Changes for page 3.3 Control
Last modified by Admin on 2026/04/30 15:56
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... ... @@ -15,7 +15,7 @@ 15 15 * **Cell capacity** – nominal capacity of cells, Ah; 16 16 * **Cell resistance** – nominal (maximum) internal resistance of the cells, Ohm; 17 17 * **Connection of cells:** 18 -** **Serial **– all cells are connected in series in a single string .18 +** **Serial **– all cells are connected in series in a single string; 19 19 ** **Parallel-Serial **– cells are grouped in parallel and serial items; 20 20 * **Parallel-Serial: Number of Logic devices in a chain**; 21 21 * **Parallel-Serial: Number of parallel chains in a block**; ... ... @@ -29,7 +29,7 @@ 29 29 ** **Summation of cell voltages** – the overall voltage is calculated as on sum of all cells in the battery; 30 30 ** **Using voltage before contactors** – the overall voltage is estimated as voltage before contactors measured by BMS. 31 31 32 -The **"Parallel-Serial"** connection works as follows: a bunch of serial connected Logics are grouped into chains. A bunch of parallel connected chains are grouped to blocks. A bunch of serial connected blocks are grouped into string. By configuring the corresponding settings it is possible to create a complex string configuration. Current through each chain will be estimated asa fraction of overall currentaccordingly to the number of chains in a block.32 +The **"Parallel-Serial"** connection works as follows: a bunch of serial connected Logics are grouped into chains. A bunch of parallel connected chains are grouped to blocks. A bunch of serial connected blocks are grouped into string. By configuring the corresponding settings it is possible to create a complex string configuration. Current through each chain will be calculated as overall string current divided by number of chains in a block. 33 33 34 34 The values **“Capacity”** and **“Resistance”** are used to calculate the SOC of cells and the battery. 35 35 ... ... @@ -39,7 +39,7 @@ 39 39 40 40 === SOC estimation === 41 41 42 -The BMS Main 3 / BMS Main 2R device calculates the state of charge (SOC) of each cell ,and then the overallbatterySOC, byusing following algorithms:42 +The BMS Main 3 / BMS Main 2R device calculates the state of charge (SOC) of each cell by using following algorithms: 43 43 44 44 The **“Voltage”** SOC calculation algorithm calculates cells SOC based on the tabular dependence Uocv = Uocv(SOC, t °C). 45 45 ... ... @@ -94,7 +94,7 @@ 94 94 95 95 === SOH estimation === 96 96 97 -The BMS Main 3 device calculates the state of health of the battery (SOH) using two algorithms: 97 +The BMS Main 3 / BMS Main 2R device calculates the state of health of the battery (SOH) using two algorithms: 98 98 99 99 In **"By effective capacity" **mode SOH is calculated as a ratio of effective capacity to nominal capacity. Effective capacity is estimated to DOD value when battery SOC reaches 0%, so SOH is recalculated each full battery discharge. 100 100 ... ... @@ -373,9 +373,9 @@ 373 373 374 374 (% class="box infomessage" %) 375 375 ((( 376 -**Note:** The "Allow charging" signal activates under two independent conditions: 376 +**Note:** The **"Allow charging"** signal activates under two independent conditions: 377 377 1) the voltage on the cells reaches the “Voltage to reset the “Ready to charge"” level and 378 -2) the "Delay before recharging" time has passed since the opening of theallow chargingcontactor.378 +2) the "Delay before recharging" time has passed since the clearing of the "Allow charging" signal. 379 379 ))) 380 380 381 381 === Discharging status === ... ... @@ -402,9 +402,9 @@ 402 402 403 403 The BMS Main 3 / BMS Main 2R 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. 404 404 405 -BMS Main 3 can detecterrors while pre-charging theloadcapacityby monitoring **the current and voltage difference** before and after contactors.405 +BMS Main 3 can check the preacharge process by monitoring **the current and voltage difference** before and after contactors. 406 406 407 -BMS Main 2R can detecterrors while pre-charging theloadcapacity**only by monitoring the current**.407 +BMS Main 2R can check the preacharge process **only by monitoring the current**. 408 408 409 409 In **simple **mode precharge contactor closes a "Precharge time" before the closing of Charge or Discharge contactors and opens after the same amount of time after closing them. 410 410 ... ... @@ -431,7 +431,7 @@ 431 431 * **Delay before clearing the "Precharge error"**, second; 432 432 * **Lock the "Precharge error"** – a flag to block the error until the device is restarted. 433 433 434 -“Precharge error” generat ion conditions if any of the following is true:434 +“Precharge error” generates if any of the following is true: 435 435 436 436 * the precharge current does not decrease during the "Precharge time" after "Number of precharging attempts"; 437 437 * voltages before and after contactors are not equal during the "Precharge time" after "Number of precharging attempts"; ... ... @@ -444,31 +444,31 @@ 444 444 445 445 === Charge === 446 446 447 -The rearetwosignalsthatserve charging the battery:"Charging" and "Allowcharging".Withthehelp of the"Allow charging" signal, the BMS commands the charger to start or stop charging.447 +The BMS Main 3 / BMS Main 2R device connect battery to the charger using the "Charging" signal. 448 448 449 449 BMS Main 3 / BMS Main 2R supports three charge control algorithms: 450 450 451 -If the "**Always on**" algorithm is selected, the chargingcontactor and the allow charging contactor are alwaysclosed. If at least one of the errors from the "Errors 1, 2 ..." bitfields appears or one of the signals:451 +If the "**Always on**" algorithm is selected, the "Сharging" signal is always set. If at least one of the errors from the "Errors 1, 2 ..." bitfields appears or one of the signals: 452 452 453 453 * Service reset; 454 454 * Power down request; 455 455 * Inhibit charging, 456 456 457 - bothcontactors are open(nocurrent flows).457 +the "Charging" signal is cleared. 458 458 459 459 When the algorithm "**On charger connected**" is selected, the control is performed as follows: 460 460 461 -* 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 chargingcontactor and the allowchargingcontactor close;462 -* If the signal “Charger connected” disappears or errors occur (see the "Errors 1, 2 ..." bitfields), the allow charging contactor opens and after the delay time T,,off,, thechargingcontactoropens.461 +* 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" signal is set; 462 +* If the signal “Charger connected” disappears or errors occur (see the "Errors 1, 2 ..." bitfields), then after the delay time T,,off,, the "Charging" signal is cleared. 463 463 464 464 When the "**On charge request**" algorithm selected, the control is performed as follows: 465 465 466 -* 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 chargingcontactor and the allowchargingcontactor close;467 -* If the signal “Charge request” disappears or errors occur (see the "Errors 1, 2 ..." bitfields), the allow chargingcontactor opens and after the delay time T,,off,, thechargingcontactoropens;466 +* 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" signal is set; 467 +* If the signal “Charge request” disappears or errors occur (see the "Errors 1, 2 ..." bitfields), then after the delay time T,,off,, the "Charging" signal is cleared; 468 468 469 469 (% class="box infomessage" %) 470 470 ((( 471 -**Note: **when errors occur in the system, the **Charg e**contactoropenseither immediately or with the delay T,,off,, (depends on the settings described below).471 +**Note: **when errors occur in the system, the **"Charing" **signal is cleared either immediately or with the delay T,,off,, (depends on the settings described below). 472 472 ))) 473 473 474 474 To change the parameters of the battery charge control algorithm, select the "Control → Charge" section: ... ... @@ -493,31 +493,31 @@ 493 493 494 494 === Discharge === 495 495 496 -The BMS Main 3 / BMS Main 2R device con trols the discharging contactor to connect battery to the load.496 +The BMS Main 3 / BMS Main 2R device connect battery to the load using the "Discharging" signal. 497 497 498 498 BMS Main 3 / BMS Main 2R supports three algorithms to control battery discharging: 499 499 500 -When the algorithm "**Always on**" is selected, the dischargingcontactoris alwaysclosed. If at least one of the errors from the "Errors 1, 2 ..." bitfields appears or one of the signals:500 +When the algorithm "**Always on**" is selected, the "Discharging" signal is always set. If at least one of the errors from the "Errors 1, 2 ..." bitfields appears or one of the signals: 501 501 502 502 * Service reset 503 503 * Power down request 504 504 * Inhibit discharging 505 505 506 -the dischargingcontactoropens.506 +the "Discharging" signal is cleared. 507 507 508 508 If the algorithm "**On charger disconnected**" is selected, the control is performed as follows: 509 509 510 -* if there isnosignal“Charger connected”,thechargingcontactor isopenand there are no errors (see the "Errors 1, 2 ..." bitfields), then through the delay time T,,on,, thedischargingcontactor closes;511 -* If the signal “Charger connected” appears or errors occur (see the "Errors 1, 2 ..." bitfields), then after the delay time T,,off,, the dischargingcontactoropens.510 +* if there are no “Charger connected” and "Charging" signals and there are no errors (see the "Errors 1, 2 ..." bitfields), then through the delay time T,,on,, the "Discharging" signal is set; 511 +* If the signal “Charger connected” appears or errors occur (see the "Errors 1, 2 ..." bitfields), then after the delay time T,,off,, the "Discharging" signal is cleared. 512 512 513 513 When the "**On discharge request**" algorithm selected, the control is performed as follows: 514 514 515 -* 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,, thedischargingcontactor closes;516 -* If the signal “Discharge request” disappears or errors occur (see the "Errors 1, 2 ..." bitfields), then after the delay time T,,off,, the dischargingcontactoropens.515 +* if there is signal “Discharge request” and there are no errors (see the "Errors 1, 2 ..." bitfields), then through the delay time T,,on,, the "Discharging" signal is set; 516 +* If the signal “Discharge request” disappears or errors occur (see the "Errors 1, 2 ..." bitfields), then after the delay time T,,off,, the "Discharging" signal is cleared. 517 517 518 518 (% class="box infomessage" %) 519 519 ((( 520 -**Note: **when errors occur in the system, the **Discharge ** contactoropenseither immediately or with the delay T,,off,, (depends on the settings described below).520 +**Note: **when errors occur in the system, the **"Discharge" **signal is cleared either immediately or with the delay T,,off,, (depends on the settings described below). 521 521 ))) 522 522 523 523 To change the parameters of the battery discharge control algorithm, select the "Control → Discharge" section: ... ... @@ -542,16 +542,16 @@ 542 542 543 543 === Charge/Discharge === 544 544 545 -The BMS Main 3 / BMS Main 2R device can control the Charge/Discharge contactor,whichcombinesalgorithmsofchargingand dischargingcontactor.545 +The BMS Main 3 / BMS Main 2R device can control the contactor, used in power line both used for connecting battery to charger and load, by using the "Charging/Discharging" signal. 546 546 547 -Charg e/Dischargecontactorhas three algorithms of operation:547 +"Charging/Discharging" signal has three algorithms of operation: 548 548 549 -On **Dependent (on Charging and Discharging signals)** algorithm the charge/dischargecontactordepends on Charge and Discharge controllers andbehaves:549 +On **Dependent (on Charging and Discharging signals)** algorithm the "Charging/Discharging" signal depends on Charge and Discharge controllers and equal to: 550 550 551 -* asChargingcontactorif "Charging" signal is set;552 -* asDischargingcontactorin other cases.551 +* "Charging" signal if "Charging" signal is set; 552 +* "Discharging" signal in other cases. 553 553 554 -When **Independent (Always) **algorithm is selected, the charging/dischargingcontactoris alwaysclosed. If at least one of the errors from the "Errors 1, 2 ..." bitfields appears or one of the signals:554 +When **Independent (Always) **algorithm is selected, the "Charging/Discharging" signal is always set. If at least one of the errors from the "Errors 1, 2 ..." bitfields appears or one of the signals: 555 555 556 556 * Service reset 557 557 * Power down request ... ... @@ -558,12 +558,12 @@ 558 558 * Inhibit charging 559 559 * Inhibit discharging 560 560 561 -the charging/dischargingcontactoropens.561 +the Charging/Discharging signal is cleared. 562 562 563 -On **Independent (on Charge request or Discharge request)** algorithm charge/dischargecontactoris based on its own controller and performs as follows:563 +On **Independent (on Charge request or Discharge request)** algorithm "Charging/Discharging" signal is based on its own controller and performs as follows: 564 564 565 -* if there is "Charge request" or "Discharge request" signal and there are no errors (see the "Errors 1, 2 ..." bitfields), then through the delay time T,,on,, the charging/dischargingcontactor closes;566 -* If the "Charge request" or"Discharge request" disappears or errors occur (see the "Errors 1, 2 ..." bitfields), then after the delay time T,,off,, thecharging/dischargingcontactoropens.565 +* if there is "Charge request" or "Discharge request" signal and there are no errors (see the "Errors 1, 2 ..." bitfields), then through the delay time T,,on,, the Charging/Discharging signal is set; 566 +* If the "Charge request" and "Discharge request" disappears or errors occur (see the "Errors 1, 2 ..." bitfields), then after the delay time T,,off,, the "Charging/Discharging" signal is cleared. 567 567 568 568 (% class="box infomessage" %) 569 569 ((( ... ... @@ -584,7 +584,7 @@ 584 584 * **Delay before starting charging or discharging**, millisecond; 585 585 * **Delay before stopping charging or discharging**, millisecond; 586 586 * **Control the precharging contactor** – a flag that enables control of precharging contactor while closing the charge/discharge contactor; 587 -* **Emulate the "Charging" and "Discharging" signals** – a flag to enable generation of "Charging" and "Discharging" signals when closing charge/discharge contactor;587 +* **Emulate the "Charging" and "Discharging" signals** – a flag to enable generation of "Charging" and "Discharging" signals in Independet mode when closing Charge/Discharge contactor. **DO NOT** use with enabled Charge and Discharge controllers; 588 588 * **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; 589 589 * **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; 590 590 * **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; ... ... @@ -626,9 +626,9 @@ 626 626 627 627 The following **balancing rules** are supported: 628 628 629 -* when the battery is charging (current I > 0) and time after until the battery is relaxed; 630 -* when the battery is charging (current I > 0) or when the battery is in a state of relaxation; 631 -* always (regardless of battery state).629 +* **Balance on charge** – perform balancing when the battery is charging (current I > 0) and time after until the battery is relaxed; 630 +* **Balance on charge or relaxed** – perform balancing when the battery is charging (current I > 0) or when the battery is in a state of relaxation ; 631 +* **Balance always** regardless of battery state. 632 632 633 633 A balancing resistor is connected to the cell if the following conditions are simultaneously met: 634 634 ... ... @@ -645,9 +645,9 @@ 645 645 If the “High logic temperature” occurs, then the balancing of the cells connected to the overheated BMS Logic device will not be performed. 646 646 ))) 647 647 648 -The BMS Main 3 / BMS Main 2R 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. 648 +The BMS Main 3 / BMS Main 2R 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. 649 649 650 -BMS Main 3 / BMS Main 2R can force a cellbalancing, if its voltage is higher than estimated value.650 +BMS Main 3 / BMS Main 2R can **force balancing **of the cell, if its voltage is higher than estimated value. 651 651 652 652 To change the cell balancing parameters, select the "Control → Cell balancing" section: 653 653 ... ... @@ -707,7 +707,7 @@ 707 707 * the battery voltage is below the minimum level; 708 708 * the “Charger connected” signal is cleared for 60 seconds. 709 709 710 -The BMS Main 3 device also shuts down the battery if it stays in the “Charging OFF”, “Discharging OFF”, “Relaxed (after charging)” or “Relaxed (after discharging)” forthe configuredtime.710 +The BMS Main 3 device also shuts down the battery if it **stays for a long time **in the “Charging OFF”, “Discharging OFF”, “Relaxed (after charging)” or “Relaxed (after discharging)” state. 711 711 712 712 To change the parameters of the power down control, select the "Control → Power down" section: 713 713
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