Zitara Power
On-premise algorithm providing accurate real-time battery control signals
Zitara Power is an on-premise algorithm designed to enhance the monitoring and control of battery energy storage systems. It processes cell-level raw data inputs that are already tracked by the asset, specifically voltage, current, and temperature. Using this data, Zitara Power generates accurate real-time control signals including State of Power, State of Energy, HSL (likely High Safety Limit), MXDP (possibly Maximum Discharge Power), and State of Charge.
The key feature of Zitara Power is its ability to produce more reliable control signals compared to existing battery management systems. These signals are intended to replace the error-prone signals typically provided by standard systems. By offering more accurate data on the battery's current state and capabilities, Zitara Power enables operators to make more informed decisions about energy dispatch and system operation.
The algorithm takes into account factors such as cell age, chemistry, and location within the battery system to provide a more comprehensive and accurate assessment of the battery's condition and performance. This detailed analysis allows for more precise energy availability calculations, which can help prevent unexpected shutdowns and enable more aggressive trading strategies. By providing a more accurate picture of the battery's true capacity and capabilities, Zitara Power aims to help operators maximize the efficiency and profitability of their energy storage assets.
| Title | Description |
|---|---|
| Core Tech | Control System/Equipment |
| Industry | Energy Storage |
|
Type
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on-premise algorithm
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Inputs
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voltage, current, temperature
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Outputs
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State of Power, State of Energy, HSL, MXDP, State of Charge
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Data source
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cell-level raw data
|
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Purpose
|
produces accurate real time control signals
|
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Replaces
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error-prone signals from existing system
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