Changes for page 3.3 Control

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

From version 10.2
edited by Admin
on 2024/12/24 16:15
Change comment: There is no comment for this version
To version 9.6
edited by Admin
on 2024/12/24 16:10
Change comment: There is no comment for this version

Summary

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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 assumed to be a) 100% if any cell have 100% SOC, b) 0% if any cell
74 +* Max-Min SOC – the battery SOC is calculated based on the minimum and maximum SOC of the cells.
75 75  
76 76  Other parameters:
77 77  
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108 108  
109 109  R = (U-U,,ocv,,) / I,,stable,,,
110 110  
111 -
112 112  where U is the cell voltage measured in the charge or discharge state, V; U,,ocv,, is the cell voltage measured in the state of relaxation (before switching to the state of charge or discharge); I,,stable,, – stabilized current through the cell in the state of charge or discharge.
113 113  
114 114  The second method is used for a stepwise change in the current through the cell, while the value of the cell resistance: