-start="3" style="--numbered-headings-start: 2;font-size: 0px;color: rgba(0, 0, 0, 0.0);margin-bottom: 0px; margin-top: 0px;" %)
2 -= Settings =
2 += Configuration =
3 3  
4 4  (% data-numbered-headings-start="3" style="--numbered-headings-start: 2;font-size: 0px;color: rgba(0, 0, 0, 0.0);margin-bottom: 0px; margin-top: 0px;" %)
5 5  == Control ==
... ... @@ -21,7 +21,7 @@
21 21  ** Summation of cell voltages – the overall voltage is calculated as on sum of all cells in the battery;
22 22  ** Using voltage before contactors – the overall voltage is estimated as voltage before contactors measured by BMS.
23 23  
24 -The values “Capacity”, “Resistance”, “Cycles” are used to calculate the SOC of cells and the battery.
24 +The values “Capacity” and “Resistance” are used to calculate the SOC of cells and the battery.
25 25  
26 26  The values of “Relax time” are used to determine the state of the battery. If the battery is in a state of relaxation, the system recalculates the voltage on the cells to the state of charge of the battery.
27 27  
... ... @@ -70,8 +70,8 @@
70 70  
71 71  * Minimal SOC – the battery SOC is assumed to be the minimum SOC among the cells;
72 72  * Average SOC – the battery SOC is taken equal to the arithmetic average of the cell SOC;
73 -* Min-Max SOC – the battery SOC is calculated based on the minimum and maximum SOC of the cells. Final SOC will be a) 100% if any cell have 100% SOC, b) 0% if any cell have 0% SOC;
74 -* Max-Min SOC – the battery SOC is calculated based on the minimum and maximum SOC of the cells. Final SOC will be a) 100% if all cells have 100% SOC, b) 0% if all cells have 0% SOC;
73 +* Min-Max SOC – the battery SOC is calculated based on the minimum and maximum SOC of the cells. Final SOC will be a) 100% if any cell has 100% SOC, b) 0% if any cell has 0% SOC;
74 +* Max-Min SOC – the battery SOC is calculated based on the minimum and maximum SOC of the cells. Final SOC will be a) 100% if all cells have 100% SOC, b) 0% if all cells have 0% SOC.
75 75  
76 76  Other parameters:
77 77  
... ... @@ -165,7 +165,10 @@
165 165  
166 166  * the battery SOC is greater than the “Tolerant SOC” during the “Delay before clearing the signal” time.
167 167  
168 +(% class="box infomessage" %)
169 +(((
168 168  The "Low SOC signal" is indicative and can be output to a discrete output or a power switch.
171 +)))
169 169  
170 170  === High charging current (signal) ===
171 171  
... ... @@ -190,7 +190,10 @@
190 190  
191 191  * the measured current is less than the “Tolerant charging current” value during the “Delay before clearing the signal” time.
192 192  
196 +(% class="box infomessage" %)
197 +(((
193 193  The "High charging current" signal is indicative and can be output to a discrete output or a power switch.
199 +)))
194 194  
195 195  === Charge map ===
196 196  
... ... @@ -200,7 +200,7 @@
200 200  
201 201  To configure parameters for determining the charge current limit, select the "Control → Charge map" section:
202 202  
203 -[[image:1733322637793-171.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="177" width="800"]]
209 +[[image:1735064362593-844.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="153" width="800"]]
204 204  
205 205  In this section:
206 206  
... ... @@ -207,18 +207,18 @@
207 207  * Enable – a flag to start calculation of the charge current limit;
208 208  * Maximum charge current – a maximum allowable value of the charge current (under normal conditions), A;
209 209  * Rate of change – a rate of change the current limit to a new value (0 is for immediate change), A/s;
210 -* Option 1: Limit charge current by the battery SOC and temperature – a flag to enable correction of maximum allowable charging current Kcs depending on SOC and battery temperature;
216 +* Option 1: Limit charge current by the battery SOC and temperature – a flag to enable correction of maximum allowable charging current** Kcs** depending on __maximum cell SOC__ and battery temperature;
211 211  * Option 1: SOC x Temperature x Factor – the dependence of the correction factor on SOC and battery temperature;
212 -* Option 2: Limit charge current by the contactor temperature – a flag to enable correction of maximum allowable charging current Kcc depending on contactor temperature;
218 +* Option 2: Limit charge current by the contactor temperature – a flag to enable correction of maximum allowable charging current **Kcc** depending on contactor temperature;
213 213  * Option 2: Contactor temperature x Factor – the dependence of the correction factor on SOC and contactor temperature;
214 -* Option 3: Limit charge current by the maximum cell voltage - a flag to enable correction of maximum allowable charging current Kcv depending on maximum cell voltage;
220 +* Option 3: Limit charge current by the maximum cell voltage - a flag to enable correction of maximum allowable charging current **Kcv** depending on __the maximum cell U,,ocv,, voltage__ (corrected due to current and cell resistance)
215 215  * Option 3: Cell voltage x Factor – the dependence of the correction factor on maximum cell voltage;
216 -* Option 4: Limit charge current by the cell temperature - a flag to enable correction of maximum allowable charging current Kct depending on maximum cell temperature;
222 +* Option 4: Limit charge current by the cell temperature - a flag to enable correction of maximum allowable charging current **Kct** depending on maximum cell temperature;
217 217  * Option 4: Cell temperature x Factor – the dependence of the correction factor on maximum cell temperature.
218 218  
219 219  Value of the charge current limit at given SOC, temperature, contactors temperature, maximum cell voltage and maximum cell temperature is calculated as follows:
220 220  
221 -Charging current limit = Maximum charging current × Kcs × Kcc × Kcv × Kct
227 +**Charge current limit = Maximum charge current × Kcs × Kcc × Kcv × Kct**
222 222  
223 223  === Discharge map ===
224 224  
... ... @@ -228,7 +228,7 @@
228 228  
229 229  To configure parameters for determining the discharge current limit, select the "Control → Discharge map" section:
230 230  
231 -[[image:1733322637795-310.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="178" width="800"]]
237 +[[image:1735064399985-526.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="152" width="800"]]
232 232  
233 233  In this section:
234 234  
... ... @@ -235,18 +235,18 @@
235 235  * Enable – a flag to start calculation of the discharge current limit;
236 236  * Maximum discharge current – a maximum allowable value of the discharge current (under normal conditions), A;
237 237  * Rate of change – a rate of change the current limit to a new value (0 is for immediate change), A/s;
238 -* Option 1: Limit discharging current by the battery SOC and temperature – a flag to enable correction of maximum allowable discharging current Kds depending on SOC and temperature;
244 +* Option 1: Limit discharging current by the battery SOC and temperature – a flag to enable correction of maximum allowable discharging current **Kds **depending on __minimum cell SOC__ and temperature;
239 239  * Option 1: SOC x Temperature x Factor – the dependence of the correction factor on SOC and battery temperature;
240 -* Option 2: Limit discharge current by the contactor temperature – a flag to enable correction of maximum allowable discharging current Kdc depending on contactor temperature;
246 +* Option 2: Limit discharge current by the contactor temperature – a flag to enable correction of maximum allowable discharging current **Kdc** depending on contactor temperature;
241 241  * Option 2: Contactor temperature x Factor – the dependence of the correction factor on SOC and contactor temperature;
242 -* Option 3: Limit discharge current by the cell voltage - a flag to enable correction of maximum allowable discharging current Kdv depending on minimum cell voltage;
248 +* Option 3: Limit discharge current by the cell voltage - a flag to enable correction of maximum allowable discharging current **Kdv** depending on __the minimum cell U,,ocv,, voltage__ (corrected due to current and cell resistance)
243 243  * Option 3: Cell voltage x Factor – the dependence of the correction factor on minimum cell voltage;
244 -* Option 4: Limit discharge current by the cell temperature - a flag to enable correction of maximum allowable discharging current Kdt depending on maximum cell temperature;
250 +* Option 4: Limit discharge current by the cell temperature - a flag to enable correction of maximum allowable discharging current **Kdt** depending on maximum cell temperature;
245 245  * Option 4: Cell voltage x Factor – the dependence of the correction factor on minimum cell temperature.
246 246  
247 247  Value of the discharge current limit at given SOC, temperature, contactors temperature, minimum cell voltage and maximum cell temperature is calculated as follows:
248 248  
249 -Discharging current limit = Maximum discharging current × Kds × Kdc × Kdv × Kdt
255 +**Discharge current limit = Maximum discharge current × Kds × Kdc × Kdv × Kdt**
250 250  
251 251  === Charge map (PEAK & CONTINUOUS) ===
252 252  
... ... @@ -254,7 +254,7 @@
254 254  
255 255  To configure parameters for determining the charge current limit, select the "Control → Charge map (PEAK & CONTINUOUS)" section:
256 256  
257 -[[image:1733322637796-187.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="145" width="800"]]
263 +[[image:1735064434321-430.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="124" width="800"]]
258 258  
259 259  In this section:
260 260  
... ... @@ -281,7 +281,7 @@
281 281  
282 282  To configure parameters for determining the discharge current limit, select the "Control → Discharge map (PEAK & CONTINUOUS)" section:
283 283  
284 -[[image:1733322735595-661.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="145" width="800"]]
290 +[[image:1735064454708-345.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="124" width="800"]]
285 285  
286 286  In this section:
287 287  
... ... @@ -304,19 +304,116 @@
304 304  
305 305  === Main contactor ===
306 306  
307 -TBA
313 +The BMS Main 3 device controls the main contactor. The main contactor is usually placed in the common (minus) battery line for opening the charge and discharge circuits in case of sealing of the charging or discharging contactors.
308 308  
315 +The Main contactor algorithm supports the following modes:
316 +
317 +* Always on;
318 +* Automatic.
319 +
320 +In “Always on” mode main contactor closes if all the following is true:
321 +
322 +* Other contactors are open;
323 +* There are no errors from the "Errors 1, 2 ..." bitfileds.
324 +
325 +In “Always on” mode main contactor opens if all the following is true:
326 +
327 +* Other contactors are open;
328 +* There is an error from the the "Errors 1, 2 ..." bitfileds.
329 +
330 +In “Automatic” mode, the main contactor closes by internal algorithms at the same time with other contactors.
331 +
332 +In “On demand” mode, the main contactor closes by external the “Close Main contactor” request.
333 +
334 +(% class="box infomessage" %)
335 +(((
336 +**Note: **when errors occur in the system, the **Main **contactor opens either immediately or with the delay T,,off,, (depends on the settings described below).
337 +)))
338 +
339 +To change the parameters of the main contactor, select the "Control → Main contactor" section:
340 +
341 +[[image:1735064488658-863.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="112" width="800"]]
342 +
343 +In this section:
344 +
345 +* Enable – a flag to enable the main contactor control;
346 +* Algorithm – main contactor control algorithm:
347 +** Always on – contactor is always closed;
348 +** Automatic – contactor closes by internal charge and discharge algorithms;
349 +** On demand – contactor is closed by an external request;
350 +* Time to keep the contactor closed before closing the others – a time for other contactors to be open after the main contactor is closed;
351 +* Delay before opening the contactor – a time which is used to detect conditions for opening the contactor, s;
352 +* Keep the contactor open until the device is restarted – a flag for keeping the main contactor open until the system is reset;
353 +* Errors 1, 2 to open the main contactor – bitfields to choose the errors which will open the main contactor.
354 +
309 309  === Charging status ===
310 310  
311 -TBA
357 +To change the parameters of charging process status, select the "Control → Charging status" section:
312 312  
359 +[[image:1735064935499-941.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="110" width="800"]]In this section:
360 +
361 +* Current to set the "Charging current present" – a current level to generate the "Charging current present" signal, A;
362 +* Current to clear the "Charging current present" – a current level to clear the "Charging current present" signal, A;
363 +* Voltage to clear the “Ready to charge” – a threshold voltage level on the cell, V; if the voltage of any cell is above this level, the “Ready to charge” (hence, the “Allow charging”) signal is cleared;
364 +* Voltage to reset the “Ready to charge” – a tolerant voltage level on the cell, V; if all cell voltages are below the tolerant level, the “Ready to charge” (hence, the “Allow charging”) signal is set;
365 +* Delay before recharging – a time after which the previously opened the allow charging contactor closes again, minute; to disable the operation by timeout set "Delay before recharging" to 0;
366 +* Errors 1, 2 to clear the "Ready to charge" – bitfields to choose the errors which will clear the "Ready to charge" signal.
367 +
368 +(% class="box infomessage" %)
369 +(((
370 +**Note:** The "Allow charging" signal activates under two independent conditions:
371 +1) the voltage on the cells reaches the “Voltage to reset the “Ready to charge"” level and
372 +2) the "Delay before recharging" time has passed since the opening of the allow charging contactor.
373 +)))
374 +
313 313  === Discharging status ===
314 314  
315 -TBA
377 +To change the parameters of discharging process status, select the "Control → Discharging status" section:
316 316  
379 +[[image:1735064980481-209.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="102" width="800"]]In this section:
380 +
381 +* Current to set the "Discharging current present" – a current level to generate the "Discharging current present" signal, А;
382 +* Current to clear the "Discharging current present" – a current level to clear the "Discharging current present" signal, А;
383 +* Voltage to clear the “Ready to discharge” – a threshold voltage level on the cell, V; if the voltage of any cell is below this level, the “Ready to discharge” signal is cleared;
384 +* Voltage to reset the “Ready to discharge” – a tolerant voltage level on the cell, V; if all cells voltages are above the tolerant level, the “Ready to discharge” signal is set;
385 +* Errors 1, 2 to clear the "Ready to discharge" – bitfields to choose the errors which will clear the "Ready to discharge" signal.
386 +
317 317  === Precharge ===
318 318  
389 +The BMS Main 3 device can control the precharge contactor. The precharge contactor is used to charge the intermediate capacity with low current and usually placed with the limiting resistor in parallel to charging or discharging contactor.
319 319  
391 +BMS Main 3 device detects errors while pre-charging the load capacity by monitoring the current and voltage difference before and after contactors. Also BMS can measure the power dissipated on precharge resistor and generate an error if it greater than configured limit.
392 +
393 +TBA
394 +
395 +To change the parameters of precharge contactor, select the "Control → Precharge" section:
396 +
397 +[[image:1735065073836-743.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="160" width="800"]]
398 +
399 +* Precharge current threshold to finish precharging – a minimum current value at which precharging process assumed to be finished, A;
400 +* Check voltages before and after contactors to finish precharging – a flag to check the voltages before and after contactors to ensure that precharge process has finished and it is allowed to close the discharging contactor;
401 +* Minimum voltage difference to finish precharging – minimal voltage difference before and after contactors at which precharge process is meant to be finished, V;
402 +* Number of precharging attempts – maximum number of precharging attempts before setting the "Precharge error";
403 +* Precharge time – a duration of closing the precharge contactor before closing the discharging contactor, millisecond;
404 +* Relaxation between attempts – a duration between precharge attempts, millisecond;
405 +* Check the power dissipated in the preacharge resistor - a flag to enable the calculation of power dissipated in precharge resistor;
406 +* Precharge resistor resistance, Ohm;
407 +* Maximum allowable power dissipated in the resistor, W;
408 +* Delay before setting the "Precharge error" when checking power, millisecond;
409 +* Delay before clearing the "Precharge error", second;
410 +* Lock the "Precharge error" – a flag to block the error until the device is restarted.
411 +
412 +“Precharge error” generation conditions if any of the following is true:
413 +
414 +* the precharge current does not decrease during the "Precharge time" after "Number of precharging attempts";
415 +* voltages before and after contactors are not equal during the "Precharge time" after "Number of precharging attempts";
416 +* power dissipated on the precharge resistor is above the maximum value during the “Delay before setting the 'Precharge error' when checking power” time.
417 +
418 +(% class="box warningmessage" %)
419 +(((
420 +Behavior of contactors at “Precharge error” is configured in corresponding contactor settings!
421 +)))
422 +
320 320  === Charge ===
321 321  
322 322  There are two contactors that serve charging the battery: a charging contactor and an allow charging contactor. With the help of the allow charging contactor, the BMS commands the charger to start or stop charging.
... ... @@ -327,49 +327,36 @@
327 327  * On charger connected – charging is allowed when there is a signal “Charger connected”;
328 328  * On charge request – charging is allowed when there is a signal “Charge request”.
329 329  
330 -If the "**Always on**" algorithm is selected, the charging contactor and the allow charging contactor are always closed. If at least one of the errors appears:
433 +If the "**Always on**" algorithm is selected, the charging contactor and the allow charging contactor are always closed. If at least one of the errors from the "Errors 1, 2 ..." bitfields appears or one of the signals:
331 331  
332 -* Overvoltage;
333 -* Overcurrent;
334 -* High temperature (CH);
335 -* Low temperature (CH);
336 -* HYG offline (optional);
337 -* Combilift offline (optional);
338 -* Spirit offline (optional);
339 -* Spirit charger error (optional);
340 -* Short circuit (optional);
341 -* High contactor temperature (optional);
342 -* CH contactor cycles error;
343 -* Precharge error (optional);
344 -* Critical error
435 +* Service reset;
436 +* Power down request;
437 +* Inhibit charging,
345 345  
346 -or one of the signals:
347 -
348 -* Service reset
349 -* Power down request
350 -* Inhibit charging
351 -
352 352  both contactors are open (no current flows).
353 353  
354 354  When the algorithm "**On charger connected**" is selected, the control is performed as follows:
355 355  
356 -* If there is a signal “Charger connected” and there are no errors (see the list above), then through the delay time T,,on,, the charging contactor and the allow charging contactor close;
443 +* If there is a signal “Charger connected” and there are no errors (see the "Errors 1, 2 ..." bitfields), then through the delay time T,,on,, the charging contactor and the allow charging contactor close;
357 357  * If the signal “Charger connected” disappears, the allow charging contactor opens and after the delay time T,,off,, the charging contactor opens;
358 358  * If in the process of charging the voltage on the cell exceeds the “Ready to charge” level, the allow charging contactor opens (while the charging contactor remains closed);
359 -* If errors in the list above occur the charging contactor and allow charging contactor open.
446 +* If errors from the "Errors 1, 2 ..." bitfields occur the charging contactor and allow charging contactor open.
360 360  
361 361  When the "**On charge request**" algorithm selected, the control is performed as follows:
362 362  
363 -* If there is a signal “Charge request” and there are no errors (see the list above), then through the delay time T,,on,, the charging contactor and the allow charging contactor close;
450 +* If there is a signal “Charge request” and there are no errors (see the "Errors 1, 2 ..." bitfields), then through the delay time T,,on,, the charging contactor and the allow charging contactor close;
364 364  * If the signal “Charge request” disappears, the allow charging contactor opens and after the delay time T,,off,, the charging contactor opens;
365 365  * If in the process of charging the voltage on the cell exceeds the “Ready to charge” level, the allow charging contactor opens (while the charging contactor remains closed);
366 -* If errors in the list above occur the charging contactor and allow charging contactor open.
453 +* If errors from the "Errors 1, 2 ..." bitfields occur the charging contactor and allow charging contactor open.
367 367  
368 -Note – When errors occur in the system, the charging contactor opens either immediately or with the delay T,,off,, (depends on the settings described below).
455 +(% class="box infomessage" %)
456 +(((
457 +**Note: **when errors occur in the system, the **Charge **contactor opens either immediately or with the delay T,,off,, (depends on the settings described below).
458 +)))
369 369  
370 370  To change the parameters of the battery charge control algorithm, select the "Control → Charge" section:
371 371  
372 -[[image:1733322798914-813.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="327" width="800"]]
462 +[[image:1735063563460-549.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="262" width="800"]]
373 373  
374 374  In this section:
375 375  
... ... @@ -378,20 +378,15 @@
378 378  ** Always on – charging is always allowed;
379 379  ** On charger connected – charging is allowed when there is a signal “Charger connected”;
380 380  ** On charge request – charging is allowed when there is a signal “Charge request”;
381 -* Current corresponding to charging – a current level to generate the "Charging current present" signal, A;
382 -* Current corresponding to no charging – a current level to clear the "Charging current present" signal, A;
471 +* Allow charging only when the "Ready to charge" signal is set – charging contactor will open if "Ready to charge" signal is cleared;
383 383  * Delay before starting charging – a time delay T,,on,, before closing the charging contactor and the allow charging contactor, millisecond;
384 384  * Delay before stopping charging – a time delay T,,off,, before opening the charging contactor, millisecond;
474 +* Control the precharging contactor – a flag that allows control of the precharging contactor while closing the charge contactor (see [[Precharge>>path:#HPrecharge]]);
475 +* Errors 1, 2 to open the charging contactor – bitfields to choose the errors which will open the charging contactor;
385 385  * Use custom delays before stopping charging (on errors) – a flag to enable manual settings of time delays T,,off,, for specific errors;
386 -* Custom delay: <error> – specific error delay, millisecond;
477 +* Custom delay: <error> – delay for specific error, millisecond;
387 387  * Switch off the charging contactor on errors without delay – a flag to protectively open the charging contactor without a delay. In the opposite case, when an error is detected, the charging contactor opens always with the delay “Delay before stopping charging”;
388 -* Control the precharging contactor – a flag that allows control of the precharging contactor;
389 -* Voltage to clear the “Ready to charge” – a threshold voltage level on the cell, V; if the voltage of any cell is above this level, the “Ready to charge” (hence, the “Allow charging”) signal is cleared;
390 -* Voltage to reset the “Ready to charge” – a tolerant voltage level on the cell, V; if all cell voltages are below the tolerant level, the “Ready to charge” (hence, the “Allow charging”) signal is set;
391 -* Delay before recharging – a time after which the previously opened the allow charging contactor closes again, minute; to disable the operation by timeout set "Delay before recharging" to 0.
392 392  
393 -Note – The allow charging contactor closes under two independent conditions: 1) the voltage on the cells reaches the “Voltage to reset the “Ready to charge"” level and 2) the "Delay before recharging" time has passed since the opening of the allow charging contactor.
394 -
395 395  === Discharge ===
396 396  
397 397  The device controls the discharging contactor to connect battery to the load.
... ... @@ -402,26 +402,8 @@
402 402  * On charger disconnected – load is connected when there is no signal “Charger connected”;
403 403  * On discharge request – load is connected when there is signal “Discharge request”.
404 404  
405 -When the algorithm "**Always on**" is selected, the discharging contactor is always closed. If at least one of the errors appears:
490 +When the algorithm "**Always on**" is selected, the discharging contactor is always closed. If at least one of the errors from the "Errors 1, 2 ..." bitfields appears or one of the signals:
406 406  
407 -* Undervoltage;
408 -* Overvoltage (optional);
409 -* Overcurrent;
410 -* High temperature (DCH);
411 -* Low temperature (DCH) (optional);
412 -* HYG offline (optional);
413 -* Combilift offline (optional);
414 -* Spirit offline (optional);
415 -* Spirit charger error (optional);
416 -* Short circuit (optional);
417 -* High contactor temperature (optional);
418 -* Unallowable charging;
419 -* DCH contactor cycles error;
420 -* Precharge error (optional);
421 -* Critical error
422 -
423 -or one of the signals:
424 -
425 425  * Service reset
426 426  * Power down request
427 427  * Inhibit discharging
... ... @@ -430,21 +430,22 @@
430 430  
431 431  If the algorithm "**On charger disconnected**" is selected, the control is performed as follows:
432 432  
433 -* if there is no signal “Charger connected”, the charging contactor is open and there are no errors (see the list above), then through the delay time T,,on,, the discharging contactor closes;
434 -* If the signal “Charger connected” appears or errors occur (see the list above), then after the delay time T,,off,, the discharging contactor opens.
500 +* if there is no signal “Charger connected”, the charging contactor is open and there are no errors (see the "Errors 1, 2 ..." bitfields), then through the delay time T,,on,, the discharging contactor closes;
501 +* If the signal “Charger connected” appears or errors occur (see the "Errors 1, 2 ..." bitfields), then after the delay time T,,off,, the discharging contactor opens.
435 435  
436 436  When the "**On discharge request**" algorithm selected, the control is performed as follows:
437 437  
438 -* if there is signal “Discharge request”, the charging contactor is open and there are no errors (see the list above), then through the delay time T,,on,, the discharging contactor closes;
439 -* If the signal “Discharge request” disappears or errors occur (see the list above), then after the delay time T,,off,, the discharging contactor opens.
505 +* if there is signal “Discharge request”, the charging contactor is open and there are no errors (see the "Errors 1, 2 ..." bitfields), then through the delay time T,,on,, the discharging contactor closes;
506 +* If the signal “Discharge request” disappears or errors occur (see the "Errors 1, 2 ..." bitfields), then after the delay time T,,off,, the discharging contactor opens.
440 440  
441 -Note – In case of errors in the system operation, the opening of the discharging contactor is performed either immediately or with a delay T,,off,, (depends on the settings described below).
508 +(% class="box infomessage" %)
509 +(((
510 +**Note: **when errors occur in the system, the **Discharge **contactor opens either immediately or with the delay T,,off,, (depends on the settings described below).
511 +)))
442 442  
443 -The device supports controlling the precharging contactor. The duration of switching on the precharging contactor before closing the discharging (load) contactor is adjusted.
444 -
445 445  To change the parameters of the battery discharge control algorithm, select the "Control → Discharge" section:
446 446  
447 -[[image:1733323750262-841.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="360" width="800"]]
515 +[[image:1735064038329-836.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="273" width="800"]]
448 448  
449 449  In this section:
450 450  
... ... @@ -453,30 +453,51 @@
453 453  ** Always on – load is always connected;
454 454  ** On charger disconnected – load is connected when there is no signal “Charger connected”;
455 455  ** On discharge request – load is connected when there is signal “Discharge request”;
456 -* Current corresponding to discharging – a current level to generate the "Discharging current present" signal, А;
457 -* Current indicating no discharging – a current level to clear the "Discharging current present" signal, А;
524 +* Allow charging only when the "Ready to discharge" signal is set – discharging contactor will open if "Ready to discharge" signal is cleared;
458 458  * Delay before starting discharging – a time delay T,,on,, before closing the discharging contactor, millisecond;
459 459  * Delay before stopping discharging – a time delay T,,off,, before opening the discharging contactor, millisecond;
527 +* Control the precharging contactor – a flag that allows control of the precharging contactor while closing the discharge contactor (see [[Precharge>>doc:||anchor="HPrecharge"]]);
528 +* Errors 1, 2 to open the discharging contactor – bitfields to choose the errors which will open the discharging contactor;
460 460  * Use custom delays before stopping discharging (on errors) – a flag to enable manual settings of time delays T,,off,, for specific errors;
461 461  * Custom delay: <error> – specific error delay, millisecond;
462 462  * Switch off the discharging contactor on errors without delay – a flag to protectively open the discharging contactor without a delay. In the opposite case, when an error is detected, the discharging contactor opens always with the delay “Delay before stopping discharging”.
463 -* Precharge time – a duration of closing the precharge contactor before closing the discharging contactor, millisecond;
464 -* Check voltages before and after contactors to finish precharging – a flag to check the voltages before and after contactors to ensure that precharge process has finished and it is allowed to close the discharging contactor;
465 -* Minimum voltage difference to finish precharging – minimal voltage difference before and after contactors at which precharge process is meant to be finished, V;
466 -* Voltage to clear the “Ready to discharge” – a threshold voltage level on the cell, V; if the voltage of any cell is below this level, the “Ready to discharge” signal is cleared;
467 -* Voltage to reset the “Ready to discharge” – a tolerant voltage level on the cell, V; if all cells voltages are above the tolerant level, the “Ready to discharge” signal is set;
468 468  
469 469  === Charge/Discharge ===
470 470  
471 -The BMS Main 3 device can control the charging/discharging contactor, which combines algorithms of charging and discharging contactor. It behaves as a charging contactor when “Charge request” or “Charger connected” is set, otherwise – as a discharging contactor.
535 +The BMS Main 3 device can control the charge/discharge contactor, which combines algorithms of charging and discharging contactor.
472 472  
537 +Charge/Discharge contactor has three algorithms of operation:
538 +
539 +* Dependent (on Charging and Discharging signals) - Charge/Discharge contactor depends on Charge and Discharge algorithms and their signals and behaves as Charging contactor if Charging signal is set, otherwise – as Discharging contactor;
540 +* Independent (Always) - Charge/Discharge contactor is always closed if there is no errors;
541 +* Independent (on Charge request or Discharge request) - Charge/Discharge contactor is based on its own controller that listen to Charge and Discharge requests and closes if one of these signals occurs.
542 +
543 +TBA
544 +
545 +(% class="box infomessage" %)
546 +(((
547 +**Note: **when errors occur in the system, the **Charge/Discharge **contactor opens either immediately or with the delay T,,off,, (depends on the settings described below).
548 +)))
549 +
473 473  The charging/discharging contactor control is configured in the “Control – Charge/Discharge” section:
474 474  
475 -[[image:1733322827919-875.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="85" width="800"]]
552 +[[image:1735122153011-166.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="162" width="800"]]
476 476  
477 477  In this section:
478 478  
479 479  * Enable – a flag to enable the charge/discharge controller.
557 +* Algorithm:
558 +** Dependent (on Charging and Discharging signals) - Charge/Discharge contactor depends on Charge and Discharge algorithms and their signals and behaves as Charging contactor if Charging signal is set, otherwise – as Discharging contactor;
559 +** Independent (Always) - Charge/Discharge contactor is always closed if there is no errors;
560 +** Independent (on Charge request or Discharge request);
561 +* Delay before starting charging or discharging, millisecond;
562 +* Delay before stopping charging or discharging, millisecond;
563 +* Control the precharging contactor – a flag that enables control of precharging contactor while closing the charge/discharge contactor;
564 +* Emulate the "Charging" and "Discharging" signals – a flag to enable generation of "Charging" and "Discharging" signals when closing charge/discharge contactor;
565 +* Errors 1, 2 to prevent CHARGING through charging/discharging contactor, Errors 1, 2 to prevent DISCHARGING through charging/discharging contactor – bitfields to choose the errors which will open the charging/discharging contactor. This bitfields are combined by bitwise OR and intended to separate settings for charging and discharging processes;
566 +* Errors 1, 2 which affect the contactor only if battery CHARGING is detected – a bitfield to choose the errors which will trigger only if charging current is present. This bitfield is combined with "Errors 1, 2 to prevent CHARGING through charging/discharging contactor" by bitwise AND;
567 +* Errors 1, 2 which affect the contactor only if battery DISCHARGING is detected – a bitfield to choose the errors which will trigger only if discharging current is present. This bitfield is combined with "Errors 1, 2 to prevent DISCHARGING through charging/discharging contactor" by bitwise AND;
568 +* Switch off the charging/discharging contactor on errors without delay – a flag to protectively open the charging/discharging contactor without a delay. In the opposite case, when an error is detected, the charging/discharging contactor opens always with the delay “Delay before stopping discharging”.
480 480  
481 481  === Discharge (AUX) ===
482 482  
... ... @@ -488,11 +488,11 @@
488 488  
489 489  * the battery has low SOC;
490 490  * the battery voltage is out of range;
491 -* the battery system errors are detected.
580 +* the errors are detected (configured in the "Errors 1, 2 ..." bitfields).
492 492  
493 493  To change the parameters of the powering of external equipment, select the "Control → Discharge (AUX)" section:
494 494  
495 -[[image:1733322827920-878.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="130" width="800"]]
584 +[[image:1735066190419-838.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="161" width="800"]]
496 496  
497 497  In this section:
498 498  
... ... @@ -500,66 +500,14 @@
500 500  * Switch off the discharging (AUX) contactor if the SOC is too low;
501 501  * Minimum SOC – a minimum SOC value, when reached, the auxiliary (AUX) discharging contactor opens, %;
502 502  * Tolerant SOC – a permissive SOC value, upon reaching which the auxiliary (AUX) discharging contactor re-closes, %;
592 +* Switch off the discharging (AUX) contactor if the cell voltage is out of the range;
593 +* Minimum cell voltage, V;
594 +* Maximum cell voltage, V;
503 503  * Switch off the discharging (AUX) contactor if the battery voltage is out of the range;
504 -* Minimum voltage – minimum battery voltage, V;
505 -* Maximum voltage – maximum battery voltage, V;
506 -* Switch off the discharging (AUX) contactor on errors – the auxiliary (AUX) discharging contactor opens if the following errors occur: Undervoltage, Overcurrent, High temperature (DCH), Short circuit, Critical error.
596 +* Minimum battery voltage, V;
597 +* Maximum battery voltage, V;
598 +* Errors 1, 2 to open the auxiliary discharging contactor bitfields to choose the errors which will open the auxiliary discharging contactor.
507 507  
508 -=== Main contactor ===
509 -
510 -The BMS Main 3 device controls the main contactor. The main contactor is usually placed in the common (minus) battery line for opening the charge and discharge circuits in case of sealing of the charging or discharging contactors.
511 -
512 -The Main contactor algorithm supports the following modes:
513 -
514 -* Always on;
515 -* Automatic;
516 -* On demand.
517 -
518 -In “Always on” mode main contactor closes if all the following is true:
519 -
520 -* Charging contactor is open;
521 -* Discharging contactor is open;
522 -* There are no errors from the list below:
523 -** Overcurrent;
524 -** Undervoltage;
525 -** Overvoltage;
526 -** High temperature (CH);
527 -** High temperature (DCH);
528 -** Unallowable charging;
529 -** Critical error.
530 -
531 -In “Always on” mode main contactor opens if all the following is true:
532 -
533 -* Charging contactor is open;
534 -* Discharging contactor is open;
535 -* There is an error from the list below:
536 -** Overcurrent;
537 -** Undervoltage;
538 -** Overvoltage;
539 -** High temperature (CH);
540 -** High temperature (DCH);
541 -** Unallowable charging;
542 -** Critical error.
543 -
544 -In “Automatic” mode, the main contactor closes by internal charging and discharging algorithms at the same time with Precharging, Charging and Discharging contactors.
545 -
546 -In “On demand” mode, the main contactor closes by external the “Close Main contactor” request.
547 -
548 -To change the parameters of the main contactor, select the "Control → Main contactor" section:
549 -
550 -[[image:1733322872744-536.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="105" width="800"]]
551 -
552 -In this section:
553 -
554 -* Enable – a flag to enable the main contactor control;
555 -* Algorithm – main contactor control algorithm:
556 -** Always on – contactor is always closed;
557 -** Automatic – contactor closes by internal charge and discharge algorithms;
558 -** On demand – contactor is closed by an external request;
559 -* Time to keep the contactor closed before closing the others – a time for other contactors to be open after the main contactor is closed;
560 -* Delay before opening the contactor – a time which is used to detect conditions for opening the contactor, s;
561 -* Keep the contactor open until the device is restarted – a flag for keeping the main contactor open until the system is reset.
562 -
563 563  === Cell balancing ===
564 564  
565 565  Balancing makes the voltage of all cells equal to the minimum cell voltage.
... ... @@ -573,20 +573,25 @@
573 573  A balancing resistor is connected to the cell if the following conditions are simultaneously met:
574 574  
575 575  * the voltage on the cell is higher than the balancing start voltage;
576 -* the difference between the voltage on the cell and the minimum voltage among the battery cells is greater than the balancing start threshold.
613 +* the difference between the voltage on the cell and the minimum voltage among the battery cells is greater than the balancing start threshold;
577 577  
578 578  A balancing resistor is disconnected from the cell if any of the following conditions are met:
579 579  
580 -* the voltage on the cell is less than the balancing start voltage;
617 +* the voltage on the cell is less than the balancing stop voltage;
581 581  * the difference between the voltage on the cell and the minimum voltage among the battery cells is less than the balancing stop threshold.
582 582  
620 +(% class="box infomessage" %)
621 +(((
583 583  If the “High logic temperature” occurs, then the balancing of the cells connected to the overheated BMS Logic device will not be performed.
623 +)))
584 584  
585 585  The BMS Main 3 can enable the cell balancing by the external “Balancing request” signal. Balancing process will be started to cells which the voltage is higher than the balancing start voltage and the difference between the cell voltage and the minimum voltage among all the cells is greater than the balancing stop threshold.
586 586  
627 +BMS Main 3 can force a cell balancing, if its voltage is higher than estimated value.
628 +
587 587  To change the cell balancing parameters, select the "Control → Cell balancing" section:
588 588  
589 -[[image:1733322883460-118.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="114" width="800"]]
631 +[[image:1735065702806-422.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="130" width="800"]]
590 590  
591 591  In this section:
592 592  
... ... @@ -595,12 +595,14 @@
595 595  ** Balance on charge – balancing is performed while and after the charging (in the “Charge ON” and “Charge OFF” states);
596 596  ** Balance on charge or relaxed - balancing is performed while and after the charging and in the relaxed state (in “Charge ON”, “Charge OFF”, “Relaxed (after charging)” and “Relaxed (after discharging)” states);
597 597  ** Balance always – balancing is always performed regardless the battery state;
598 -
599 -[[image:1733322883462-975.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="74" width="600"]]
600 -
640 +* Balancing condition:
641 +** Automatic – balancing will be performed automatically if needed conditions are met;
642 +** On balancing request – balancing will start only if a remote request is received. In this case cells will start to balance regardless the "Voltage deviation to start balancing" value;
601 601  * Minimum cell voltage to start balancing, V;
602 602  * Voltage deviation to start balancing;
603 603  * Voltage deviation to stop balancing;
646 +* Voltage for forced balancing – if cell voltage is above this value, it will start discharging through balancing resistor;
647 +* Maximum allowable temperature of BMS Logic devices, ºC;
604 604  * Command to discharge all cells – a flag to force the balancing of all cells.
605 605  
606 606  === Series balancing ===
... ... @@ -678,7 +678,10 @@
678 678  
679 679  * the minimum temperature among all cells of the battery is greater than the “Tolerant cell temperature” value during the “Delay before stopping the heater” time.
680 680  
681 -If there is the "Heater" signal, the heater contactor closes and/or a signal is output to the corresponding digital output.
725 +(% class="box infomessage" %)
726 +(((
727 +If there is the "Heater" signal, the heater contactor closes and/or a signal is set to the corresponding digital output.
728 +)))
682 682  
683 683  === Cooler ===
684 684  
... ... @@ -705,7 +705,10 @@
705 705  
706 706  * the maximum temperature among all cells of the battery is less than the “Tolerant cell temperature” value during the “Delay before stopping the cooler” time.
707 707  
708 -If there is the "Cooler" signal, the cooler contactor closes and/or a signal is output to the corresponding digital output.
755 +(% class="box infomessage" %)
756 +(((
757 +If there is the "Cooler" signal, the cooler contactor closes and/or a signal is set to the corresponding digital output.
758 +)))
709 709  
710 710  === High voltage ===
711 711  
... ... @@ -723,7 +723,10 @@
723 723  
724 724  The BMS Main 3 implements a self-diagnostics of high-voltage measurement lines. If measurement line breaks or high-voltage polarity is wrong, “High voltage fault” is generated.
725 725  
726 -**If there is the “High voltage fault”, the “Critical error” is generated and all contactors open.**
776 +(% class="box warningmessage" %)
777 +(((
778 +If there is the “High voltage fault”, **the “Critical error” is generated.**
779 +)))
727 727  
728 728  === Cell analysis ===
729 729  
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