Changes for page 3.3 Control
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... ... @@ -202,31 +202,25 @@ 202 202 203 203 To configure parameters for determining the charge current limit, select the "Control → Charge map" section: 204 204 205 -[[image:1733746766504-864.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="138" width="800"]] 206 - 205 +[[image:1740397188247-315.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="179" width="800"]] 207 207 In this section: 208 208 209 209 * Enable – a flag to start calculation of the charge current limit; 210 -* Maximum charge current – a maximum allowable value of the charge current (under normal conditions): 211 -* 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; 209 +* Maximum charge current – a maximum allowable value of the charge current (under normal conditions), A; 210 +* Rate of change – a rate of change the current limit to a new value (0 is for immediate change), A/s; 211 +* 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; 212 212 * Option 1: SOC x Temperature x Factor – the dependence of the correction factor on SOC and battery temperature; 213 - 214 -[[image:1733746766506-660.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="196" width="800"]] 215 - 216 -* 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 +* Option 2: Limit charge current by the contactor temperature – a flag to enable correction of maximum allowable charging current **Kcc** depending on contactor temperature; 217 217 * Option 2: Contactor temperature x Factor – the dependence of the correction factor on SOC and contactor temperature; 215 +* 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) 216 +* Option 3: Cell voltage x Factor – the dependence of the correction factor on maximum cell voltage; 217 +* 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; 218 +* Option 4: Cell temperature x Factor – the dependence of the correction factor on maximum cell temperature. 218 218 219 - [[image:1733746766508-178.png||data-xwiki-image-style-alignment="center"data-xwiki-image-style-border="true"height="184"width="800"]]220 +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 -* 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; 222 -* Option 3: Cell voltage x Factor – the dependence of the correction factor on maximum cell voltage. 222 +**Charge current limit = Maximum charge current × Kcs × Kcc × Kcv × Kct** 223 223 224 -[[image:1733746766509-971.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="217" width="800"]] 225 - 226 -Value of the charge current limit at given SOC, temperature, contactors temperature and maximum cell voltage is calculated as follows: 227 - 228 -Charging current limit = Maximum charging current × Kcs × Kcc × Kcv 229 - 230 230 === Discharge map === 231 231 232 232 The BMS Mini device calculates maximum allowable discharge current values in respect to SOC, battery temperature, contactor temperature and cell voltage. ... ... @@ -235,31 +235,135 @@ 235 235 236 236 To configure parameters for determining the discharge current limit, select the "Control → Discharge map" section: 237 237 238 -[[image:173 3746766511-477.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="149" width="800"]]232 +[[image:1740397304972-174.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="182" width="800"]] 239 239 240 240 In this section: 241 241 242 242 * Enable – a flag to start calculation of the discharge current limit; 243 -* Maximum discharge current – a maximum allowable value of the discharge current (under normal conditions): 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 SOC and temperature; 237 +* Maximum discharge current – a maximum allowable value of the discharge current (under normal conditions), A; 238 +* Rate of change – a rate of change the current limit to a new value (0 is for immediate change), A/s; 239 +* 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; 245 245 * Option 1: SOC x Temperature x Factor – the dependence of the correction factor on SOC and battery temperature; 241 +* Option 2: Limit discharge current by the contactor temperature – a flag to enable correction of maximum allowable discharging current **Kdc** depending on contactor temperature; 242 +* Option 2: Contactor temperature x Factor – the dependence of the correction factor on SOC and contactor temperature; 243 +* 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) 244 +* Option 3: Cell voltage x Factor – the dependence of the correction factor on minimum cell voltage; 245 +* 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; 246 +* Option 4: Cell voltage x Factor – the dependence of the correction factor on minimum cell temperature. 246 246 247 - [[image:1733746766512-300.png||data-xwiki-image-style-alignment="center"data-xwiki-image-style-border="true"height="195"width="800"]]248 +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 -* Option 2: Limit discharge current by the contactor temperature – a flag to enable correction of maximum allowable discharging current Kdc depending on contactor temperature; 250 -* Option 2: Contactor temperature x Factor – the dependence of the correction factor on SOC and contactor temperature; 250 +**Discharge current limit = Maximum discharge current × Kds × Kdc × Kdv × Kdt** 251 251 252 - [[image:1733746766513-161.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true"height="183" width="800"]]252 +=== Main contactor === 253 253 254 -* 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; 255 -* Option 3: Cell voltage x Factor – the dependence of the correction factor on minimum cell voltage. 254 +The BMS Mini 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 a case of sealing of the charging or discharging contactors. 256 256 257 - [[image:1733746766514-686.png||data-xwiki-image-style-alignment="center"data-xwiki-image-style-border="true"height="215"width="800"]]256 +The Main contactor algorithm supports the following modes: 258 258 259 -Value of the discharge current limit at given SOC, temperature, contactors temperature and minimum cell voltage is calculated as follows: 258 +* Always on; 259 +* Automatic. 260 260 261 - Dischargingcurrent limit= Maximumdischargingcurrent × Kds× Kdc × Kdv261 +In “Always on” mode main contactor closes if all the following is true: 262 262 263 +* Other contactors are open; 264 +* There are no errors from the "Errors 1, 2 ..." bitfileds. 265 + 266 +In “Always on” mode main contactor opens if all the following is true: 267 + 268 +* Other contactors are open; 269 +* There is an error from the the "Errors 1, 2 ..." bitfileds. 270 + 271 +In “Automatic” mode, the main contactor closes by internal algorithms at the same time with other contactors. 272 + 273 +In “On demand” mode, the main contactor closes by external the “Close Main contactor” request. 274 + 275 +(% class="box infomessage" %) 276 +((( 277 +**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). 278 +))) 279 + 280 +To change the parameters of the main contactor, select the "Control → Main contactor" section: 281 + 282 +[[image:1740397558976-651.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="144" width="800"]] 283 + 284 +In this section: 285 + 286 +* Enable – a flag to enable the main contactor control; 287 +* Algorithm – main contactor control algorithm: 288 +** Always on – contactor is always closed; 289 +** Automatic – contactor closes by internal charge and discharge algorithms; 290 +** On demand – contactor is closed by an external request; 291 +* Time to keep the contactor closed before closing the others – a time for other contactors to be open after the main contactor is closed; 292 +* Delay before opening the contactor – a time which is used to detect conditions for opening the contactor, s; 293 +* Keep the contactor open until the device is restarted – a flag for keeping the main contactor open until the system is reset; 294 +* Errors 1, 2 to open the main contactor – bitfields to choose the errors which will open the main contactor. 295 + 296 +=== Charging status === 297 + 298 +To change the parameters of charging process status, select the "Control → Charging status" section: 299 + 300 +[[image:1740399071280-626.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="123" width="800"]] 301 +In this section: 302 + 303 +* Current to set the "Charging current present" – a current level to generate the "Charging current present" signal, A; 304 +* Current to clear the "Charging current present" – a current level to clear the "Charging current present" signal, A; 305 +* Voltage to clear the “Ready to charge” – a threshold U,,ocv,, (corrected due to current and cell resistance) 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; 306 +* Voltage to reset the “Ready to charge” – a tolerant U,,ocv,, (corrected due to current and cell resistance) 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; 307 +* 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; 308 +* Errors 1, 2 to clear the "Ready to charge" – bitfields to choose the errors which will clear the "Ready to charge" signal. 309 + 310 +(% class="box infomessage" %) 311 +((( 312 +**Note:** The "Allow charging" signal activates under two independent conditions: 313 +1) the voltage on the cells reaches the “Voltage to reset the “Ready to charge"” level and 314 +2) the "Delay before recharging" time has passed since the opening of the allow charging contactor. 315 +))) 316 + 317 +=== Discharging status === 318 + 319 +To change the parameters of discharging process status, select the "Control → Discharging status" section: 320 + 321 +[[image:1740399096018-240.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="110" width="800"]] 322 +In this section: 323 + 324 +* Current to set the "Discharging current present" – a current level to generate the "Discharging current present" signal, А; 325 +* Current to clear the "Discharging current present" – a current level to clear the "Discharging current present" signal, А; 326 +* Voltage to clear the “Ready to discharge” – a threshold U,,ocv,, (corrected due to current and cell resistance) voltage level on the cell, V; if the voltage of any cell is below this level, the “Ready to discharge” signal is cleared; 327 +* Voltage to reset the “Ready to discharge” – a tolerant U,,ocv,, (corrected due to current and cell resistance) voltage level on the cell, V; if all cells voltages are above the tolerant level, the “Ready to discharge” signal is set; 328 +* Errors 1, 2 to clear the "Ready to discharge" – bitfields to choose the errors which will clear the "Ready to discharge" signal. 329 + 330 +=== Precharge === 331 + 332 +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. 333 + 334 +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. 335 + 336 +[[image:1740399150173-761.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="155" width="800"]] 337 + 338 +To change the parameters of precharge contactor, select the "Control → Precharge" section: 339 + 340 +* Precharge current threshold to finish precharging – a minimum current value at which precharging process assumed to be finished, A; 341 +* Number of precharging attempts – maximum number of precharging attempts before setting the "Precharge error"; 342 +* Precharge time – a duration of closing the precharge contactor before closing the discharging contactor, millisecond; 343 +* Relaxation between attempts – a duration between precharge attempts, millisecond; 344 +* Check the power dissipated in the preacharge resistor - a flag to enable the calculation of power dissipated in precharge resistor; 345 +* Precharge resistor resistance, Ohm; 346 +* Maximum allowable power dissipated in the resistor, W; 347 +* Delay before setting the "Precharge error" when checking power, millisecond; 348 +* Delay before clearing the "Precharge error", second; 349 +* Lock the "Precharge error" – a flag to block the error until the device is restarted. 350 + 351 +“Precharge error” generation conditions if any of the following is true: 352 + 353 +* the precharge current does not decrease during the "Precharge time" after "Number of precharging attempts"; 354 +* power dissipated on the precharge resistor is above the maximum value during the “Delay before setting the 'Precharge error' when checking power” time. 355 + 356 +(% class="box warningmessage" %) 357 +((( 358 +Behavior of contactors at “Precharge error” is configured in corresponding contactor settings! 359 +))) 360 + 263 263 === Charge === 264 264 265 265 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. ... ... @@ -266,51 +266,40 @@ 266 266 267 267 The device supports three charge control algorithms: 268 268 269 -* charging is always allowed; 270 -* charging is allowed when there is a signal “Charger connected”; 271 -* charging is allowed when there is a signal “Charge request”. 367 +* Always on – charging is always allowed; 368 +* On charger connected – charging is allowed when there is a signal “Charger connected”; 369 +* On charge request – charging is allowed when there is a signal “Charge request”. 272 272 273 -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: 371 +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: 274 274 275 -* Overvoltage; 276 -* Overcurrent; 277 -* High temperature (CH); 278 -* Low temperature (CH); 279 -* HYG offline (optional); 280 -* Combilift offline (optional); 281 -* Spirit offline (optional); 282 -* Spirit charger error (optional); 283 -* Short circuit (optional); 284 -* High contactor temperature (optional); 285 -* CH contactor cycles error; 286 -* Critical error 373 +* Service reset; 374 +* Power down request; 375 +* Inhibit charging, 287 287 288 288 both contactors are open (no current flows). 289 289 290 -When the algorithm "**On Charger connected**" is selected, the control is performed as follows:379 +When the algorithm "**On charger connected**" is selected, the control is performed as follows: 291 291 292 -* If there is a signal “Charger connected” and there are no errors (see the listabove), then through the delay time T,,on,, the charging contactor and the allow charging contactor close;381 +* 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; 293 293 * If the signal “Charger connected” disappears, the allow charging contactor opens and after the delay time T,,off,, the charging contactor opens; 294 294 * 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); 295 -* If errors inthelistabove occur the charging contactor and allow charging contactor open.384 +* If errors from the "Errors 1, 2 ..." bitfields occur the charging contactor and allow charging contactor open. 296 296 297 -When the "**On Charge request**" algorithm selected, the control is performed as follows:386 +When the "**On charge request**" algorithm selected, the control is performed as follows: 298 298 299 -* If there is a signal “Charge request” and there are no errors (see the listabove), then through the delay time T,,on,, the charging contactor and the allow charging contactor close;388 +* 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; 300 300 * If the signal “Charge request” disappears, the allow charging contactor opens and after the delay time T,,off,, the charging contactor opens; 301 301 * 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); 302 -* If errors inthelistabove occur the charging contactor and allow charging contactor open.391 +* If errors from the "Errors 1, 2 ..." bitfields occur the charging contactor and allow charging contactor open. 303 303 304 304 (% class="box infomessage" %) 305 305 ((( 306 -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).395 +**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). 307 307 ))) 308 308 309 -When the power down request occurs, the allow charging contactor opens immediately and the charging contactor opens after the delay T,,off,,. Reclosing the charging contactor and allow charging contactor is performed if the power down request is removed. 310 - 311 311 To change the parameters of the battery charge control algorithm, select the "Control → Charge" section: 312 312 313 -[[image:1733 746766516-845.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="319" width="800"]]400 +[[image:1740399363134-722.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="306" width="800"]] 314 314 315 315 In this section: 316 316 ... ... @@ -319,23 +319,15 @@ 319 319 ** Always on – charging is always allowed; 320 320 ** On charger connected – charging is allowed when there is a signal “Charger connected”; 321 321 ** On charge request – charging is allowed when there is a signal “Charge request”; 322 -* Current corresponding to charging – a current level to generate the "Charging current present" signal, A; 323 -* Current corresponding to no charging – a current level to clear the "Charging current present" signal, A; 409 +* Allow charging only when the "Ready to charge" signal is set – charging contactor will open if "Ready to charge" signal is cleared; 324 324 * Delay before starting charging – a time delay T,,on,, before closing the charging contactor and the allow charging contactor, millisecond; 325 325 * Delay before stopping charging – a time delay T,,off,, before opening the charging contactor, millisecond; 412 +* Control the precharging contactor – a flag that allows control of the precharging contactor (see [[Precharge>>url:http://#HPrecharge]]); 326 326 * Use custom delays before stopping charging (on errors) – a flag to enable manual settings of time delays T,,off,, for specific errors; 414 +* Errors 1, 2 to open the charging contactor – bitfields to choose the errors which will open the charging contactor; 327 327 * Custom delay: <error> – specific error delay, millisecond; 328 328 * 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”; 329 -* Control the precharging contactor – a flag that allows control of the precharging contactor; 330 -* 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; 331 -* 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; 332 -* 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. 333 333 334 -(% class="box infomessage" %) 335 -((( 336 -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. 337 -))) 338 - 339 339 === Discharge === 340 340 341 341 The device controls the discharging contactor to connect battery to the load. ... ... @@ -342,50 +342,36 @@ 342 342 343 343 The device supports three algorithms to control battery discharging: 344 344 345 -* load is always connected; 346 -* load is connected when there is no signal “Charger connected”; 347 -* load is connected when there is signal “Discharge request”. 424 +* Always on – load is always connected; 425 +* On charger disconnected – load is connected when there is no signal “Charger connected”; 426 +* On discharge request – load is connected when there is signal “Discharge request”. 348 348 349 -When the algorithm "**Always on**" is selected, the discharging contactor is always closed. If at least one of the errors appears: 428 +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: 350 350 351 -* Undervoltage; 352 -* Overvoltage (optional); 353 -* Overcurrent; 354 -* High temperature (DCH); 355 -* Low temperature (DCH) (optional); 356 -* HYG offline (optional); 357 -* Combilift offline (optional); 358 -* Spirit offline (optional); 359 -* Spirit charger error (optional); 360 -* Short circuit (optional); 361 -* High contactor temperature (optional); 362 -* DCH contactor cycles error; 363 -* Critical error 430 +* Service reset 431 +* Power down request 432 +* Inhibit discharging 364 364 365 365 the discharging contactor opens. 366 366 367 -If the algorithm "**On Charger disconnected**" is selected, the control is performed as follows:436 +If the algorithm "**On charger disconnected**" is selected, the control is performed as follows: 368 368 369 -* if there is no signal “Charger connected”, the charging contactor is open edand there are no errors (see thelistabove), then through the delay time T,,on,, the discharging contactor closes;370 -* If the signal “Charger connected” appears or errors occur (see the listabove), then after the delay time T,,off,, the discharging contactor opens.438 +* 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; 439 +* 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. 371 371 372 -When the "**On Discharge request**" algorithm selected, the control is performed as follows:441 +When the "**On discharge request**" algorithm selected, the control is performed as follows: 373 373 374 -* if there is signal “Discharge request”, the charging contactor is open edand there are no errors (see thelistabove), then through the delay time T,,on,, the discharging contactor closes;375 -* If the signal “Discharge request” disappears or errors occur (see the listabove), then after the delay time T,,off,, the discharging contactor opens.443 +* 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; 444 +* 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. 376 376 377 377 (% class="box infomessage" %) 378 378 ((( 379 -Note: incaseof errors in the systemoperation, theopening of the**discharging**contactorisperformedeither immediately or withadelay T,,off,, (depends on the settings described below).448 +**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). 380 380 ))) 381 381 382 -The device supports controlling the precharging contactor. The duration of switching on the precharging contactor before closing the discharging (load) contactor is adjusted. 383 - 384 -When the power down request occurs, the discharging contactor opens after delay T,,off,,. Reclosing the discharging contactor is performed if the power down request is removed. 385 - 386 386 To change the parameters of the battery discharge control algorithm, select the "Control → Discharge" section: 387 387 388 -[[image:173 3746885414-479.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="319" width="800"]]453 +[[image:1740399783613-216.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="311" width="800"]] 389 389 390 390 In this section: 391 391 ... ... @@ -394,28 +394,51 @@ 394 394 ** Always on – load is always connected; 395 395 ** On charger disconnected – load is connected when there is no signal “Charger connected”; 396 396 ** On discharge request – load is connected when there is signal “Discharge request”; 397 -* Current corresponding to discharging – a current level to generate the "Discharging current present" signal, А; 398 -* Current indicating no discharging – a current level to clear the "Discharging current present" signal, А; 462 +* Allow charging only when the "Ready to discharge" signal is set – discharging contactor will open if "Ready to discharge" signal is cleared; 399 399 * Delay before starting discharging – a time delay T,,on,, before closing the discharging contactor, millisecond; 400 400 * Delay before stopping discharging – a time delay T,,off,, before opening the discharging contactor, millisecond; 465 +* Control the precharging contactor – a flag that allows control of the precharging contactor while closing the discharge contactor (see [[Precharge>>path:#HPrecharge]]); 466 +* Errors 1, 2 to open the discharging contactor – bitfields to choose the errors which will open the discharging contactor; 401 401 * Use custom delays before stopping discharging (on errors) – a flag to enable manual settings of time delays T,,off,, for specific errors; 402 402 * Custom delay: <error> – specific error delay, millisecond; 403 403 * 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”. 404 -* Precharge time – a duration of closing the precharge contactor before closing the discharging contactor, millisecond; 405 -* 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; 406 -* 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; 407 407 408 408 === Charge/Discharge === 409 409 410 410 The BMS Mini device can control the charging/discharging contactor that is used to both charge and discharge the battery. 411 411 412 - The charging/dischargingcontactorcombines algorithms of charging and dischargingcontactor. It behavesas a charging contactorwhen «Charge request»or«Charger connected» are set, otherwise – as a discharging contactor.475 +Charge/Discharge contactor has three algorithms of operation: 413 413 477 +* 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; 478 +* Independent (Always) - Charge/Discharge contactor is always closed if there is no errors; 479 +* 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. 480 + 481 +TBA 482 + 483 +(% class="box infomessage" %) 484 +((( 485 +**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). 486 +))) 487 + 414 414 The charging/discharging contactor control is configured in the “Control – Charge/Discharge” section: 415 415 416 -[[image:17 33746901779-991.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="95" width="800"]]In this section:490 +[[image:1740400166950-906.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="211" width="800"]] 417 417 492 +In this section: 493 + 418 418 * Enable – a flag to enable the charge/discharge controller. 495 +* Algorithm: 496 +** 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; 497 +** Independent (Always) - Charge/Discharge contactor is always closed if there is no errors; 498 +** Independent (on Charge request or Discharge request); 499 +* Delay before starting charging or discharging, millisecond; 500 +* Delay before stopping charging or discharging, millisecond; 501 +* Control the precharging contactor – a flag that enables control of precharging contactor while closing the charge/discharge contactor; 502 +* Emulate the "Charging" and "Discharging" signals – a flag to enable generation of "Charging" and "Discharging" signals when closing charge/discharge contactor; 503 +* 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; 504 +* 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; 505 +* 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; 506 +* 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”. 419 419 420 420 === Discharge (AUX) === 421 421 ... ... @@ -431,8 +431,8 @@ 431 431 432 432 To change the parameters of the powering of external equipment, select the "Control → Discharge (AUX)" section: 433 433 434 -[[image:1733746932199-845.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="137" width="800"]] 435 435 523 +[[image:1740400254884-851.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="179" width="800"]] 436 436 In this section: 437 437 438 438 * Enable – a flag to activate the auxiliary discharge control; ... ... @@ -439,67 +439,46 @@ 439 439 * Switch off the discharging (AUX) contactor if the SOC is too low; 440 440 * Minimum SOC – a minimum SOC value, when reached, the auxiliary (AUX) discharging contactor opens, %; 441 441 * Tolerant SOC – a permissive SOC value, upon reaching which the auxiliary (AUX) discharging contactor re-closes, %; 530 +* Switch off the discharging (AUX) contactor if the cell voltage is out of the range; 531 +* Minimum cell voltage, V; 532 +* Maximum cell voltage, V; 442 442 * Switch off the discharging (AUX) contactor if the battery voltage is out of the range; 443 -* Minimum voltage – minimumbattery voltage, V;444 -* Maximum voltage – maximumbattery voltage, V;445 -* Switchoff the discharging(AUX)contactoronerrors –the auxiliary(AUX)discharging contactoropensif thefollowingerrorsoccur:Undervoltage,Overcurrent,Hightemperature(DCH), Short circuit, Critical error.534 +* Minimum battery voltage, V; 535 +* Maximum battery voltage, V; 536 +* Errors 1, 2 to open the auxiliary discharging contactor – bitfields to choose the errors which will open the auxiliary discharging contactor. 446 446 447 -=== Main contactor === 448 - 449 -The BMS Mini 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 a case of sealing of the charging or discharging contactors. 450 - 451 -The main contactor closes if there are no errors from the list below: 452 - 453 -* Overcurrent; 454 -* Undervoltage; 455 -* Overvoltage; 456 -* High temperature (CH); 457 -* High temperature (DCH); 458 -* Unallowable charging; 459 -* Critical error. 460 - 461 -The main contactor opens if the charging and discharging contactors are opened and any of the following conditions is met: 462 - 463 -* charging or discharging current is detected during a set time; 464 -* voltage of any cell is lower than the minimum cell voltage configured in the section "Protections → Undervoltage" during a set time; 465 -* voltage of any cell is greater than the maximum cell voltage configured in the section "Protections → Overvoltage" during a set time; 466 -* temperature of any cell is greater than the maximum cell temperature configured in the section "Protections → High temperature" during a set time; 467 -* Critical error stays on during a set time. 468 - 469 -To change the parameters of the main contactor, select the "Control → Main contactor" section: 470 - 471 -[[image:1733746797002-498.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="93" width="800"]] 472 - 473 -In this section: 474 - 475 -* Enable – a flag to enable the main contactor control; 476 -* Delay before opening the contactor – a time which is used to detect conditions for opening the contactor, second; 477 -* Keep the contactor open until the device is restarted – a flag for keeping the main contactor opened until the system be reset. 478 - 479 479 === Cell balancing === 480 480 481 -Balancing makes the voltage of all cells beequal to the minimum cell voltage.540 +Balancing makes the voltage of all cells equal to the minimum cell voltage. 482 482 483 483 The following balancing rules are supported: 484 484 485 -* onlywhen the battery is charging (current I > 0) andsome time until the battery is relaxed;544 +* when the battery is charging (current I > 0) and time after until the battery is relaxed; 486 486 * when the battery is charging (current I > 0) or when the battery is in a state of relaxation; 487 487 * always (regardless of battery state). 488 488 489 -A balancing resistor is connected to the cell if: 548 +A balancing resistor is connected to the cell if the following conditions are simultaneously met: 490 490 491 -* the voltage on the cell is higher than the start ingvoltageof the balancing;492 -* the difference between the cellvoltage and the minimum voltage among thecells of thebattery is greater than the balancingdeviation.550 +* the voltage on the cell is higher than the balancing start voltage; 551 +* the difference between the voltage on the cell and the minimum voltage among the battery cells is greater than the balancing start threshold; 493 493 553 +A balancing resistor is disconnected from the cell if any of the following conditions are met: 554 + 555 +* the voltage on the cell is less than the balancing stop voltage; 556 +* the difference between the voltage on the cell and the minimum voltage among the battery cells is less than the balancing stop threshold. 557 + 494 494 (% class="box infomessage" %) 495 495 ((( 496 -If the BMS Minioverheats, then the balancing of the cells connected to thisdevice will not be performed.560 +If the “High logic temperature” occurs, then the balancing of the cells connected to the overheated BMS Logic device will not be performed. 497 497 ))) 498 498 499 -T ochange the cell balancingparameters,select the"Control→Cell balancing"section:563 +The BMS Mini device 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. 500 500 501 - [[image:1733746797003-364.png||data-xwiki-image-style-alignment="center"data-xwiki-image-style-border="true"height="104"width="800"]]565 +BMS Mini device can force a cell balancing, if its voltage is higher than estimated value. 502 502 567 +To change the cell balancing parameters, select the "Control → Cell balancing" section: 568 + 569 +[[image:1740404562825-676.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="168" width="800"]] 503 503 In this section: 504 504 505 505 * Enable – a flag to enable cell balancing; ... ... @@ -507,11 +507,15 @@ 507 507 ** Balance on charge; 508 508 ** Balance on charge or relaxed; 509 509 ** Balance always; 510 - 511 - [[image:1733746797004-660.png||data-xwiki-image-style-alignment="center"data-xwiki-image-style-border="true"height="104" width="800"]]512 - 577 +* Balancing condition: 578 +** Automatic – balancing will be performed automatically if needed conditions are met; 579 +** 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; 513 513 * Minimum cell voltage to start balancing, V; 514 -* Balancing deviation, V. 581 +* Voltage deviation to start balancing; 582 +* Voltage deviation to stop balancing; 583 +* Voltage for forced balancing – if cell voltage is above this value, it will start discharging through balancing resistor; 584 +* Maximum allowable temperature of the board, ºC; 585 +* Command to discharge all cells – a flag to force the balancing of all cells. 515 515 516 516 === Power down === 517 517 ... ... @@ -526,20 +526,20 @@ 526 526 527 527 To change the parameters of the power down control, select the "Control → Power down" section: 528 528 529 -[[image:1733746797005-459.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="115" width="800"]] 530 - 600 +[[image:1740404859367-943.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="130" width="800"]] 531 531 In this section: 532 532 533 533 * Minimum voltage to power down – a minimum voltage level of the battery below which the BMS commands to shut down the battery, V; 534 534 * Idle time to power down – a time of battery inactivity after which the battery is shut down, minute; 535 -* Wait the "Power up/down request" is cleared (on startup) – a flag to enable delay for clearing the “Power up/down request” signal while starting the BMS. 605 +* Wait the "Power up/down request" is cleared (on startup) – a flag to enable delay for clearing the “Power up/down request” signal while starting the BMS; 606 +* Delay before setting the internal power down signal – a delay before turning off the device power when receiving the “Power down request” command, ms. 536 536 537 537 === Heater === 538 538 539 539 To change the parameters of the heater control algorithm, select the "Control → Heater" section: 540 540 541 -[[image:1733746808496-606.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="116" width="800"]] 542 542 613 +[[image:1740404973346-344.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="138" width="800"]] 543 543 In this section: 544 544 545 545 * Enable – a flag to enable heater control; ... ... @@ -547,7 +547,7 @@ 547 547 * Tolerant cell temperature, °C; 548 548 * Delay before starting the heater, millisecond; 549 549 * Delay before stopping the heater, millisecond; 550 -* Switchoff the heateronerrors(Undervoltage,Overcurrent,Hightemperature, Shortcircuit orCriticalerror).621 +* Errors 1, 2 to turn off the heater – bitfields to choose the errors which will turn off the heater. 551 551 552 552 As a result of operating the heating algorithm, the “Heater” signal is generated. 553 553 ... ... @@ -568,8 +568,8 @@ 568 568 569 569 To change the parameters of the cooler control algorithm, select the "Control → Cooler" section: 570 570 571 -[[image:1733746808497-424.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="113" width="800"]] 572 572 643 +[[image:1740405145695-704.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="149" width="800"]] 573 573 In this section: 574 574 575 575 * Enable – a flag to enable cooler control; ... ... @@ -577,7 +577,7 @@ 577 577 * Tolerant cell temperature, °C; 578 578 * Delay before starting the cooler, millisecond; 579 579 * Delay before stopping the cooler, millisecond; 580 -* Switchoff thecooler contactor onerrors(Undervoltage,Overcurrent,Lowtemperature, Shortcircuit orCriticalror).651 +* Errors 1, 2 to turn off the heater – bitfields to choose the errors which will turn off the cooler. 581 581 582 582 As a result of operating the cooling algorithm, the "Cooler" signal is generated. 583 583
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