IP Library Granted Patent US 10,630,077
Granted Patent B2
US 10,630,077 · App. 15/553,554 · Granted Apr 21, 2020

Power management apparatus, power management system, and power management method

Inventor: Tsudoi Utamaru (Yamato, JP)
Assignee: KYOCERA Corporation
H02J3/32G05B15/02H02J7/0068H02J3/383H02J7/35Y02E10/563Y02E10/566Y02E70/30
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Quick Facts
Patent No.
US 10,630,077
App. No.
15/553,554
Granted
Apr 21, 2020
Kind
B2
Abstract

Power management apparatuses, power management systems, and power management methods for controlling power of a storage cell so as to allow appropriate compliance with requests from both the power supply side and the consumer side. A power management apparatus is provided in a consumer facility and includes a controller that manages the amount of stored electricity. The controller divides the amount of stored electricity at least into a first domain and a second domain and manages the domains, where the first domain is a domain in which to perform long-term control and the second domain is a domain in which to perform short-term control during power management in the consumer facility.

Claims (36)

1. A power management apparatus comprising:

a controller configured to control an amount of stored electricity in a storage cell installed in a consumer facility; and

a communication interface configured to acquire a demand response request issued over a network,

wherein the controller

divides the amount of stored electricity at least into a first domain and a second domain and manages the first domain and the second domain,

treats the first domain as a domain in which to perform long-term control during power management in the consumer facility, and

treats the second domain as a domain in which to perform short-term control during power management in the consumer facility,

wherein the controller, upon acquisition of the demand response request issued over a network, performs the long-term control in the first domain if a predetermined period of time in the demand response request is longer than a reference period of time, and performs the short-term control in the second domain if the predetermined period of time in the demand response request is shorter than the reference period of time,

wherein the controller controls, with the long-term control, the amount of stored electricity in accordance with an integrated power consumption during the predetermined period of time in the consumer facility, and

wherein the controller controls, with the short-term control, the amount of stored electricity in accordance with an instantaneous value of power consumption in the consumer facility.

2. The power management apparatus of claim 1 , wherein the controller controls, with the long-term control, the amount of stored electricity to prevent the integrated power consumption from exceeding a predetermined threshold during the predetermined time period.

3. The power management apparatus of claim 1 , wherein the controller reduces, with the long-term control, a peak of the power consumption during the predetermined time period.

4. The power management apparatus of claim 1 , wherein the controller reduces, with the short-term control, the instantaneous value or maintains the instantaneous value in a certain range.

5. The power management apparatus of claim 1 , wherein the controller controls, with the short-term control, the amount of stored electricity to perform leveling that reduces an incremental difference with respect to a purchased power established by a power purchase plan.

6. The power management apparatus of claim 4 , wherein the controller keeps, with the short-term control, variation in actual power consumption within the certain range upon acquisition of the demand response request.

7. The power management apparatus of claim 1 , wherein the controller varies, by season, a ratio between the first domain and the second domain or the amount of stored electricity allocated to each of the first domain and the second domain.

8. The power management apparatus of claim 7 , wherein the controller allocates a larger amount of stored electricity to the first domain in summer or winter than in spring or autumn.

9. The power management apparatus of claim 1 , wherein the controller performs whichever of the short-term control and the long-term control has higher economic efficiency on a priority basis.

10. The power management apparatus of claim 1 , wherein the reference period of time is 60 minutes or less.

11. A power management system comprising:

a storage cell; and

a power management apparatus installed in a consumer facility;

wherein the power management apparatus comprises a controller configured to control an amount of stored electricity in the storage cell, and a communication interface configured to acquire a demand response request issued over a network,

wherein the controller

divides the amount of stored electricity at least into a first domain and a second domain and manages the first domain and the second domain,

treats the first domain as a domain in which to perform long-term control during power management in the consumer facility, and

treats the second domain as a domain in which to perform short-term control during power management in the consumer facility, and

wherein the controller, upon acquisition of the demand response request issued over a network, performs the long-term control in the first domain if a predetermined period of time in the demand response request is longer than a reference period of time, and performs the short-term control in the second domain if the predetermined period of time in the demand response request is shorter than the reference period of time,

wherein the controller controls, with the long-term control, the amount of stored electricity in accordance with an integrated power consumption during the predetermined period of time in the consumer facility, and

wherein the controller controls, with the short-term control, the amount of stored electricity in accordance with an instantaneous value of power consumption in the consumer facility.

12. A power management method in a power management apparatus installed in a consumer facility, the method comprising:

dividing an amount of stored electricity of a storage cell at least into a first domain and a second domain and managing the first domain and the second domain, wherein the first domain is treated as a domain in which to perform long-term control during power management in the consumer facility, and the second domain is treated as a domain in which to perform short-term control during power management in the consumer facility;

acquiring a demand response request issued over a network; and,

upon acquisition of the demand response request issued over a network, performing the long-term control in the first domain if a predetermined period of time in the demand response request is longer than a reference period of time, and performing the short-term control in the second domain if the predetermined period of time in the demand response request is shorter than the reference period of time,

wherein the storage cell is controlled, with the long-term control, in accordance with an integrated power consumption during the predetermined period of time in the consumer facility, and

wherein the storage cell is controlled, with the short-term control, in accordance with an instantaneous value of power consumption in the consumer facility.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 24, 2017
From: UTAMARU, TSUDOI
To: KYOCERA CORPORATION
Reel/Frame 043392/0487 →
Priority Claims (1)
JP 2015-035637 · Feb 25, 2015 · national
Continuity (1)
Related Publication 20180048155A1 · Feb 15, 2018
Cited By (1)
US 12,506,909