Battery heating system, battery pack, and electrical apparatus
US-2024429483-A1 · Dec 26, 2024 · US
US9639074B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9639074-B2 |
| Application number | US-201314097353-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 5, 2013 |
| Priority date | Jun 17, 2011 |
| Publication date | May 2, 2017 |
| Grant date | May 2, 2017 |
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A demand measurement unit measures load demand power and a power generation measurement unit measures solar cell output power. A threshold storage unit stores a discharge control threshold for determining whether to discharge remaining storage cell power. When demand power exceeds generated power, a command unit controls storage cell discharge by comparing remaining storage cell power with the discharge control threshold and transmits a control command to a power conditioner. If the remaining storage cell power exceeds the discharge control threshold, then the command unit commands storage cell discharge. A threshold setting unit sets the discharge control threshold, and updates the discharge control threshold when that value changes.
Opening claim text (preview).
The invention claimed is: 1. A power supply system for supplying power to a load from a commercial power source, a power generator and a storage cell, the system comprising: a demand measurement unit configured to measure demand power of the load; a power generation measurement unit configured to measure generated power from the power generator; a threshold storage unit configured to store a discharge control threshold power value to determine whether to discharge the storage cell; a command unit configured to give a control command to control discharge of the storage cell based on a comparison between the remaining power in the storage cell and the discharge control threshold power value, when the demand power is larger than the generated power; and a control unit configured to control the discharge of the storage cell according to the control command from the command unit, wherein the command unit gives a control command to discharge the storage cell when the remaining storage cell power does not exceed the discharge control threshold power value and a difference between the demand power and the generated power exceeds a predetermined power purchase limit threshold. 2. The power supply system according to claim 1 , wherein the command unit gives a control command to discharge the storage cell when the remaining storage cell power exceeds the discharge control threshold power value. 3. The power supply system according to claim 2 , wherein the command unit gives a control command to discharge the storage cell when the remaining storage cell power does not exceed the discharge control threshold power value and a difference between the demand power and the generated power exceeds a predetermined power purchase limit threshold. 4. The power supply system according to claim 2 , further comprising: a history storage unit configured to store a demand power and a generated power obtained within a measurement period, as history information; and a threshold setting unit configured to set the discharge control threshold power value, and output the set discharge control threshold power value to the threshold storage unit, wherein the threshold setting unit calculates a discharge control threshold power value from the history information, and outputs the calculated discharge control threshold power value to the threshold storage unit. 5. The power supply system according to claim 4 , further comprising: a weather information acquisition unit configured to acquire weather forecast information, wherein the power generator generates power from natural energy that varies with weather types, the history storage unit stores history information corresponding to weather types, the threshold setting unit calculates the discharge control threshold for each weather type from the history information, and writes a discharge control threshold power value for each weather type into the threshold storage unit, and the command unit selects a stored discharge control threshold power value corresponding to a weather type, and compares this selected discharge control threshold power value with remaining power in the storage cell. 6. The power supply system according to claim 1 , wherein when the remaining storage cell power does not exceed the discharge control threshold and a difference between the demand power and the generated power exceeds the predetermined power purchase limit threshold, the command unit limits discharged power by the control command to the excess by which the difference exceeds the power purchase limit threshold. 7. The power supply system according to claim 1 , further comprising: a history storage unit configured to store a demand power and a generated power obtained within a measurement period, as history information; and a threshold setting unit configured to set the discharge control threshold power value, and output the set discharge control threshold power value to the threshold storage unit, wherein the threshold setting unit calculates a discharge control threshold power value from the history information, and outputs the calculated discharge control threshold power value to the threshold storage unit. 8. The power supply system according to claim 7 , further comprising: a weather information acquisition unit configured to acquire weather forecast information, wherein the power generator generates power from natural energy that varies with weather types, the history storage unit stores history information corresponding to weather types, the threshold setting unit calculates the discharge control threshold for each weather type from the history information, and writes a discharge control threshold power value for each weather type into the threshold storage unit, and the command unit selects a stored discharge control threshold power value corresponding to a weather type, and compares this selected discharge control threshold power value with remaining power in the storage cell. 9. The power supply system according to claim 1 , wherein the power purchase limit threshold is a threshold used to limit purchased power. 10. A discharge management device configured to control a power supply system that comprises a power generator, a storage cell and a controller that controls discharge of the storage cell according to a control command, wherein the discharge management device comprises a demand measurement unit, a power generation measurement unit, a threshold storage unit, a command unit and a threshold setting unit, the demand measurement unit measures demand power of a load, the power generation measurement unit measures power from the power generator, the threshold storage unit stores a discharge control threshold power value that is used to decide whether to discharge the storage cell, the command unit generates a control command to control storage cell discharge based on a comparison of remaining storage cell power with the discharge control threshold, when the demand power exceeds the generated power, the controller controls storage cell discharge according to the generated control command, and the threshold setting unit sets the discharge control threshold, and outputs the set discharge control threshold to the threshold storage unit. 11. A power supply system comprising the discharge management device according to claim 10 . 12. The discharge management device according to claim 10 , further comprising: a history storage unit configured to store a demand power and a generated power obtained within a measurement period, as history information; and a threshold setting unit configured to set the discharge control threshold power value, and output the set discharge control threshold power value to the threshold storage unit, wherein the threshold setting unit calculates a discharge control threshold power value from the history information, and outputs the calculated discharge control threshold power value to the threshold storage unit. 13. The discharge management device according to claim 12 , further comprising: a weather information acquisition unit configured to acquire weather forecast information, wherein the power generator generates power from natural energy that varies with weather types, the history storage unit stores history information corresponding to weather types, the threshold setting unit calculates the discharge control threshold for each weather type from the history information, and writes a discharge control threshold power value for each weather type into the threshold storage unit, and the command unit selects a stored discharge control threshold power value corresponding to a
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