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Layered exchange and control method for real-time monitoring system data by power dispatching

A technology of real-time monitoring and power dispatching, applied in transmission systems, circuit devices, electrical components, etc., can solve problems such as the lack of integration of massive data and the inability to splicing of power dispatching automation systems, and achieve the effect of information sharing

Active Publication Date: 2014-11-19
CHINA ELECTRIC POWER RES INST +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The purpose of the present invention is to provide an effective means to solve the problem that the current real-time power dispatching automation system cannot be spliced ​​with the simulation platform, and the massive data of multiple communication protocols, multiple applications, multiple types, and multiple periods are not integrated on the same platform and unify the problem of visual presentation

Method used

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  • Layered exchange and control method for real-time monitoring system data by power dispatching
  • Layered exchange and control method for real-time monitoring system data by power dispatching
  • Layered exchange and control method for real-time monitoring system data by power dispatching

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Embodiment Construction

[0070] 1. SCADA / EMS system data processing

[0071] The data exchange interface (communication interface) provides the data exchange method between the power dispatching real-time monitoring system and other subsystems, including three basic services of file transfer, real-time data transfer and man-machine interface. The exchanged data includes real-time data and file data.

[0072] Adopt the method of customizing through the configuration interface in advance, and pre-specify the cross-node data access between the data platform and each subsystem;

[0073] Use DL 476-92 "Power System Real-time Data Communication Application Layer Protocol" to exchange data messages between the data platform and each subsystem, and use the formulated "Dynamic Data Platform Data Exchange Function Technical Description" to realize the exchange of data files;

[0074] Use data files or data packets for data access, and use event-triggered or periodic data access;

[0075] The flow of data acc...

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Abstract

The invention provides a layered exchange and control method for real-time monitoring system data by power dispatching. A CIM / XML (common information module) / (extensible markup language) interface, a CIM / E interface and other models of the electric power subsystems are processed and combined to establish a device model of the large power grid, therefore, perfect interaction of various application data including SCADA (supervisory control and data acquisition) real-time data, WAMS (wide area measurement system) data, EMS (enhanced message service) advanced application data and dynamic security analysis warning information can be realized, and power system control commands among the systems can be smoothly transmitted and executed. A data acquisition and exchange function can support multiple communication protocols, multi-application, multi-type and large amounts of data, satisfy the real-time requirements of all transmission environments, and provide comprehensive multi-scale real-time operation information of the power grid for other application analysis systems. A close integration mode is used to realize application integration and each subsystem and application can be monitored and managed, so a uniform access interface and a man-machine interface can be ensured to provide for each application system.

Description

technical field [0001] The invention relates to the field of power systems, in particular to a layered exchange and control method for data in a power dispatching real-time monitoring system. Background technique [0002] At present, the master station of the power dispatching real-time monitoring system running on-line is in data communication with the real-time running sub-station system. After the system has been debugged, the data can be communicated normally and the acceptance is passed, considering the safety and stability of the power system operation, research and online control of various operation modes are not allowed. Existing discussion and research are all based on offline methods, which lack pertinence and operability, and have certain limitations. On the other hand, the existing SCADA system is connected to the RTU substation, and the refresh cycle is at the second level, while the WAMS subsystem is connected to the PMU substation, the refresh cycle is at th...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H04L29/08H02J13/00
Inventor 张波付辉河江何姝颖刘炎炎
Owner CHINA ELECTRIC POWER RES INST
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