Changes for page BMS Main 3

Last modified by Admin on 2025/02/18 14:57

From version 11.1
edited by Admin
on 2025/02/18 14:56
Change comment: There is no comment for this version
To version 2.1
edited by Admin
on 2024/11/18 10:16
Change comment: There is no comment for this version

Summary

Details

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1 -BMS Main 3
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1 -(% class="box infomessage" %)
2 -(((
3 -BMS Main 3 firmware update procedure is described [[here>>doc:Battery management systems.BMS Main 3.5\. Firmware update.WebHome]].
4 -)))
1 += 2.1.1 =
5 5  
6 -= v2.2.1 =
7 -
8 -...
9 -
10 10  == Improvements ==
11 11  
12 -* increasing the smoothness of changing the current limit values
13 -* ability to exclude errors from being saved in the error journal (see the "Service - Errors journal" section)
14 -* extension of the CANopen dictionary to provide additional information for the BMS Display (device serial number, battery serial number, battery address, Wi-Fi and LAN addresses, SOH, capacity, etc.)
15 -
16 -== Fixes ==
17 -
18 -* resolving the issue of working with the Fronius charger over the CAN1 interface
19 -* small internal fixes
20 -
21 -= v2.2.0 =
22 -
23 -[[BMS_Main_3_v2.2.0.bin>>FileManager.BMS_Main_3_v2\.2\.0\.bin]]
24 -
25 -== Features ==
26 -
27 -* support for the HYG Global CAN protocol version 2 (June 13, 2024)
28 -* calculation of regenerated energy
29 -* calculation of new lifetime parameters: average temperature, average charge/discharge currents, etc. See the counters in the "Service - Counters" section
30 -* new "Need acknowledge" warning signal that is set when a new record is created in the errors journal. The signal can be cleared in the "Service - Errors journal" section
31 -* new parameter for setting the condition for starting balancing: automatically (regardless of the command) or on the balancing request (see the "Control - Cell balancing" section)
32 -* new option to start balancing if the cell voltage exceeds the "Voltage for forced balancing" value (see the "Control - Cell balancing" section)
33 -* new Max-Min algorithm for calculating the final battery SOC in the "Control - SOC estimation" section
34 -* new flags in the "Protections - Undervoltage" and "Protections - Overvoltage" sections which allow using the calculated open circuit cell voltage instead of the actual voltage to detect the "Undervoltage" and "Overvoltage" errors, respectively
35 -* ability to check the "Ready to charge" and "Ready to discharge" signals to control the charging and discharging contactors (see the "Control - Charge" and "Control - Discharge" sections)
36 -* improved control of the precharging contactor, which can precharge capacitive load using multiple attempts and detect high power dissipated in the precharge resistor (see the "Control - Precharge" section)
37 -* ability to select errors that the device saves in the errors journal (see the "Service - Errors journal" section)
38 -
39 -== Improvements ==
40 -
41 -* ability to configure and monitor the device via the CAN1 (ext) bus
42 -* placing the device input signals to the "Battery" section and adding raw discrete inputs to the "Signals" section
43 -
44 -== Fixes ==
45 -
46 -* using the calculated open circuit voltage to set/clear the "Ready to charge" and "Ready to discharge" signals
47 -
48 -= v2.1.1 =
49 -
50 -[[BMS_Main_3_v2.1.1.bin>>FileManager.BMS_Main_3_v2\.1\.1\.bin]]
51 -
52 -== Improvements ==
53 -
54 54  * new balancing strategy that attempts to keep the temperature of BMS Logic devices below a set value by discharging cells with higher voltages first than others (see the "Control - Cell balancing" section)
55 55  
56 56  == Fixes ==
... ... @@ -58,10 +58,8 @@
58 58  * resolving the possible problem of saving device parameters
59 59  * resolving the problem of writing the device's working time to a non-volatile memory very often
60 60  
61 -= v2.1.0 =
12 += 2.1.0 =
62 62  
63 -[[BMS_Main_3_v2.1.0.bin>>FileManager.BMS_Main_3_v2\.1\.0\.bin]]
64 -
65 65  == Features ==
66 66  
67 67  * new algorithms in the Charging/Discharging controller that allow to control the Charging/Discharging contactor independently from the Charging and Discharging signals (see the "Control - Charge/Discharge" section). The new "Independent" algorithms are preferred in the battery systems with one contactor.