JP2009142023A - Integrated management system and program of wide area power data - Google Patents

Integrated management system and program of wide area power data Download PDF

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JP2009142023A
JP2009142023A JP2007314458A JP2007314458A JP2009142023A JP 2009142023 A JP2009142023 A JP 2009142023A JP 2007314458 A JP2007314458 A JP 2007314458A JP 2007314458 A JP2007314458 A JP 2007314458A JP 2009142023 A JP2009142023 A JP 2009142023A
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Yoshio Obuse
佳夫 小布施
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PARU COSMO KK
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E40/00Technologies for an efficient electrical power generation, transmission or distribution
    • Y02E40/70Smart grids as climate change mitigation technology in the energy generation sector
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y04INFORMATION OR COMMUNICATION TECHNOLOGIES HAVING AN IMPACT ON OTHER TECHNOLOGY AREAS
    • Y04SSYSTEMS INTEGRATING TECHNOLOGIES RELATED TO POWER NETWORK OPERATION, COMMUNICATION OR INFORMATION TECHNOLOGIES FOR IMPROVING THE ELECTRICAL POWER GENERATION, TRANSMISSION, DISTRIBUTION, MANAGEMENT OR USAGE, i.e. SMART GRIDS
    • Y04S10/00Systems supporting electrical power generation, transmission or distribution
    • Y04S10/50Systems or methods supporting the power network operation or management, involving a certain degree of interaction with the load-side end user applications

Abstract

<P>PROBLEM TO BE SOLVED: To provide an integrated management system of wide area power data by making it possible for a small scale consumer to participate in a liberalization market. <P>SOLUTION: An integrated management system 1 of wide area power data performing power supply to a plurality of collective consumers, i.e. a plurality of clients A1-An, from a supply source α through a transmission network 2 includes instrumentation communication terminals 3 for collecting and transmitting the data of received power of the clients A1-An, a management computer in a data center 5, a supply source computer α1, and a communication network 4 interconnecting the instrumentation communication terminals 3 and the management computer, wherein the management computer tabulates power data transmitted from the instrumentation communication terminals 3 of the clients A1-An and transmits power data of a contract consumer to each power supply source, and further performs tabulation of electric energy used by each client A1-An, calculation of maximum demand data, calculation of electricity bills, calculation of electricity bills of each supply source α, and transmission of power data of a contract consumer to each supply source. <P>COPYRIGHT: (C)2009,JPO&INPIT

Description

本発明は、広域電力データ総合管理システム及び広域電力データ総合管理プログラムに関するものである。   The present invention relates to a wide area power data comprehensive management system and a wide area power data comprehensive management program.

我国における電力事情においては、制度上電力自由化の範囲が拡大されたが、現在、実際の市場での電力自由化による効果は特別高圧受電の需要家に限られているのが実情である。これは、電力市場における託送料金の問題及び同時同量の原則が大きな障害となっていることによる。   Regarding the power situation in Japan, the scope of power liberalization has been expanded in terms of the system, but at present the effect of power liberalization in the actual market is limited to customers who receive special high-voltage power. This is because the problem of consignment charges in the electricity market and the principle of simultaneous equality are major obstacles.

最近の情勢として託送料金の問題は、社会問題化の傾向より是正される方向にあるが、他方同時同量の原則は、託送業者(一般電力会社)のリスクを考えると制度上存続することが予想される状況にある。   As a recent situation, the problem of consignment fees is in the direction of being rectified due to the trend toward social problems. On the other hand, the principle of the same amount at the same time may remain in the system considering the risk of consignment companies (general power companies). Expected situation.

ここに、同時同量の原則とは、一般電力会社の送電ネットワークを利用する特定規模電気事業者(新規事業者)は、契約した需要家が消費する電力を発電あるいは調達することで供給する義務が生じ、送電電力量と需要家受電電力量を一致させることを要求されるという原則である(電気事業法第24条の4)。すなわち、デマンド時限の30分間ごとに送電サービス契約先消費電力に対して±3%の誤差範囲内での電力供給が要求される。最近では、大口需要家向けの電力自由化促進が指向されている。   Here, the principle of the same amount is the same as that for a specified scale electric power company (new business) that uses a power transmission network of a general electric power company to supply or procure the power consumed by contracted consumers. This is the principle that the amount of transmitted power and the amount of power received by customers are required to match (Article 24-4 of the Electricity Business Act). That is, power supply is required within an error range of ± 3% with respect to the power consumption of the power transmission service contract every 30 minutes of the demand time limit. Recently, the promotion of electric power liberalization for large consumers has been directed.

特許文献1には、本発明に関連する技術として、ローカルエリアの需要電力が所定の契約量を超えないように各ローカルエリアの電気機器の運転を中央監視センタで集中管理するように構成した広域需要電力制御装置が開示されている。   In Patent Document 1, as a technique related to the present invention, a wide area configured to centrally manage the operation of electric devices in each local area at a central monitoring center so that the demand power in the local area does not exceed a predetermined contract amount. A demand power control device is disclosed.

また、特許文献2には、一般電力消費者を対象とし、電力事業者と一般電力消費者とを送電網及び通信回線で接続し、管理対象地域の消費電力量が所定の閾値を超えた場合に電力事業者から一般電力消費者に対して一斉に節電要請を発信するように構成した広域電力量デマンドコントロールシステムが開示されている。
特開2001−320832号公報 特開2002−345177号公報
Patent Document 2 describes a case where a general power consumer is targeted, the power provider and the general power consumer are connected by a power transmission network and a communication line, and the power consumption amount in the management target area exceeds a predetermined threshold. In addition, a wide-area power demand control system configured to transmit power saving requests all at once from electric power companies to general power consumers is disclosed.
JP 2001-320832 A JP 2002-345177 A

本発明が解決しようとする問題点は、上述した同時同量の原則を考慮し、従来電力自由化の恩恵に浴することが不可能な小規模需要家の自由化市場への参加を可能にし、電力エネルギーコストの低減及び電力データ等の時系列管理によるエネルギー消費状況の現状把握を通じて総合的な省電力活動に資することが可能な広域電力データ総合管理システムが存在しない点である。   The problem to be solved by the present invention is that, considering the principle of the same amount as described above, enables small-scale customers who have not been able to enjoy the benefits of power liberalization to participate in the liberalization market. In addition, there is no wide-area power data comprehensive management system that can contribute to comprehensive power saving activities through reduction of power energy costs and grasping the current state of energy consumption by time series management of power data and the like.

本発明は、グループ分けした複数の集合需要家に属する複数の顧客に対して電気事業者である電力供給元から送電網を通じて電力供給を行う系統に組み込んだ総合的な電力データ管理を行う広域電力データ総合管理システムであって、複数の集合需要家を構成する複数の顧客の各設備に設置され、各顧客の受電電力データをリアルタイムで収集し送信する計測通信端末と、複数の集合需要家のデマンド管理を含む総合的なデータ管理を行う電力管理機関のデータセンタに配置した管理コンピュータと、電力供給元に備えた供給元コンピュータと前記各計測通信端末と管理コンピュータ、管理コンピュータと供給元コンピュータを接続する通信網とを有し、前記管理コンピュータは、各顧客の計測通信端末からリアルタイムで送信される電力データに基づき集計し各電力供給元への契約顧客の電力データの即時送信を行い、更に顧客別の使用電力量の集計、集合需要家別の最大デマンドデータ算出、顧客別及び集合需要家別の電気料金の算出、電力供給元別の電気料金の算出することを最も主要な特徴とする。   The present invention provides wide-area power management for comprehensive power data management incorporated in a system that supplies power through a power transmission network from a power supply source that is an electric power company to a plurality of customers belonging to a plurality of grouped consumers A comprehensive data management system that is installed in each facility of a plurality of customers constituting a plurality of collective consumers, collects and transmits received power data of each customer in real time, and a plurality of collective consumers A management computer arranged in a data center of a power management organization that performs comprehensive data management including demand management, a supply source computer provided in a power supply source, each measurement communication terminal, a management computer, a management computer, and a supply source computer The management computer is connected to each customer's measurement communication terminal in real time. Based on the data and immediately send the power data of the contract customer to each power supply source, and further sum up the amount of power used by each customer, calculate the maximum demand data for each collective customer, and for each customer and collective customer The main feature is the calculation of electricity charges and the calculation of electricity charges for each power supply source.

請求項1記載の発明によれば、各集合需要家別に小規模需要家である複数の顧客を組み込んだ構成で、各顧客の受電電力データを電力管理機関のデータセンタに配置した管理コンピュータがリアルタイムで受信集計し、即時電力供給元に送信できるのでこの電力データに基づき、従来、特定規模電機事業者が供給を行う場合に必要であった需要化の規模に無関係に発生していた同時同量対策の為のリアルタイム電力データ管理、顧客別の使用電力量の集計、最大デマンドデータ算出、顧客別及び集合需要家別の電気料金の算出作業が軽減されることより特定規模電気事業者から見て非効率性がなくなるので小規模需要家の自由化市場への参加を可能にし、電力エネルギーコストの低減の道が開ける。
更に電力データの時系列管理によるエネルギー消費状況の現状把握を通じて総合的な省電力活動に資することが可能な広域電力データ総合管理システムを提供することができる。
According to the first aspect of the present invention, a management computer in which received power data of each customer is arranged in a data center of a power management organization in a configuration in which a plurality of customers who are small-scale customers are incorporated for each collective consumer is provided in real time. Since the data can be collected and transmitted to the power supplier immediately, the same amount of power generated based on this power data, regardless of the scale of demand that was previously required when a specific-scale electric company supplied power. Real-time power data management for countermeasures, aggregation of power consumption by customer, calculation of maximum demand data, calculation of electricity charges by customer and collective consumer is reduced from the viewpoint of a specific scale electric utility The inefficiency disappears, allowing small-scale customers to participate in the liberalized market and opening the way for lower energy costs.
Furthermore, it is possible to provide a wide area power data comprehensive management system that can contribute to comprehensive power saving activities through grasping the current state of energy consumption by time series management of power data.

請求項2記載の発明によれば、請求項1記載の発明の効果に加え、各顧客の上水流量及び下水流量、変圧器温度、漏電電流、室内温度、CO濃度の各データ及び各種警報管理データを各顧客に対する環境対策、設備予防保全支援として活用することも可能な広域電力データ総合管理システムを提供することができる。 According to the invention described in claim 2, in addition to the effect of the invention described in claim 1, each customer's water flow rate and sewage flow rate, transformer temperature, leakage current, room temperature, CO 2 concentration data and various alarms It is possible to provide a wide-area power data comprehensive management system in which management data can be used as environmental measures and facility preventive maintenance support for each customer.

請求項3記載の発明によれば、請求項2記載の発明の効果に加え、集合需要家に対する電気料金に関する処理、電力供給元に対する電気料金に関する処理、ガス使用量に関する処理、各種警報に関する処理をも実行する広域電力データ総合管理システムを提供することができる。   According to the invention described in claim 3, in addition to the effect of the invention described in claim 2, the process related to the electricity charge for the collective consumer, the process related to the electricity charge for the power supplier, the process related to the gas usage, and the process related to various alarms. It is possible to provide a comprehensive management system for wide-area power data.

請求項4記載の発明によれば、請求項3記載の発明の効果に加え、顧客の空調機制御、冷凍冷蔵設備制御、換気扇制御をも実行する広域電力データ総合管理システムを提供することができる。   According to the invention described in claim 4, in addition to the effect of the invention described in claim 3, it is possible to provide a wide area power data comprehensive management system that executes customer air conditioner control, refrigeration equipment control, and ventilation fan control. .

請求項5記載の発明によれば、上述した請求項1乃至4記載の発明の広域電力データ総合管理システムの動作を的確に実行させる広域電力データ総合管理プログラムを提供することができる。   According to the fifth aspect of the present invention, it is possible to provide a wide area power data comprehensive management program that accurately executes the operation of the wide area power data total management system according to the first to fourth aspects of the present invention.

本発明は、従来電力自由化の恩恵に浴することが不可能な小規模需要家の自由化市場への参加を可能にし、電力エネルギーコストの低減及び電力データの時系列管理によるエネルギー消費状況の現状把握を通じて総合的な省電力活動に資することが可能な広域電力データ総合管理システムを提供するという目的を有するものである。
本発明は、上記目的を、グループ分けした複数の集合需要家に属する複数の顧客に対して一般電気事業者、特定規模電気事業者を含む複数の電力供給元から送電網を通じて電力供給を行う系統に組み込んだ総合的な電力データ集計・送信・管理を行う広域電力データ総合管理システムであって、複数の集合需要家を構成する複数の顧客に設置され、各顧客の受電電力、上水流量及び下水流量、ガス使用量などの積算量データ変圧器温度、漏電電流、室内温度、CO濃度などのアナログデータ及び各種警報をリアルタイムで収集し送信する計測通信端末と、複数の集合需要家のデマンド管理を含む総合的なデータ管理を行う電力管理機関のデータセンタに配置した管理コンピュータと、電力供給元に備えた供給元コンピュータと、前記各計測通信端末と管理コンピュータ、管理コンピュータと供給元コンピュータを接続する通信網とを有し、前記管理コンピュータは、各顧客の計測通信端末からリアルタイムで送信される電力データに基づき集計し各電力供給元への契約顧客の電力データの送信を行い、顧客別の使用電力量の集計、集合需要家別の最大デマンドデータ算出、顧客別及び集合需要家別の電気料金の算出、ガス消費量の算出、電力供給元別の電気料金の算出を行うとともに、前記各顧客の上水流量、下水流量及びガス使用量、変圧器温度、漏電電流、室内温度、CO濃度の各データを各顧客に対する環境対策、設備予防保全支援として記憶する構成により実現した。
The present invention enables small-scale customers who have not been able to enjoy the benefits of electricity liberalization to participate in the liberalization market. The purpose is to provide a comprehensive power data management system that can contribute to comprehensive power saving activities through grasping the current situation.
The present invention is a system for supplying power through a power transmission network from a plurality of power supply sources including general electric utilities and specific scale electric utilities to a plurality of customers belonging to a plurality of collective consumers divided into groups. Is a comprehensive power data management system that comprehensively aggregates, transmits, and manages power data, and is installed at multiple customers that make up multiple collective consumers. Integrated data such as sewage flow rate, gas usage, etc. Measurement communication terminals that collect and transmit analog data such as transformer temperature, leakage current, room temperature, CO 2 concentration and various alarms in real time, and demands of multiple collective customers A management computer arranged in a data center of a power management organization that performs comprehensive data management including management, a supply source computer provided for a power supply source, and each measurement A communication terminal and a management computer; and a communication network connecting the management computer and the supply source computer. The management computer aggregates data based on power data transmitted in real time from the measurement communication terminal of each customer and supplies the power supply source to each power supply source. Power data of contract customers, aggregate power consumption by customer, calculate maximum demand data by collective consumer, calculate electricity charges by customer and collective consumer, calculate gas consumption, power While calculating the electricity bill for each supplier, each customer's water flow rate, sewage flow rate and gas usage, transformer temperature, leakage current, room temperature, CO 2 concentration data for each customer's environmental measures, Realized by the configuration to memorize as equipment preventive maintenance support.

以下に、本発明の実施例に係る広域電力データ総合管理システムについて図面を参照して詳細に説明する。   Hereinafter, a comprehensive power data management system according to an embodiment of the present invention will be described in detail with reference to the drawings.

本実施例に係る広域電力データ総合管理システム1は、図1に示すように、グループ分けした複数の集合需要家である会社(A〜Z)に属する複数の個別需要家である顧客(A1〜An,・・・Z1〜Zn)に対して、例えば一般電気事業者及び又は特定規模電気事業者(新規電気事業者)からなる電力供給元α,β,γ(以下、「供給元α,β,γ」という)から送電網2を通じて電力供給を行う配電系統に適用するものである。   As shown in FIG. 1, the wide area power data comprehensive management system 1 according to the present embodiment includes a customer (A1 to A1) that is a plurality of individual consumers belonging to a company (A to Z) that is a group of a plurality of collective consumers. An,..., Z1 to Zn), for example, power supply sources α, β, γ (hereinafter referred to as “supply sources α, β” composed of a general electric company and / or a specific scale electric company (new electric company)). , Γ ”) to a power distribution system that supplies power through the power transmission network 2.

すなわち、本実施例に係る広域電力データ総合管理システム1は、顧客(A1〜An,・・・Z1〜Zn)の受電設備等に各々計測通信端末3を例えば所定のレンタル料金を課した態様で設置するとともに、前記配電系統の電力管理を行う電力管理機関のデータセンタ5に管理コンピュータ21を配置し、管理コンピュータ21により前記各計測通信端末3からの計測データを通信網4を介してリアルタイムで受信し、この管理コンピュータ21により、顧客(A1〜An,・・・Z1〜Zn)の個別電力データをグルーピング集計処理し、処理データを専用回線6を介して供給元α,β,γの供給元コンピュータα1,β1,γ1へ配信するように構成している。   That is, the wide area power data comprehensive management system 1 according to the present embodiment is configured in such a manner that the measurement communication terminal 3 is charged a predetermined rental fee, for example, to the power receiving facilities of the customers (A1 to An,... Z1 to Zn). A management computer 21 is disposed in a data center 5 of a power management organization that performs power management of the distribution system, and measurement data from each measurement communication terminal 3 is transmitted by the management computer 21 via the communication network 4 in real time. The management computer 21 performs grouping and aggregation processing on the individual power data of the customers (A1 to An,... Z1 to Zn) and supplies the processing data to the supply sources α, β, and γ via the dedicated line 6. It is configured to be distributed to the original computers α1, β1, γ1.

前記通信網4は、インターネット網、WAN(Wide Area Network:広域情報通信網)等により構成することができる。   The communication network 4 can be configured by an Internet network, a WAN (Wide Area Network), or the like.

前記計測通信端末3は、図2に示すように、AI/DIOユニット(アナログイン/デジタルイン・アウトユニット)11と、データログ・通信ユニット12と、インターネット網に接続するための例えばADSLモデム13と、を有している。   As shown in FIG. 2, the measurement communication terminal 3 includes an AI / DIO unit (analog in / digital in / out unit) 11, a data log / communication unit 12, and an ADSL modem 13 for connecting to the Internet network. And have.

前記データログ・通信ユニット12は、AI/DIOユニット11を介して顧客(A1〜An,・・・Z1〜Zn)の受電設備からデジタルデータである受電電力積算パルス、ローカル電力積算パルスをリアルタイム(例えば1回/1分)で収集する。また、デジタルデータである上水流量積算パルス、下水流量積算パルスもリアルタイム(例えば1回/1分)で収集する。   The data log / communication unit 12 receives, in real time, received power integrated pulses and local power integrated pulses, which are digital data, from the power receiving equipment of the customers (A1 to An,... Z1 to Zn) via the AI / DIO unit 11. For example, collect once per minute). In addition, the water flow integrated pulse and the sewage integrated pulse, which are digital data, are also collected in real time (for example, once / one minute).

また、前記データログ・通信ユニット12は、顧客(A1〜An,・・・Z1〜Zn)の受電設備からアナログデータである変圧器温度、漏電電流のデータを収集するとともに、顧客(A1〜An,・・・Z1〜Zn)の対象設備からからアナログデータである室内温度、CO濃度等のデータ及びデジタルデータである各種警報信号を収集する。 The data log / communication unit 12 collects data on transformer temperature and leakage current, which are analog data, from the power receiving facilities of the customers (A1 to An,... Z1 to Zn), and the customers (A1 to An). collects various alarm signals are the data and the digital data such as room temperature, CO 2 concentration of analog data from the target equipment · · · Z1 to Zn).

前記データログ・通信ユニット12は、管理コンピュータ21から通信網4、ADSLモデム13を介して送信されてくる後述する空調機制御指示、冷凍冷蔵設備制御指示、換気扇制御指示を受信し、AI/DIOユニット11を介して顧客(A1〜An,・・・Z1〜Zn)の図示しない空調機、冷凍冷蔵設備、換気扇への空調機制御信号、冷凍冷蔵設備制御信号、換気扇制御信号を出力する。   The data log / communication unit 12 receives an air conditioner control instruction, a freezer / refrigeration equipment control instruction, and a ventilation fan control instruction, which will be described later, transmitted from the management computer 21 via the communication network 4 and the ADSL modem 13, and receives AI / DIO. An air conditioner (not shown), a refrigerating / refrigeration facility, an air conditioner control signal to the ventilating fan, a refrigerating / refrigeration facility control signal, and a ventilating fan control signal are output via the unit 11 to the customers (A1 to An,... Z1 to Zn).

前記データセンタ5の管理コンピュータ21は、図3に示すように、本実施例の広域電力データ総合管理システム1用の管理プログラムを格納したブログムメモリ22と、管理プログラムに基づき全体の制御を実行する制御部23と、前記通信網4に接続するためのルータ24と、前記データログ・通信ユニット12から送信されてくる各顧客(A1〜An,・・・Z1〜Zn)の受電電力積算パルスのデータ、変圧器温度、漏電電流のデータ、室内温度、CO濃度等のデータ及び各種警報信号を記憶する計測データ記憶手段25と、各種料金算出のための各種データを格納した演算用データ参照テーブル26と、前記受電電力積算パルスのデータに基づく顧客(A1〜An,・・・Z1〜Zn)別の月次使用電力量(休日平日別・時間帯別)の集計及び会社(A〜Z)別の最大デマンドデータ算出、顧客(A1〜An,・・・Z1〜Zn)別及び会社(A〜Z)別の電気料金の算出、会社(A〜Z)別のピーク基本料金の算出、前記電力供給元α,β,γ別の供給基本料金、供給電力量料金の算出、を実行する演算部27と、演算処理結果を記憶する演算データ記憶部28と、前記室内温度、変圧器温度のデータに基づき顧客(A1〜An,・・・Z1〜Zn)別に空調機制御指示、冷凍冷蔵設備制御指示、換気扇制御指示を生成する個別需要家用制御指示生成部29と、前記供給元α,β,γに対して、顧客(A1〜An,・・・Z1〜Zn)のうちの各々の契約先に該当する顧客の月次使用電力量(休日平日別・時間帯別)データを各々送信する契約先電力データ送信処理部30と、会社(A〜Z)に対する顧客(A1〜An,・・・Z1〜Zn)に関する合計料金請求、ピーク基本料金処理等を行う集合需要家用料金処理部31と、供給元α,β,γに対する前記供給基本料金、供給電力量料金に関する料金処理を行う供給元用料金処理部32と、前記専用回線6に接続する専用インターフェース33と、各種データ入力を行うキーボード等からなる入力部34と、各種データを表示する液晶ディスプレイ等からなる表示部35と、各種データをプリント出力するプリンタ36と、を有している。 As shown in FIG. 3, the management computer 21 of the data center 5 executes the overall control based on the blog memory 22 storing the management program for the wide area power data comprehensive management system 1 of this embodiment and the management program. Control unit 23, router 24 for connection to the communication network 4, and received power integrated pulses of each customer (A 1 to An,... Z 1 to Zn) transmitted from the data log / communication unit 12. Data, transformer temperature, leakage current data, room temperature, CO 2 concentration data, etc., and measurement data storage means 25 for storing various alarm signals, and calculation data reference storing various data for calculating various charges Monthly power consumption by customer (A1 to An,..., Z1 to Zn) based on the table 26 and the received power integration pulse data (by holiday weekday / time zone) Total) and calculation of maximum demand data by company (A to Z), calculation of electricity charges by customer (A1 to An, ... Z1 to Zn) and company (A to Z), company (A to Z) Z) A calculation unit 27 that executes calculation of another peak basic charge, calculation of a supply basic charge for each of the power supply sources α, β, and γ, and calculation of a supply power amount charge, and a calculation data storage unit that stores a calculation processing result 28 and control instructions for individual consumers that generate air conditioner control instructions, refrigeration / refrigeration equipment control instructions, and ventilation fan control instructions for each customer (A1 to An,..., Z1 to Zn) based on the room temperature and transformer temperature data. Monthly power consumption (holiday weekday) of the customer corresponding to each contractor among the customers (A1 to An,..., Z1 to Zn) with respect to the generation unit 29 and the supply sources α, β, and γ Contracted power data transmission processing unit 3 for transmitting data separately) And a collective consumer charge processing unit 31 that performs total charge billing, peak basic charge processing, etc. for customers (A1 to An,..., Z1 to Zn) to the company (AZ), and supply sources α, β, γ A supply source charge processing unit 32 that performs charge processing related to the supply basic charge and supply power amount charge, a dedicated interface 33 that is connected to the dedicated line 6, an input unit 34 that includes a keyboard for inputting various data, and the like. The display unit 35 includes a liquid crystal display that displays various data, and the printer 36 that prints out various data.

前記管理コンピュータ21は、さらに、前記顧客(A1〜An,・・・Z1〜Zn)に設置した計測通信端末3のレンタル料の徴収処理も行うようになっている。   The management computer 21 also performs a rental fee collection process for the measurement communication terminal 3 installed in the customers (A1 to An,... Z1 to Zn).

図4は、本実施例の広域電力データ総合管理システム1における会社(A〜Z)、データセンタ5、供給元α,β,γ間における料金処理系を示すものである。   FIG. 4 shows a charge processing system between the company (AZ), the data center 5, and the supply sources α, β, γ in the wide area power data comprehensive management system 1 of the present embodiment.

なお、図4においては、電力供給元α,β,γに関して、供給元αを一般電気事業者(一般電力会社)とし、供給元β,γを特定規模電気事業者(新規電気事業者)として示している。   In FIG. 4, regarding power supply sources α, β, and γ, supply source α is a general electric company (general power company), and supply sources β and γ are a specific scale electric company (new electric company). Show.

次に、本実施例に係る広域電力データ総合管理システム1の動作について電力データ処理及び料金算出処理を主にし、図4及び図5のフローチャートをも参照して説明する。   Next, the operation of the wide area power data comprehensive management system 1 according to the present embodiment will be described with reference mainly to the power data processing and the charge calculation processing, and also with reference to the flowcharts of FIGS.

本実施例に係る広域電力データ総合管理システム1において、前記各計測通信端末3は、会社A〜Zの顧客(A1〜An,・・・Z1〜Zn)の受電設備からデジタルデータである受電電力積算パルス、ローカル電力積算パルスからなる電力データをリアルタイム(例えば1回/1分)で収集し、通信網4を介して管理コンピュータ21に送信する(ステップS1)。   In the wide area power data comprehensive management system 1 according to the present embodiment, each measurement communication terminal 3 receives received power that is digital data from the receiving facilities of customers (A1 to An,..., Z1 to Zn) of the companies A to Z. Power data including the integrated pulse and the local power integrated pulse is collected in real time (for example, once per minute) and transmitted to the management computer 21 via the communication network 4 (step S1).

また、前記各計測通信端末3は、顧客(A1〜An,・・・Z1〜Zn)の受電設備からアナログデータである変圧器温度、漏電電流のデータ、さらには、上水流量積算パルス、下水流量積算パルス、及び、顧客(A1〜An,・・・Z1〜Zn)の対象設備からからアナログデータである室内温度、CO濃度等のデータを各々収集し、これらも通信網4を介して管理コンピュータ21に送信する(ステップS2)。 In addition, each of the measurement communication terminals 3 includes analog data from a power receiving facility of a customer (A1 to An,..., Z1 to Zn), transformer temperature and leakage current data, water supply flow rate integration pulses, sewage Data such as the indoor temperature and CO 2 concentration, which are analog data, are collected from the flow rate integration pulse and the target equipment of the customers (A1 to An,..., Z1 to Zn), and these are also collected via the communication network 4. It transmits to the management computer 21 (step S2).

前記管理コンピュータ21においては、前記管理プログラムに基づいた制御部23の制御の基に各計測通信端末3からの前記デジタルデータ、アナログデータが計測データ記憶手段25に記憶される(ステップS3)。   In the management computer 21, the digital data and analog data from each measurement communication terminal 3 are stored in the measurement data storage means 25 under the control of the control unit 23 based on the management program (step S3).

前記管理コンピュータ21の演算部27は、前記管理プログラムに基づいた制御部23の制御の基に、演算用データ参照テーブル26の格納データを参照して、前記受電電力積算パルスのデータに基づく顧客(A1〜An,・・・Z1〜Zn)別の月次使用電力量(休日平日別・時間帯別)の集計及び顧客(A1〜An,・・・Z1〜Zn)会社(A〜Z)別の最大デマンドデータ算出、顧客(A1〜An,・・・Z1〜Zn)別及び会社(A〜Z)別の電気料金の算出、会社(A〜Z)別のピーク基本料金の算出、前記供給元α,β,γ別の供給基本料金、供給電力量料金の算出、の各処理を実行する(ステップS4)。   The calculation unit 27 of the management computer 21 refers to the stored data in the calculation data reference table 26 based on the control of the control unit 23 based on the management program, and the customer ( A1-An, ... Z1-Zn) Monthly power consumption (by holiday weekday and time zone) by total and customer (A1-An, ... Z1-Zn) by company (A-Z) Maximum demand data calculation, calculation of electricity charges by customer (A1 to An,... Z1 to Zn) and company (A to Z), calculation of peak basic charge by company (A to Z), supply Each process of the basic charge for each source α, β and γ and the calculation of the charge for the amount of power supply is executed (step S4).

前記管理コンピュータ21の契約先電力データ送信処理部30は、前記供給元α,β,γに対して、顧客(A1〜An,・・・Z1〜Zn)のうちの各々の契約先に該当する顧客の月次使用電力量(休日平日別・時間帯別)データを専用回線5を介して各々送信する(ステップS5)。   The contracted power data transmission processing unit 30 of the management computer 21 corresponds to each of the customers (A1 to An,..., Z1 to Zn) for the suppliers α, β, and γ. The customer's monthly power consumption (by holiday weekday / by time zone) data is transmitted via the dedicated line 5 (step S5).

前記管理コンピュータ21の集合需要家用料金処理部31は、前記管理プログラムに基づいた制御部23の制御の基に、会社(A〜Z)に対する顧客(A1〜An,・・・Z1〜Zn)に関する合計料金請求及び料金回収、ピーク基本料金処理(料金請求及び料金回収)等を実行する(ステップS6)。
前記管理コンピュータ21の電力供給元用料金処理部32は、前記管理プログラムに基づいた制御部23の制御の基に、供給元α,β,γに対する前記供給基本料金、供給電力量料金に関する料金処理(支払い処理)を実行する(ステップS7)。
The collective consumer charge processing unit 31 of the management computer 21 relates to customers (A1 to An,... Z1 to Zn) for the company (A to Z) based on the control of the control unit 23 based on the management program. Total fee billing and fee collection, peak basic fee processing (fee billing and fee collection), etc. are executed (step S6).
The power supply source charge processing unit 32 of the management computer 21 performs charge processing related to the basic supply charge and supply power amount charge for the supply sources α, β, and γ under the control of the control unit 23 based on the management program. (Payment processing) is executed (step S7).

特定規模電気事業者(新規電気事業者)である前記供給元β,γは、前記管理コンピュータ21からの前記供給基本料金、供給電力量料金のデータに基づき、一般電気事業者(一般電力会社)である供給元αに対して、図4に示すように、託送基本料金及び託送電力量料金を支払う(ステップS8)。   The supply sources β and γ, which are specific-scale electric power companies (new electric power companies), are based on the data on the basic supply charges and supply electric energy charges from the management computer 21, and are the general electric power companies (general power companies). As shown in FIG. 4, a consignment basic charge and a consignment electric energy charge are paid to the supply source α (step S8).

上述した本実施例に係る広域電力データ総合管理システム1において、前記管理コンピュータ21の計測データ記憶手段25に記憶される最大デマンドデータは、会社(A〜Z)に対するデマンド管理に用いられ、また、上水流量積算パルス、下水流量積算パルス、ガス消費量積算パルスの各データは、顧客(A1〜An,・・・Z1〜Zn)の環境対策支援、下水量料金の減免等に用いられる。
また、アナログデータである変圧器温度、漏電電流のデータ、及び、顧客(A1〜An,・・・Z1〜Zn)の対象設備からからアナログデータである室内温度、CO濃度等のデータは、顧客(A1〜An,・・・Z1〜Zn)の環境対策、設備予防保全支援に用いられる。
In the wide area power data comprehensive management system 1 according to this embodiment described above, the maximum demand data stored in the measurement data storage means 25 of the management computer 21 is used for demand management for the company (A to Z). Each data of the water flow rate integration pulse, the sewage flow rate integration pulse, and the gas consumption integration pulse is used for environmental measures support of customers (A1 to An,... Z1 to Zn), reduction and exemption of sewage rate charges, and the like.
Further, the transformer temperature is analog data, data leakage currents, and the customer (Al-An, · · · Z1 to Zn) data such as room temperature, CO 2 concentration of analog data from the subject equipment is Used for environmental measures and facility preventive maintenance support for customers (A1 to An,..., Z1 to Zn).

本実施例に係る広域電力データ総合管理システム1においては、データセンタ5は、上述した各種の処理を実行する他、会社(A〜Z)の合計、即ち、データセンタ5の扱い電力量が大規模需要家であることを理由に供給元α,β,γとの間で電気料金値下げ交渉等も実行する。   In the wide area power data comprehensive management system 1 according to the present embodiment, the data center 5 executes the various processes described above, and the total of the companies (A to Z), that is, the amount of power handled by the data center 5 is large. Negotiations on price reductions with suppliers α, β, and γ are also carried out because they are scale consumers.

図6は、本実施例に係る広域電力データ総合管理システム1の会社A等の具体例である契約容量100kWオフィスビル100件及び契約容量100kW集合住宅100件からなる会社(集合需要家)に関する夏/平日の集約シミュレーションを示すものである。   FIG. 6 shows a summer related to a company (collective consumer) consisting of 100 contracted capacity 100 kW office buildings and 100 contracted capacity 100 kW collective housing, which is a specific example of the company A of the wide area power data comprehensive management system 1 according to the present embodiment. / Shows the weekday aggregation simulation.

すなわち、前記会社の1時間毎24時間分の電力データ、個別日時負荷推移及び合成電力後の日時負荷推移を示すものである。この場合には、負荷の最大は13700kWであり、個別契約時100kW×200件=20000kWに比べ、6300kWの低減効果が有ることが分る。   That is, it shows the power data for 24 hours per hour of the company, individual date / time load transition and date / time load transition after combined power. In this case, the maximum load is 13700 kW, and it can be seen that there is a reduction effect of 6300 kW compared with 100 kW × 200 cases = 20000 kW at the time of individual contract.

図7は、図6に示す場合と同様、契約容量100kWオフィスビル100件及び契約容量100kW集合住宅100件からなる会社(集合需要家)に関する夏/休日の集約シミュレーションを示すものである。   FIG. 7 shows summer / holiday aggregation simulation for a company (collective consumer) consisting of 100 contracted capacity 100 kW office buildings and 100 contracted capacity 100 kW collective housing as in the case shown in FIG.

すなわち、1時間毎24時間分の電力データ、個別日時負荷推移及び合成電力後の日時負荷推移を示すものである。この場合には、負荷の最大は12000kWであり、平日の最大負荷(13700kW)に近い値になっている。   That is, it shows power data for 24 hours every hour, individual date / time load transition and date / time load transition after combined power. In this case, the maximum load is 12000 kW, which is close to the maximum load (13700 kW) on weekdays.

図8は、契約容量100kWオフィスビル100件及び契約容量100kW集合住宅100件からなる会社(集合需要家)に関する曜日別消費電力量のデータ、曜日別消費電力量推移及び合成消費量曜日別推移の集約シミュレーションを示すものである。   FIG. 8 shows data of power consumption by day of the week for a company (collective consumer) consisting of 100 office buildings with 100 kW contract capacity and 100 housing units with 100 kW contract capacity. It shows an aggregation simulation.

図8から明らかなように、この会社(集合需要家)の場合、各曜日とも200000kWh以上の消費電力量が有り、供給元から見て消費電力量が巨大でかつ使用状態が平坦な極めて魅力的な仮想需要家を創出できることが分る。   As is clear from FIG. 8, in the case of this company (collective consumer), there is a power consumption of 200,000 kWh or more on each day of the week, and the power consumption is enormous and the usage state is flat as viewed from the supplier. It can be seen that a virtual consumer can be created.

本実施例に係る広域電力データ総合管理システム1において、前記通信網4をインターネット網とすることで通信速度の問題を解消し、通信方向を上り(ローカル:顧客(A1〜An,・・・Z1〜Zn)からホスト:管理コンピュータ21)とすることで、既設のイーネットインフラを流用可能とし、下り通信(ホストからローカル)の際に必要となるグローバルIPによるコストの問題及びセキュリティの問題を解決している。この点、従来においては、顧客(A1〜An,・・・Z1〜Zn)からの個別データの収集には電話回線又はドゥパ網等による方式が主流であったの大きく相違するところである。   In the wide area power data comprehensive management system 1 according to the present embodiment, the communication network 4 is an Internet network, thereby solving the problem of communication speed and increasing the communication direction (local: customer (A1 to An,... Z1). ~ Zn) to host: management computer 21) makes it possible to divert existing Ethernet infrastructure and solves cost and security problems due to global IP required for downstream communications (from host to local) is doing. In this regard, in the past, the method of collecting individual data from customers (A1 to An,... Z1 to Zn) is largely different from the mainstream method using a telephone line or a Dupa network.

以上説明した本実施例に係る広域電力データ総合管理システム1によれば、会社(A〜Z)、顧客(A1〜An,・・・Z1〜Zn)、供給元α,β,γ、電力管理機関のデータセンタ5は各々下記のような利点を享受することができる。   According to the wide area power data comprehensive management system 1 according to the present embodiment described above, the company (A to Z), the customer (A1 to An,... Z1 to Zn), the supply sources α, β, γ, power management. Each of the institutional data centers 5 can enjoy the following advantages.

会社(A〜Z)においては、従来供給元α,β,γとの電力契約の契約単位(1契約/1事業所)における最大デマンドを基準として契約容量(=基本料金)が決定されていたことにより、複数の顧客(A1〜An,・・・Z1〜Zn)を所有している場合の基本料金は個別の基本料金の合計であったのに対して、顧客(A1〜An,・・・Z1〜Zn)の電力データのリアルタイム集計(例;A1〜Anの集計)により複数の顧客(A1〜An,・・・Z1〜Zn)の時系列集計の最大値を基準とした契約への道が開ける結果、個別最大電力合計と集約後の最大電力との差による契約容量(=基本料金)低減という経済効果が見込める。   In the company (A to Z), the contract capacity (= basic charge) has been determined based on the maximum demand in the contract unit (1 contract / 1 establishment) of the power contract with the supply sources α, β, γ. As a result, the basic fee when a plurality of customers (A1 to An,... Z1 to Zn) are owned is the sum of the individual basic fees, whereas the customers (A1 to An,...・ Contracting contracts based on the maximum value of time series aggregation of multiple customers (A1 to An, ... Z1 to Zn) by real-time aggregation of power data of Z1 to Zn) (eg; aggregation of A1 to An) As a result, the economic effect of reducing the contract capacity (= basic charge) due to the difference between the total individual maximum power and the maximum power after consolidation can be expected.

また、顧客(A1〜An,・・・Z1〜Zn)の個別電力データの解析により、電力の使用状況が把握できるようになり、電力の無駄遣い要素の抽出、対策の立案・実行・検証を通じた省電力への取組が可能となる。   Also, by analyzing the individual power data of customers (A1 to An,..., Z1 to Zn), it becomes possible to grasp the usage status of power, and through the extraction of power waste factors, planning, execution and verification of measures Efforts for power saving are possible.

電力管理機関のデータセンタ5は、会社(A〜Z)を電力使用パターンの異なる異業種の組合せとすることで、会社(A〜Z)別最大電力合計と時系列合計電力最大値との差を異業種の組合せで大きくすることが可能となり、供給元α,β,γとの最大電力条件による契約容量と会社(A〜Z)別最大電力合計との差の分についての利益が発生する。   The data center 5 of the power management organization makes the company (A to Z) a combination of different industries with different power usage patterns, so that the difference between the maximum power total for each company (A to Z) and the time series total power maximum value is different. Can be increased by the combination of different industries, and profit is generated for the difference between the contracted capacity under the maximum power conditions with the suppliers α, β, and γ and the total maximum power by company (A to Z). .

また、会社(A〜Z)に関する調達電力量は非常に大きなボリュームとなるので、供給元α,β,γ側から見れば、電力消費量が巨大で使用状態が平坦な極めて魅力的な仮想需要家になることから、   In addition, since the amount of power procured for the company (A to Z) is very large, from the viewpoint of the suppliers α, β and γ, the power consumption is huge and the usage is flat. From becoming a house,

このスケールメリットによる強い交渉力で供給元α,β,γから安く電力を調達することが可能となり、会社(A〜Z)、顧客(A1〜An,・・・Z1〜Zn)、電力管理機関のデータセンタ5各々の利益とすることができる。   It is possible to procure electricity from suppliers α, β, γ at a low price with a strong bargaining power due to this scale merit, and companies (A to Z), customers (A1 to An, ... Z1 to Zn), and power management organizations The profits of the data centers 5 can be obtained.

供給元α,β,γは、従来において電力消費規模の関係で販売対象にならなかった小規模の顧客(A1〜An,・・・Z1〜Zn)への消費電力供給が可能になることから、供給電力の増加(=売上増)を見込むことができる。   The supply sources α, β, and γ can supply power to small customers (A1 to An,..., Z1 to Zn) that have not been sold because of the power consumption scale. The increase in power supply (= sales increase) can be expected.

更には、前記計測通信端末3の供給会社は、顧客(A1〜An,・・・Z1〜Zn)への計測通信端末3の供給による売上収益に加えて、自社顧客を電力管理機関(アグリゲーター)に紹介する仲介ビジネスを通じた利益や、計測通信端末3メンテナンス対応等のビジネスチャンスを見込むことができる。   Further, the supplier of the measurement and communication terminal 3 defines its own customer as a power management organization (aggregator) in addition to the revenue from the supply of the measurement and communication terminal 3 to the customers (A1 to An,... Z1 to Zn). You can expect profits through the brokerage business introduced in, and business opportunities such as measurement and communication terminal 3 maintenance.

このようにして、本実施例に係る広域電力データ総合管理システム1によれば、前記電力供給元β,γ等の同時同量対策支援による自由化市場の適用範囲の拡大に資することができるとともに、従来電力自由化の恩恵に浴することが不可能な小規模需要家の自由化市場への参加を可能にし、電力エネルギーコストの低減及び電力データの時系列管理によるエネルギー消費状況の現状把握を通じて総合的な省電力活動に多大に貢献することができる。   Thus, according to the wide area power data comprehensive management system 1 according to the present embodiment, it is possible to contribute to the expansion of the scope of the liberalized market by supporting the same amount countermeasures such as the power supply sources β and γ. , Enabling small-scale customers to participate in the liberalization market that could not benefit from the liberalization of electricity, and reducing the energy cost of energy and grasping the current situation of energy consumption through time-series management of power data It can greatly contribute to comprehensive power saving activities.

本発明は、集合需要家を構成する顧客として、小規模工場、各種商店等が集合している地域や、各種の飲食店、小売店が混在している繁華街商店群が存在する地域等を包含する広域電力データ総合管理システムとして広範に応用可能である。   The present invention is a customer who constitutes a collective customer, such as an area where small factories, various shops, etc. are gathered, an area where a variety of restaurants, retail shops are mixed, and the like. It can be widely applied as an integrated wide area power data management system.

本発明の実施例に係る広域電力データ総合管理システムの概略構成図である。1 is a schematic configuration diagram of a wide area power data comprehensive management system according to an embodiment of the present invention. 本実施例に係る広域電力データ総合管理システムの電力データ等の流れを示す説明図である。It is explanatory drawing which shows the flow of the electric power data etc. of the wide area electric power data comprehensive management system which concerns on a present Example. 本実施例に係る広域電力データ総合管理システムにおける管理コンピュータのブロック図である。It is a block diagram of the management computer in the wide area electric power data comprehensive management system which concerns on a present Example. 本実施例に係る広域電力データ総合管理システムにおける会社、データセンタ、供給元間における料金処理系を示す概略説明図である。It is a schematic explanatory drawing which shows the charge processing system between a company, a data center, and a supply source in the wide area electric power data comprehensive management system which concerns on a present Example. 本実施例に係る広域電力データ総合管理システムの処理の流れを示すフローチャートである。It is a flowchart which shows the flow of a process of the wide area power data integrated management system which concerns on a present Example. 本実施例に係る広域電力データ総合管理システムにおける会社(集合需要家)に関する夏/平日の日負荷の集約シミュレーションを示す図である。It is a figure which shows the aggregation simulation of the daily load of the summer / weekday regarding the company (collective consumer) in the wide area power data comprehensive management system which concerns on a present Example. 本実施例に係る広域電力データ総合管理システムにおける会社(集合需要家)に関する夏/休日の日負荷の集約シミュレーションを示す図である。It is a figure which shows the aggregation simulation of the daily load of the summer / holiday regarding the company (collective consumer) in the wide area electric power data comprehensive management system which concerns on a present Example. 本実施例に係る広域電力データ総合管理システムにおける会社(集合需要家)に関する曜日別消費電力量のデータ、曜日別消費電力量推移及び合成消費量曜日別推移の集約シミュレーションを示す図である。It is a figure which shows the aggregation simulation of the data of the power consumption according to day of the week about the company (collective consumer) in the wide area power data comprehensive management system which concerns on a present Example, the power consumption transition according to a day of the week, and the composite consumption according to a day of the week.

符号の説明Explanation of symbols

1 広域電力データ総合管理システム
2 送電網
3 計測通信端末
4 通信網
5 データセンタ
6 専用回線
11 AI/DIOユニット
12 データログ・通信ユニット
13 ADSLモデム
21 管理コンピュータ
22 ブログムメモリ
23 制御部
24 ルータ
25 計測データ記憶手段
26 演算用データ参照テーブル
27 演算部
28 演算データ記憶部
29 個別需要家用制御指示生成部
30 契約先電力データ送信処理部
31 集合需要家用料金処理部
32 供給元用料金処理部
33 専用インターフェース
34 入力部
35 表示部
36 プリンタ
A 会社
A1 顧客
An 顧客
Z 会社
Z1 顧客
Zn 顧客
α 供給元
α1 供給元コンピュータ
β 供給元
β1 供給元コンピュータ
γ 供給元
γ1 供給元コンピュータ
DESCRIPTION OF SYMBOLS 1 Wide area power data comprehensive management system 2 Power transmission network 3 Measurement communication terminal 4 Communication network 5 Data center 6 Dedicated line 11 AI / DIO unit 12 Data log and communication unit 13 ADSL modem 21 Management computer 22 Blog memory 23 Control part 24 Router 25 Measurement data storage means 26 Calculation data reference table 27 Calculation unit 28 Calculation data storage unit 29 Individual consumer control instruction generation unit 30 Contracted power data transmission processing unit 31 Collective customer charge processing unit 32 Supply source charge processing unit 33 Dedicated Interface 34 Input unit 35 Display unit 36 Printer A company A1 customer An customer Z company Z1 customer Zn customer α supplier α1 supplier computer β supplier β1 supplier computer γ supplier γ1 supplier computer

Claims (5)

グループ分けした複数の集合需要家に属する複数の顧客に対して電気事業者である電力供給元から送電網を通じて電力供給を行う系統に組み込んだ総合的な電力データ管理を行う広域電力データ総合管理システムであって、
複数の集合需要家を構成する複数の顧客の各設備に設置され、各顧客の受電電力データをリアルタイムで収集し送信する計測通信端末と、
複数の集合需要家のデマンド管理を含む総合的なデータ管理を行う電力管理機関のデータセンタに配置した管理コンピュータと、
電力供給元に備えた供給元コンピュータと、
前記各計測通信端末と管理コンピュータ、管理コンピュータと供給元コンピュータを接続する通信網と、
を有し、
前記管理コンピュータは、各顧客の計測通信端末からリアルタイムで送信される電力データに基づき集計し各電力供給元への契約顧客の電力データの即時送信を行い、更に顧客別の使用電力量の集計、集合需要家別の最大デマンドデータ算出、顧客別及び集合需要家別の電気料金の算出、電力供給元別の電気料金の算出することを特徴とする広域電力データ総合管理システム。
Wide-area power data comprehensive management system that performs comprehensive power data management built into a system that supplies power from a power supply source, which is an electric power provider, to a plurality of customers belonging to a plurality of collective consumers divided into groups through a power transmission network Because
A measurement communication terminal that is installed in each facility of a plurality of customers constituting a plurality of collective consumers, collects and transmits received power data of each customer in real time,
A management computer arranged in a data center of a power management organization that performs comprehensive data management including demand management of a plurality of collective customers;
A supplier computer for the power supplier,
Each measurement communication terminal and a management computer, a communication network connecting the management computer and a supplier computer,
Have
The management computer aggregates based on the power data transmitted in real time from each customer's measurement communication terminal and performs immediate transmission of the contract customer's power data to each power supply source, and further aggregates the amount of power used by each customer, A wide-area power data comprehensive management system that calculates maximum demand data for each collective consumer, calculates an electric charge for each customer and collective consumer, and calculates an electric charge for each power supply source.
グループ分けした複数の集合需要家に属する複数の顧客に対して一般電気事業者、特定規模電気事業者を含む複数の電力供給元から送電網を通じて電力供給を行う系統に組み込んだ総合的な電力データ集計・送信・管理を行う広域電力データ総合管理システムであって、
複数の集合需要家を構成する複数の顧客に設置され、各顧客の受電電力、上水流量及び下水流量、ガス使用量などの積算量データ変圧器温度、漏電電流、室内温度、CO濃度などのアナログデータ及び各種警報をリアルタイムで収集し送信する計測通信端末と、
複数の集合需要家のデマンド管理を含む総合的なデータ管理を行う電力管理機関のデータセンタに配置した管理コンピュータと、
電力供給元に備えた供給元コンピュータと、
前記各計測通信端末と管理コンピュータ、管理コンピュータと供給元コンピュータを接続する通信網と、
を有し、
前記管理コンピュータは、各顧客の計測通信端末からリアルタイムで送信される電力データに基づき集計し各電力供給元への契約顧客の電力データの送信を行い、顧客別の使用電力量の集計、集合需要家別の最大デマンドデータ算出、顧客別及び集合需要家別の電気料金の算出、ガス消費量の算出、電力供給元別の電気料金の算出を行うとともに、前記各顧客の上水流量下水流量及びガス使用量、変圧器温度、漏電電流、室内温度、CO濃度の各データを各顧客に対する環境対策、設備予防保全支援として記憶・通知することを特徴とする広域電力データ総合管理システム。
Comprehensive power data incorporated into a system that supplies power from a plurality of power supply sources, including general electric utilities and specific-scale electric utilities, to a plurality of customers belonging to a group of multiple collective consumers through a power grid A comprehensive power data management system that aggregates, transmits, and manages,
Installed in multiple customers who make up multiple collective customers, each customer's received power, water flow rate and sewage flow rate, accumulated amount data such as gas usage, transformer temperature, leakage current, room temperature, CO 2 concentration, etc. Measurement communication terminal that collects and transmits analog data and various alarms in real time,
A management computer arranged in a data center of a power management organization that performs comprehensive data management including demand management of a plurality of collective customers;
A supplier computer for the power supplier,
Each measurement communication terminal and a management computer, a communication network connecting the management computer and a supplier computer,
Have
The management computer aggregates based on the power data transmitted in real time from each customer's measurement communication terminal, transmits the contract customer's power data to each power supplier, aggregates the amount of power used by each customer, collects demand Calculation of maximum demand data for each house, calculation of electricity charges for each customer and collective consumer, calculation of gas consumption, calculation of electricity charges for each power supply source, A wide-area power data comprehensive management system that stores and notifies gas usage, transformer temperature, leakage current, room temperature, and CO 2 concentration data as environmental measures and facility preventive maintenance support for each customer.
グループ分けした複数の集合需要家に属する複数の顧客に対して一般電気事業者、特定規模電気事業者を含む複数の電力供給元から送電網を通じて電力供給を行う系統に組み込んだ総合的な電力データ管理を行う広域電力データ総合管理システムであって、
複数の集合需要家を構成する複数の顧客に設置され、各顧客の受電電力、上水流量及び下水流量、ガス使用量、変圧器温度、漏電電流、室内温度、CO濃度の各データ及び各種警報をリアルタイムで収集し送信する計測通信端末と、
複数の集合需要家のデマンド管理を含む総合的なデータ管理を行う電力管理機関のデータセンタに配置した管理コンピュータと、
電力供給元に備えた供給元コンピュータと、
前記各計測通信端末と管理コンピュータ、管理コンピュータと供給元コンピュータを接続する通信網と、
を有し、
前記管理コンピュータは、
各顧客の計測通信端末からリアルタイムで送信される受電電力データの記憶及び上水流量及び下水流量、ガス使用量、変圧器温度、漏電電流、室内温度、CO濃度の各データ及び各種警報の各顧客に対する環境対策、設備予防保全支援として記憶を行う計測データ記憶手段と、
各顧客の計測通信端末からリアルタイムで送信される電力データに基づき、顧客別の使用電力量の集計、集合需要家別の最大デマンドデータ算出、顧客別及び集合需要家別の電気料金の算出、電力供給元別の電気料金の算出を行う演算部と、
演算部の演算結果を記憶する演算データ記憶部と、
各顧客の計測通信端末からリアルタイムで送信される電力データに基づき、各電力供給元への契約顧客の電力データの送信を行う契約先電力データ送信処理部と、
集合需要家に対する電気料金の請求、回収処理を行う集合需要家用料金処理部と、
電力供給元への電気料金の支払い処理を行う供給元用料金処理部と、
を含むことを特徴とする電力データ管理を行う広域電力データ総合管理システム。
Comprehensive power data incorporated into a system that supplies power from a plurality of power supply sources, including general electric utilities and specific-scale electric utilities, to a plurality of customers belonging to a group of multiple collective consumers through a power grid A comprehensive power data management system that performs management,
Installed in multiple customers who constitute multiple collective customers, each customer's received power, water flow rate and sewage flow rate, gas usage, transformer temperature, leakage current, room temperature, CO 2 concentration data and various A measurement communication terminal that collects and transmits alarms in real time;
A management computer arranged in a data center of a power management organization that performs comprehensive data management including demand management of a plurality of collective customers;
A supplier computer for the power supplier,
Each measurement communication terminal and a management computer, a communication network connecting the management computer and a supplier computer,
Have
The management computer is
Receiving power data transmitted in real time from measurement and communication terminals of each customer, and data on water flow rate and sewage flow rate, gas usage, transformer temperature, leakage current, room temperature, CO 2 concentration data and various alarms Measurement data storage means for storing as environmental measures for customers, preventive maintenance support for facilities,
Based on the power data transmitted in real time from each customer's measurement communication terminal, the total amount of power used by each customer, the maximum demand data for each collective consumer, the electricity price for each customer and collective consumer, A calculation unit for calculating electricity charges by supplier,
A calculation data storage unit for storing calculation results of the calculation unit;
Based on the power data transmitted in real time from each customer's measurement communication terminal, the contract power data transmission processing unit that transmits the power data of the contract customer to each power supply source,
A bill processing unit for collective consumers that performs billing and collection processing of electricity charges to collective consumers;
A charge processing unit for the supplier that performs payment processing of the electricity bill to the power supplier;
A wide area power data management system that performs power data management.
グループ分けした複数の集合需要家に属する複数の顧客に対して一般電気事業者、特定規模電気事業者を含む複数の電力供給元から送電網を通じて電力供給を行う系統に組み込んだ総合的な電力データ管理を行う広域電力データ総合管理システムであって、
複数の集合需要家を構成する複数の顧客の各設備に設置され、各顧客の受電電力、上水流量及び下水流量、ガス使用量、変圧器温度、漏電電流、室内温度、CO濃度の各データ及び各種警報をリアルタイムで収集し送信するとともに、顧客の設備に対する制御信号出力機能を備えた計測通信端末と、
複数の集合需要家のデマンド管理を含む総合的なデータ管理を行う電力管理機関のデータセンタに配置した管理コンピュータと、
電力供給元に備えた供給元コンピュータと、
前記各計測通信端末と管理コンピュータ、管理コンピュータと供給元コンピュータを接続する通信網と、
を有し、
前記管理コンピュータは、
各顧客の計測通信端末からリアルタイムで送信される受電電力の記憶及び上水流量及び下水流量、ガス使用量、変圧器温度、漏電電流、室内温度、CO濃度の各データ及び各種警報の各顧客に対する環境対策、設備予防保全支援として記憶を行う計測データ記憶手段と、
各顧客の計測通信端末からリアルタイムで送信される電力データに基づき、顧客別の使用電力量の集計、集合需要家別の最大デマンドデータ算出、顧客別及び集合需要家別の電気料金の算出、電力供給元別の電気料金の算出を行う演算部と、
演算部の演算結果を記憶する演算データ記憶部と、
各顧客の計測通信端末からリアルタイムで送信される電力データに基づき、各電力供給元への契約顧客の電力データの送信を行う契約先電力データ送信処理部と、
集合需要家に対する電気料金の請求、回収処理を行う集合需要家用料金処理部と、
電力供給元への電気料金の支払い処理を行う供給元用料金処理部と、
前記室内温度、変圧器温度のデータに基づき顧客別に空調機制御指示、冷凍冷蔵設備制御指示、換気扇制御指示を生成する個別需要家用制御指示生成部と、
を含み、
前記個別需要家用制御信号生成部により生成した空調機制御指示、冷凍冷蔵設備制御指示、換気扇制御指示を管理コンピュータから前記計測通信端末に出力し顧客の空調機制御、冷凍冷蔵設備制御、換気扇制御を実行することを特徴とする広域電力データ総合管理システム。
Comprehensive power data incorporated into a system that supplies power from a plurality of power supply sources, including general electric utilities and specific-scale electric utilities, to a plurality of customers belonging to a group of multiple collective consumers through a power grid A comprehensive power data management system that performs management,
Installed in each facility of a plurality of customers constituting a plurality of collective consumers, each of the received power of each customer, water flow rate and sewage flow rate, gas usage, transformer temperature, leakage current, room temperature, CO 2 concentration Collect and transmit data and various alarms in real time, and a measurement communication terminal equipped with a control signal output function for customer equipment,
A management computer arranged in a data center of a power management organization that performs comprehensive data management including demand management of a plurality of collective customers;
A supplier computer for the power supplier,
Each measurement communication terminal and a management computer, a communication network connecting the management computer and a supplier computer,
Have
The management computer is
Received power stored in real time from each customer's measurement and communication terminal, water flow rate and sewage flow rate, gas usage, transformer temperature, leakage current, room temperature, CO 2 concentration data and various alarm customers Measurement data storage means for storing as environmental measures against equipment preventive maintenance support,
Based on the power data transmitted in real time from each customer's measurement communication terminal, the total amount of power used by each customer, the maximum demand data for each collective consumer, the electricity price for each customer and collective consumer, A calculation unit for calculating electricity charges by supplier,
A calculation data storage unit for storing calculation results of the calculation unit;
Based on the power data transmitted in real time from each customer's measurement communication terminal, the contract power data transmission processing unit that transmits the power data of the contract customer to each power supply source,
A bill processing unit for collective consumers that performs billing and collection processing of electricity charges to collective consumers;
A charge processing unit for the supplier that performs payment processing of the electricity bill to the power supplier;
Individual customer control instruction generation unit for generating an air conditioner control instruction, a freezer / refrigeration facility control instruction, a ventilation fan control instruction for each customer based on the indoor temperature and transformer temperature data,
Including
Air conditioner control instructions, freezer / refrigeration equipment control instructions, and ventilation fan control instructions generated by the individual consumer control signal generator are output from the management computer to the measurement communication terminal to control the customer's air conditioner control, freezer / refrigeration equipment control, and exhaust fan control. A wide-area power data comprehensive management system characterized by being executed.
グループ分けした複数の集合需要家に属する複数の顧客に対して一般電気事業者、特定規模電気事業者を含む複数の電力供給元から送電網を通じて電力供給を行う系統に組み込んだ広域電力データ総合管理システム用の広域電力データ総合管理プログラムであって、
複数の集合需要家を構成する複数の顧客の各設備に設置した計測通信端末からの受電電力の記憶処理、及び、上水流量及び下水流量、変圧器温度、漏電電流、室内温度、CO濃度の各データ及び各種警報の各顧客に対する環境対策、設備予防保全支援としての記憶処理と、
受電電力のデータに基づき、顧客別の使用電力量の集計、集合需要家別の最大デマンドデータ算出、顧客別及び集合需要家別の電気料金の算出、集合需要家別のピーク基本料金の算出、前記電気事業者である電力供給元別の供給基本料金、供給電力量料金の算出の各処理と、
複数の電力供給元に対して、各々の契約先使用電力データをリアルタイムに送信する処理と、
集合需要家に対する電気料金に関する処理と、
電力供給元に対する電気料金に関する処理と
をコンピュータに実行させることを特徴とする広域電力データ総合管理プログラム。
Wide area power data integrated management incorporated into a system that supplies power through a power grid from multiple power supply sources including general electric utilities and specific scale electric utilities to multiple customers belonging to multiple collective consumers divided into groups A comprehensive power data management program for a system,
Storage processing of received power from measurement communication terminals installed in each facility of a plurality of customers constituting a plurality of collective consumers, and a water flow rate and a sewage flow rate, transformer temperature, leakage current, room temperature, CO 2 concentration Each data and various alarms for each customer environmental measures, storage processing as equipment preventive maintenance support,
Based on received power data, aggregate power consumption by customer, calculate maximum demand data by collective consumer, calculate electricity charges by customer and collective customer, calculate peak basic charge by collective consumer, Each process of calculation of the basic charge for each power supply source that is the electric power company, the charge for the amount of supplied power, and
A process of transmitting each contractor's power usage data to a plurality of power supply sources in real time;
Processing related to electricity charges for collective consumers,
A wide-area power data comprehensive management program that causes a computer to execute processing related to electricity charges for a power supply source.
JP2007314458A 2007-12-05 2007-12-05 Integrated management system and program of wide area power data Pending JP2009142023A (en)

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