Power system load restoration auxiliary decision system and decision generating method thereof

A technology for load recovery and decision-making assistance, applied in information technology support systems, instruments, data processing applications, etc., can solve problems such as large recovery costs, difficulty in synchronization of load recovery information, low information transparency and sharing, and achieve good rationality. and objectivity, overcoming error and risk, reducing the effect of computational scale

Inactive Publication Date: 2013-05-15
SHENZHEN GRADUATE SCHOOL TSINGHUA UNIV
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  • Abstract
  • Description
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  • Application Information

AI Technical Summary

Benefits of technology

This patented technology uses web technologies that allow computer systems with different types of loads (power) to work together more efficiently when they are recovered from failures or crashes. It achieves this through various techniques such as syncing data between servers, calculating weightings based upon real world performance metrics, etc., which helps reduce error risk while ensuring efficient use of resources during restoring operations. Overall, it provides technical benefits to improving efficiency and reliability in recovering failed equipment.

Problems solved by technology

Technological Problem addressed in this patents relates to managing power failures within power systems (power generators) when they recover from severe events like blackouts or other disturbances. Current solutions involve manual intervention and delayed resumption procedures, leading to increased risk of damage and financial reputations. To address these issues, researchers proposed various approaches including distributed reserve schemes, virtual machine execution environments, and time division optimization techniques. However, current static load recovery plans may result in significant delays if critical assets remain unrecoverable because of their vulnerabilities.

Method used

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  • Power system load restoration auxiliary decision system and decision generating method thereof
  • Power system load restoration auxiliary decision system and decision generating method thereof
  • Power system load restoration auxiliary decision system and decision generating method thereof

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Embodiment Construction

[0043] Such as figure 1 As shown, the power system load restoration auxiliary decision-making system is composed of a Web server 1, a database server 2, an algorithm server 3, a system diagram template client 4, and a Web client 5 under an Ethernet network environment. Web server 1 is installed with The load recovery engineering management engine, the SQLServer engine is installed on the database server 2, the load recovery calculation engine and algorithm are installed on the algorithm server 3, and the grid graph element management engine is installed on the system diagram template client 4. The system adopts Web cross-platform technology, uses Browser / Server architecture, and applies object-oriented technology to realize system graphics and database development. The B / S structure concentrates the core functions of the system on the server (Server). The server includes Web server 1, database server 2, and algorithm server 3; the client uses a Web browser (Browser) to intera

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Abstract

The invention discloses a power system load restoration auxiliary decision system and a decision generating method of the power system load restoration auxiliary decision system. According to the power system load restoration auxiliary decision system, a B/S architecture is adopted, and the power system load restoration auxiliary decision system comprises a database server where a structured query language (SQL) Server engine is installed, an algorithm server where a load restoration calculation engine and algorithms are installed, a Web server where a load restoration project management engine is installed, a system diagram template client where a power grid primitive management engine is installed, and a Web client, wherein the database server, the algorithm server, the Web server, the system diagram template client and the Web client are connected through a network. The decision generating method includes that power grid single-line diagrams and power grid data are stored in the database server; a Web browser in the Web client is opened to operate the load restoration project management engine in a remote mode; the power grid single-line diagrams stored in the database server are managed to establish corresponding data management tables; and the load restoration project management engine invokes the algorithms in the algorithm server to generate a load partitioning scheme and load restoration grid structures of all partitioned zones. The power system load restoration auxiliary decision system is low in cost and easy to maintain, and information can be fully synchronized.

Description

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Claims

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Application Information

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Owner SHENZHEN GRADUATE SCHOOL TSINGHUA UNIV
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