Changes for page 3.3 Control
Last modified by Admin on 2025/05/30 16:50
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... ... @@ -40,14 +40,14 @@ 40 40 41 41 * Minimal SOC – SOC of the modular battery is assumed to be the minimum SOC among the battery modules; 42 42 * Average SOC – SOC of the modular battery is taken equal to the arithmetic average of the SOC of the battery modules; 43 -* Min-Max SOC – SOC of the modular battery is calculated based on the minimal and maximum SOC of the battery modules (optimized for maximum health); 44 -* Max-Min SOC – SOC of the modular battery is calculated based on the minimal and maximum SOC of the battery modules (optimized for maximum capacity, recommended); 43 +* Min-Max SOC – SOC of the modular battery is calculated based on the minimal and maximum SOC of the battery modules. 45 45 46 46 Calculation of the battery state of health (SOH) is configured in the "Control → Calculation → Final SOH" section. The following battery SOH calculation methods are supported: 47 47 48 48 * Minimal SOH – SOH of the modular battery is assumed to be the minimum SOH among the battery modules; 49 -* Average SOH – SOH of the modular battery is taken equal to the arithmetic average of the SOH of the battery modules. 50 50 49 +Average SOH – SOH of the modular battery is taken equal to the arithmetic average of the SOH of the battery modules. 50 + 51 51 === Main contactor === 52 52 53 53 The BMS Main 3X 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. ... ... @@ -55,12 +55,13 @@ 55 55 The Main contactor algorithm supports the following modes: 56 56 57 57 * Always on; 58 -* Automatic, when the main contactor closes by the internal charging and discharging algorithms at the same time with Precharging, Charging ,Discharging andCharging/Discharging contactors.58 +* Automatic, when the main contactor closes by the internal charging and discharging algorithms at the same time with Precharging, Charging and Discharging contactors. 59 59 60 60 In “Always on” mode, the main contactor closes if all the following is true: 61 61 62 62 * “Charging” contactor is open; 63 63 * “Discharging” contactor is open; 64 + 64 64 * there are no errors. 65 65 66 66 In “Always on” mode, the main contactor opens if “Charging” and “Discharging” contactors are open and any of the following is true: ... ... @@ -110,33 +110,14 @@ 110 110 111 111 To change the precharge parameters, select the section “Control → Precharge”: 112 112 113 -[[image:173 8080762857-975.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="108" width="600"]]In this section:114 +[[image:1734089664376-736.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="56" width="600"]] 114 114 116 +In this section: 115 115 116 116 * Precharge current threshold to close the discharging contactor – a current value to ensure that precharge process has finished and it is allowed to close the discharging contactor, A; 117 117 * 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; 118 -* Minimum voltage difference before and after contactors to finish precharging – a minimum voltage difference before and after contactors to ensure precharge process finished, V; 119 -* Number of precharging attempts – maximum number of precharging attempts before setting the "Precharge error"; 120 -* Precharge time – a duration of closing the precharge contactor before closing the discharging contactor, millisecond; 121 -* Relaxation between attempts – a duration between precharge attempts, millisecond; 122 -* Check the power dissipated in the preacharge resistor - a flag to enable the calculation of power dissipated in precharge resistor; 123 -* Precharge resistor resistance, Ohm; 124 -* Maximum allowable power dissipated in the resistor, W; 125 -* Delay before setting the "Precharge error" when checking power, millisecond; 126 -* Delay before clearing the "Precharge error", second; 127 -* Lock the "Precharge error" – a flag to block the error until the device is restarted. 120 +* Minimum voltage difference to finish precharging – a minimum voltage difference before and after contactors to ensure precharge process finished, V. 128 128 129 -“Precharge error” generation conditions: 130 - 131 -* the precharge current does not decrease after "Number of precharging attempts"; 132 -* voltages before and after contactors are not equal after "Number of precharging attempts"; 133 -* power dissipated on the precharge resistor is above the maximum value during the “Delay before setting the 'Precharge error' when checking power” time. 134 - 135 -(% class="box warningmessage" %) 136 -((( 137 -Behavior of contactors at “Precharge error” is configured in corresponding contactor settings! 138 -))) 139 - 140 140 === Charge === 141 141 142 142 The BMS Main 3X device manages the parallel connection of the battery modules and the connection of the battery to the charging circuit. ... ... @@ -174,7 +174,7 @@ 174 174 175 175 The battery charge management is configured in the "Control → Charge" section: 176 176 177 -[[image:173 8081025199-282.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="162" width="600"]]159 +[[image:1734089684907-463.png||data-xwiki-image-style-alignment="center" data-xwiki-image-style-border="true" height="180" width="600"]] 178 178 179 179 In this section: 180 180 ... ... @@ -187,13 +187,16 @@ 187 187 * Allowable battery current to rejoin modules – a battery current at which joining of battery modules is permitted, A; 188 188 * Allowable voltage difference to rejoin modules – a difference between the voltage of the disconnected module and the battery voltage at which its joining is permitted, V; 189 189 * Checking voltages time – a time of checking voltages of battery modules, millisecond; 172 +* Pre-balancing modules time – a time of pre-charging battery modules, millisecond; 190 190 * Balancing modules time – a time of balancing battery modules, millisecond; 191 191 * Control the precharging contactor – a flag to control the main precharging contactor; 175 +* Precharging time – a time of precharging, millisecond; 192 192 * Canceling charging time – a delay before opening the main charging contactor, ms; 177 +* Limit module current – a flag that allows to limit the charging current of a modular battery so that the current of each battery module does not exceed its maximum allowable charge current; 178 +* Slew rate – a rate of change of the charge current limit when the “Limit module current” flag is set, A/s; 193 193 * Disconnect modules that are not ready to charge – a flag for disconnecting modules that have the “Ready to charge” signal cleared. 194 194 * Disconnect all modules if one is not ready to charge – a flag for disconnecting all modules if any of the modules have the “Ready to charge” signal cleared; 195 195 * Join modules on the “Charge request” signal – a flag to enable automatic modules joining if “Charge request” signal appears; 196 -* Maximum CONTINUOUS charge current limit – a maximum continuous allowed charging current of all battery, A; 197 197 * Maximum charge current limit – a maximum allowed charging current of all battery, A; 198 198 * Errors 1 (2) to disconnect all battery modules – errors that cause all battery modules to be disconnected from the common bus; 199 199 * Errors 1 (2) to open the charging contactor – errors that cause the main charging contactor "Charging" to open;
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