IP Library Granted Patent US 8,441,236
Granted Patent B2
US 8,441,236 · App. 13/144,698 · Granted May 14, 2013

Grid plate for lead acid storage battery, plate, and lead acid storage battery provided with same plate

Inventors: Shinichi Sano (Tokyo, JP); Katsura Mitani (Tokyo, JP); Yoshikazu Hirose (Tokyo, JP); Hiroyuki Wakatabe (Tokyo, JP); Ichiro Shimoura (Tokyo, JP)
Assignee: Shin-Kobe Electric Machinery Co., Ltd.
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Quick Facts
Patent No.
US 8,441,236
App. No.
13/144,698
Granted
May 14, 2013
Kind
B2
Abstract

There is provided a method for operating a lead acid storage battery in order to compensate for fluctuations in the amount of power generated by a solar power generation apparatus, a wind power generation apparatus, or another natural energy power generation device, the lead acid storage battery being charged by a power generation device and discharged to a load. The state of charge of the lead acid storage battery is maintained in a range of 30 to 90% where the fully charged state of the lead acid storage battery is 100%; and the lead acid storage battery is charged and discharged while the battery voltage is kept in a specified range of 1.80 to 2.42 V per cell to extend the service life of the battery. A reference temperature of 25° C. is established, and when the ambient temperature has risen above or fallen below the reference temperature, the upper and lower limit values of a specified range are corrected within a range of −4 mV/° C. to −6 mV/° C. per cell according to the amount by which the temperature has increased or decreased so that a corrected voltage range is obtained. The storage battery is charged and discharged while the battery voltage is kept in the corrected voltage range, and the battery is operated.

Claims (31)

1. A method for operating a lead acid storage battery charged by a natural energy power generation device and discharged to an external circuit, the lead acid storage battery being connected to the power generation device in order to compensate for fluctuations in the amount of power generated by the power generation device, said method for operating a lead acid storage battery including:

maintaining of a state of charge of the lead acid storage battery in a range of 30 to 90% where a fully charged state of the lead acid storage battery is 100%; and

charging and discharging the lead acid storage battery while keeping the battery voltage in a specified range of 1.80 to 2.42 V per cell when 25° C. is taken as a reference temperature and an ambient temperature of the lead acid storage battery is the reference temperature;

charging and discharging the lead acid storage battery when the ambient temperature has risen above the reference temperature by carrying out a correction for reducing an upper limit value and a lower limit value of the specified range by a correction amount selected in a range of 4 mV/° C. to 6 mV/° C. per cell in accordance with an amount by which the ambient temperature has increased over the reference temperature, whereby a corrected voltage range is obtained; and keeping the battery voltage in the corrected voltage range; and

charging and discharging the lead acid storage battery when the ambient temperature has fallen below the reference temperature by carrying out a correction for increasing the upper limit value and the lower limit value of the specified range by a correction amount selected in a range of 4 mV/° C. to 6 mV/° C. per cell in accordance with an amount by which the ambient reference temperature has decreased from the reference temperature, whereby a corrected voltage range is obtained; and keeping the battery voltage in the corrected voltage range;

wherein the maximum discharge current of the lead acid storage battery during operation is kept at 0.4 CA or less where C is the rated capacity of the lead acid storage battery, and

wherein the maximum charge current of the lead acid storage battery during operation is kept at 0.3 CA or less where C is the rated capacity of the lead acid storage battery.

2. The method for operating a lead acid storage battery of claim 1 , wherein operation is stopped each time a set interval has elapsed after the operation of lead acid storage battery has been started, and equalizing charge which is refresh charging is carried out until the lead acid storage battery is fully charged.

3. The method for operating a lead acid storage battery of claim 2 , wherein the state of charge of the lead acid storage battery during operation is computed by accumulating an amount of charged electricity and an amount of discharged electricity (Ah).

4. A storage device for a natural energy power generation device, the storage device being provided with a lead acid storage battery charged by a natural energy power generation device and discharged to an external circuit, the lead acid storage battery being connected to the power generation device in order to compensate for fluctuations in an output of the power generation device, wherein the storage device comprises:

a charge/discharge control device for controlling charging and discharging of the lead acid storage battery so that the lead acid storage battery is operated using the operating method described in claim 3 .

5. A storage device for a natural energy power generation device, the storage device being provided with a lead acid storage battery charged by a natural energy power generation device and discharged to an external circuit, the lead acid storage battery being connected to the power generation device in order to compensate for fluctuations in an output of the power generation device, wherein the storage device comprises:

a charge/discharge control device for controlling charging and discharging of the lead acid storage battery so that the lead acid storage battery is operated using the operating method described in claim 2 .

6. A storage device for a natural energy power generation device, the storage device being provided with a lead acid storage battery charged by a natural energy power generation device and discharged to an external circuit, the lead acid storage battery being connected to the power generation device in order to compensate for fluctuations in an output of the power generation device, wherein the storage device comprises:

a charge/discharge control device for controlling charging and discharging of the lead acid storage battery so that the lead acid storage battery is operated using the operating method described in claim 1 .

7. The method for operating a lead acid storage battery of claim 1 , wherein the maximum charge current of the lead acid storage battery during operation is kept at 0.3 CA or less where C is the rated capacity of the lead acid storage battery.

8. A storage device for a natural energy power generation device, the storage device being provided with a lead acid storage battery charged by a natural energy power generation device and discharged to an external circuit, the lead acid storage battery being connected to the power generation device in order to compensate for fluctuations in an output of the power generation device, wherein the storage device comprises:

a charge/discharge control device for controlling charging and discharging of the lead acid storage battery so that the lead acid storage battery is operated using the operating method described in claim 7 .

9. The method for operating a lead acid storage battery of claim 1 , wherein operation is stopped each time a set interval has elapsed after the operation of lead acid storage battery has been started, and equalizing charge which is refresh charging is carried out until the lead acid storage battery is fully charged.

10. A storage device for a natural energy power generation device, the storage device being provided with a lead acid storage battery charged by a natural energy power generation device and discharged to an external circuit, the lead acid storage battery being connected to the power generation device in order to compensate for fluctuations in an output of the power generation device, wherein the storage device comprises:

a charge/discharge control device for controlling charging and discharging of the lead acid storage battery so that the lead acid storage battery is operated using the operating method described in claim 9 .

11. The method for operating a lead acid storage battery of claim 1 , wherein operation is stopped each time a set interval has elapsed after the operation of lead acid storage battery has been started, and equalizing charge which is refresh charging is carried out until the lead acid storage battery is fully charged.

12. The method for operating a lead acid storage battery of claim 1 , wherein the state of charge of the lead acid storage battery during operation is computed by accumulating an amount of charged electricity and an amount of discharged electricity (Ah).

13. A storage device for a natural energy power generation device, the storage device being provided with a lead acid storage battery charged by a natural energy power generation device and discharged to an external circuit, the lead acid storage battery being connected to the power generation device in order to compensate for fluctuations in an output of the power generation device, wherein the storage device comprises:

a charge/discharge control device for controlling charging and discharging of the lead acid storage battery so that the lead acid storage battery is operated using the operating method described in claim 12 .

14. The method for operating a lead acid storage battery of claim 1 , wherein the state of charge of the lead acid storage battery during operation is computed by accumulating an amount of charged electricity and an amount of discharged electricity (Ah).

15. The method for operating a lead acid storage battery of claim 1 , wherein the state of charge of the lead acid storage battery during operation is computed by accumulating an amount of charged electricity and an amount of discharged electricity (Ah).

16. A storage device for a natural energy power generation device, the storage device being provided with a lead acid storage battery charged by a natural energy power generation device and discharged to an external circuit, the lead acid storage battery being connected to the power generation device in order to compensate for fluctuations in an output of the power generation device, wherein the storage device comprises:

a charge/discharge control device for controlling charging and discharging of the lead acid storage battery so that the lead acid storage battery is operated using the operating method described in claim 1 .

17. A storage device for a natural energy power generation device, the storage device being provided with a lead acid storage battery charged by a natural energy power generation device and discharged to an external circuit, the lead acid storage battery being connected to the power generation device in order to compensate for fluctuations in an output of the power generation device, wherein the storage device comprises:

a charge/discharge control device for controlling charging and discharging of the lead acid storage battery so that the lead acid storage battery is operated using the operating method described in claim 1 .

Assignments (6)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 24, 2024
From: RESONAC CORPORATION
To: ENERGYWITH CO., LTD.
Reel/Frame 069676/0687 →
CHANGE OF NAME Recorded Dec 24, 2024
From: HITACHI CHEMICAL COMPANY, LTD.
To: SHOWA DENKO MATERIALS CO., LTD.
Reel/Frame 069775/0236 →
CHANGE OF NAME Recorded Dec 24, 2024
From: SHOWA DENKO MATERIALS CO., LTD.
To: RESONAC CORPORATION
Reel/Frame 069775/0284 →
ADDRESS CHANGE Recorded Dec 24, 2024
From: RESONAC CORPORATION
To: RESONAC CORPORATION
Reel/Frame 069775/0492 →
MERGER Recorded Dec 20, 2024
From: SHIN-KOBE ELECTRIC MACHINERY CO., LTD.
To: HITACHI CHEMICAL COMPANY, LTD.
Reel/Frame 069751/0265 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 15, 2011
From: SANO, SHINICHI; MITANI, KATSURA; HIROSE, YOSHIKAZU; WAKATABE, HIROYUKI; SHIMOURA, ICHIRO
To: SHIN-KOBE ELECTRIC MACHINERY CO., LTD.
Reel/Frame 026595/0594 →
Continuity (1)
Related Publication 20110273135A1 · Nov 10, 2011