Generation facility management system
Through the design of the power generation equipment management system, the problem of evaluating and managing the power value of natural energy power generation equipment is solved, the establishment of a consideration mechanism is realized, and the popularity and economic benefits of these equipment are promoted.
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Embodiment 1
[0207]
[0208] Next, a specific example of an embodiment in which a subscriber selects any one of a plurality of considerations will be explained. Here, it is assumed that the following information is stored in the information storage section of the management server 400 in advance.
[0209] Information stored in value acquisition expector information database 404
[0210] (1) Provider: Trader B who manufactures and sells camping equipment.
[0211] Conditions: Support status should be printed on the home page of environmental contributions.
[0212] Consideration: A free tableware set for camping will be provided to self-consumption electricity of 1000kWh from self-generated electricity.
[0213] (2) Provider: Trader C who sells floral arrangements by home delivery.
[0214] Conditions: Support status should be printed on the home page of environmental contributions.
[0215] Consideration: When self-consumption in self-generation is 1500kWh, seasonal flowers should be...
Embodiment 2
[0234]
[0235] Next, acquisition of value and consideration defined by this application by investing in a third party's facility will be explained. Assume that there is a case where it is planned to assemble 100 lighting machines having solar power generators and batteries placed side by side on the main street near the city hall of S city. During the day, the lighting equipment accumulates the generated electric power in the battery, and at night, the lighting equipment is turned on. The mechanism is such that if the battery is fully charged while the sun continues, reverse power flow to the system and sell that power. Furthermore, the management system of the present invention is installed in street lamps, and can perform centralized management of 100 lighting devices.
[0236] When installing street lights, the city of S bears the cost required to install conventional type street lights and the electric bill for ten years that can be reduced by the electricity generated...
Embodiment 3
[0246]
[0247] Frequent flier programs and item acquisition by point systems, and cash conversion systems aimed at enclosing users are scattered among card companies, airlines, and various stores. A specific example of mutual services with such services will be explained. In this case, it is necessary to handle the amount of electricity that is a utility unit by converting the amount of electricity obtained using the electric power information into points or the like based on each value information. The mutual service with the card company will be explained below.
[0248] Electricity value 1kWh = 1 point
[0249] 1 point for every JPY 10,000 of JPY’s card usage
[0250] Information about subscriber Z in the case of holding a 3kW solar power generation system and paying the purchase fee of 2,000,000 yen for a new car by using J company's card is as follows:
[0251] (Z-1) Special information about subscriber Z: name, address, ID number and telephone number
[0252] (Z-2...
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