Energy management system, server, energy management method, and storage medium

US9824409B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9824409-B2
Application numberUS-201414163866-A
CountryUS
Kind codeB2
Filing dateJan 24, 2014
Priority dateSep 3, 2012
Publication dateNov 21, 2017
Grant dateNov 21, 2017

How to read this patent

A practical reading order for non-experts. Skip the full description unless you need deep technical detail.

  1. Title

    What the patent document calls the invention.

  2. Abstract

    A short plain-language summary of the technical disclosure.

  3. Assignees and inventors

    Who owns or filed the patent and who is credited as inventor.

  4. Key dates

    Filing, priority, publication, and grant dates set the timeline.

  5. First independent claim

    The legal scope of protection — read this for what is actually claimed.

  6. CPC / IPC classifications

    Technology tags used to group this patent with similar filings.

  7. Citations and related patents

    Prior art links and similar publications in this corpus.

Abstract

Official abstract text for this publication.

According to an embodiment, energy management system includes client and server. Server includes acquisition unit, estimation unit, calculator and controller. Acquisition unit acquires data concerning electrical equipment in a building including a storage battery from client. Estimation unit estimates energy demand and energy generation amount in building based on the data. Calculator calculates, based on the energy demand and the energy generation amount, operation schedule of the electrical equipment to optimize energy balance in building under a constraint that minimizes dump power to be discarded after storage battery is fully charged. Controller creates control information to control electrical equipment based on operation schedule.

First claim

Opening claim text (preview).

The invention claimed is: 1. An energy management system including a client, and a server capable of communicating with the client, wherein the server comprises a collector configured to acquire data concerning electrical equipment in a house including a storage battery and a fuel cell from the client, an estimator configured to estimate an energy demand and an energy generation amount in the house based on the data, a calculator configured to calculate, based on the energy demand and the energy generation amount, an operation schedule of the electrical equipment to optimize an energy balance in the house under a constraint that minimizes dump power to be discarded after the storage battery is fully charged and when a reverse flow of generated power of the fuel cell to a grid is prohibited, and a controller configured to create control information to control the electrical equipment based on the calculated operation schedule, wherein the energy management system further comprising a database configured to store a control target model of the electrical equipment, the calculator calculates the operation schedule based on the control target model, the fuel cell includes a main body, an auxiliary boiler, a reverse flow prevention heater, and a hot water tank, the control target model includes a grid, the storage battery, the main body, the auxiliary boiler, the reverse flow prevention heater, and the hot water tank, and the calculator calculates the operation schedule by optimizing an objective function including variates concerning the grid, the storage battery, the main body, the auxiliary boiler, the reverse flow prevention heater, and the hot water tank. 2. The energy management system of claim 1 , wherein the storage battery includes a stationary storage battery installed in the house, and an on-vehicle battery electrically connectable to the stationary storage battery. 3. The energy management system of claim 1 , wherein the objective function includes a unit price of electricity, a unit price of gas, and a sales price of power as variables. 4. The energy management system of claim 1 , wherein the calculator optimizes the objective function using a genetic algorithm. 5. The energy management system of claim 1 , wherein the calculator calculates the operation schedule under a constraint that limits a rate of change in power generation amount of the fuel cell as a function of time to a predetermined range. 6. The energy management system of claim 1 , wherein the electrical equipment includes a generator adopting a motor. 7. The energy management system of claim 1 , wherein the client includes a user interface configured to reflect an intention of a customer of the power on the control information transmitted from the controller. 8. The energy management system of claim 1 , wherein at least one of the collector, the estimator, the calculator, and the controller is a functional object arranged in a cloud computing system. 9. A server for managing energy in a house including electrical equipment having a storage battery and a fuel cell, comprising: a collector configured to acquire data concerning the electrical equipment; an estimator configured to estimate an energy demand and an energy generation amount in the house based on the data; a calculator configured to calculate, based on the energy demand and the energy generation amount, an operation schedule of the electrical equipment to optimize an energy balance in the house under a constraint that minimizes dump power to be discarded after the storage battery is fully charged and when a reverse flow of generated power of the fuel cell to a grid is prohibited; and a controller configured to create control information to control the electrical equipment based on the calculated operation schedule, wherein the server further comprising a database configured to store a control target model of the electrical equipment, the calculator calculates the operation schedule based on the control target model, the fuel cell includes a main body, an auxiliary boiler, a reverse flow prevention heater, and a hot water tank, the control target model includes a grid, the storage battery, the main body, the auxiliary boiler, the reverse flow prevention heater, and the hot water tank, and the calculator calculates the operation schedule by optimizing an objective function including variates concerning the grid, the storage battery, the main body, the auxiliary boiler, the reverse flow prevention heater, and the hot water tank. 10. The server of claim 9 , wherein the storage battery includes a stationary storage battery installed in the house, and an on-vehicle battery electrically connectable to the stationary storage battery. 11. The server of claim 9 , wherein the objective function includes a unit price of electricity, a unit price of gas, and a sales price of power as variables. 12. The server of claim 9 , wherein the calculator optimizes the objective function using a genetic algorithm. 13. The server of claim 9 , wherein the calculator calculates the operation schedule under a constraint that limits a rate of change in power generation amount of the fuel cell as a function of time to a predetermined range. 14. An energy management method applicable to an energy management system including a client, and a server capable of communicating with the client, the method comprising: by the server, acquiring data concerning electrical equipment in a house including a storage battery and a fuel cell from the client; estimating an energy demand and an energy generation amount in the house based on the data; calculating, based on the energy demand and the energy generation amount, an operation schedule of the electrical equipment to optimize an energy balance in the house under a constraint that minimizes dump power to be discarded after the storage battery is fully charged and when a reverse flow of generated power of the fuel cell to a grid is prohibited; and creating control information to control the electrical equipment based on the calculated operation schedule, wherein in the calculating, the operation schedule is calculated based on a control target model of the electrical equipment, the fuel cell includes a main body, an auxiliary boiler, a reverse flow prevention heater, and a hot water tank, the control target model includes a grid, the storage battery, the main body, the auxiliary boiler, the reverse flow prevention heater, and the hot water tank, and in the calculating, the operation schedule is calculated by optimizing an objective function including variates concerning the grid, the storage battery, the main body, the auxiliary boiler, the reverse flow prevention heater, and the hot water tank. 15. The energy management method of claim 14 , wherein the storage battery includes a stationary storage battery installed in the house, and an on-vehicle battery electrically connectable to the stationary storage battery. 16. The energy management method of claim 14 , wherein the objective function includes a unit price of electricity, a unit price of gas, and a sales price of power as variables. 17. The energy management method of claim 14 , wherein in the calculating, the objective function is optimized using a genetic algorithm. 18. The energy management method of claim 14 , wherein in the calculating, the operation schedule is calculated under a constraint that limits a rate of change in power generation amount of the fuel cell as a function of time to a predetermined range.

Assignees

Inventors

Classifications

  • Generation forecast, e.g. methods or systems for forecasting future energy generation · CPC title

  • Dispersed generators · CPC title

  • Home appliances · CPC title

  • Fuel cells · CPC title

  • Wind energy · CPC title

Patent family

Related publications grouped by family.

External sources

Frequently asked questions

Answers are generated from the same data shown on this page.

What does patent US9824409B2 cover?
According to an embodiment, energy management system includes client and server. Server includes acquisition unit, estimation unit, calculator and controller. Acquisition unit acquires data concerning electrical equipment in a building including a storage battery from client. Estimation unit estimates energy demand and energy generation amount in building based on the data. Calculator calculate…
Who is the assignee on this patent?
Toshiba Kk
What technology area does this patent fall under?
Primary CPC classification G06Q50/06. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue Nov 21 2017 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).