Estimation method for DC support capability and commutation failure of multi-infeed DC system

A multi-feeding DC, commutation failure technology, applied in AC network circuits, power transmission AC networks, circuit devices, etc., can solve the problems of questionable accuracy, combination, ignoring effects, etc., to enhance accuracy and rigor Effect

Inactive Publication Date: 2019-04-12
ELECTRIC POWER RES INST OF STATE GRID ZHEJIANG ELECTRIC POWER COMAPNY +3
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

Based on the short-circuit impedance of the DC converter bus and the grid structure of the AC system, the relevant studies have proposed indicators such as the commutation failure immunity factor and the multi-infeed short-circuit ratio to evaluate the DC support capability, but the focus is single and the two cannot be effectively combined. And the influence of the electrical distance between the fault point and the

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  • Estimation method for DC support capability and commutation failure of multi-infeed DC system
  • Estimation method for DC support capability and commutation failure of multi-infeed DC system
  • Estimation method for DC support capability and commutation failure of multi-infeed DC system

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Embodiment

[0035] like figure 1 As shown, a multi-infeed DC system DC support capability and commutation failure evaluation method, which includes the steps:

[0036] A. Calculate the commutation failure critical voltage U of each DC circuit according to the structural parameters and operating status of the DC system cr1 , U cr2 ;

[0037] B. Establish the equivalent impedance matrix of the AC system, and evaluate the DC support capacity of each circuit according to the self-impedance of the converter bus, the electrical distance of the fault point, and the multi-feeder short-circuit ratio;

[0038] C. Evaluate the commutation failure of each DC circuit based on the critical voltage and supporting capacity.

[0039] In step A, the commutation failure critical voltage U based on structural parameters and operating status is derived by the following methods cr1 , U cr2 .

[0040] 1) Commutation failure critical voltage based on structural parameters

[0041] When the AC system is sy...

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Abstract

The invention discloses an estimation method for DC support capability and commutation failure of a multi-infeed DC system. According to an existing estimation method, the change of a DC current is not considered when a critical commutation failure voltage is deduced, and the accuracy is remained to be discussed. The estimation method discloses by the technical scheme comprises the steps of firstly, deducing a critical commutation bus voltage of each DC commutation failure according to a structure parameter and a running state of the system; secondly, determining the support capability of eachdirect current according to self impedance of the commutation bus, electrical distance of a fault point and multi-infeed short-circuit rate; and finally, estimating a commutation failure condition ofeach direct current according to a critical voltage and the support capability. During estimation of the support capability, factors such as multi-infeed short-circuit ratio and the electrical distance of the fault point are simultaneously considered, and the commutation failure critical voltage is comprehensively determined from two aspects of the system structure and the running state; and compared with an existing estimation method, the DC support capability and the commutation failure can be more accurately reflected.

Description

technical field [0001] The invention relates to the field of safety and stability analysis of power systems, in particular to an evaluation method for DC support capability and commutation failure of a multi-infeed DC system. Background technique [0002] In order to effectively solve the increasingly prominent contradiction between the energy structure and power demand, and ensure the economical, reliable and stable operation of the power grid, the interconnection of large-scale regional power grids has emerged as the times require. , National Networking" overall pattern, covering most of the country, becoming one of the largest power grids in the world. However, more than three-quarters of my country's coal reserves are distributed in the northwest region, and four-fifths of the hydropower resources are distributed in the west. The hydropower technologies in Sichuan, Yunnan, and Tibet can develop a capacity of more than 300 million kilowatts, while the central and eastern ...

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Application Information

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IPC IPC(8): H02J3/36
CPCH02J3/36H02J2203/20Y02E60/60
Inventor 楼伯良汤奕华文郑晨一王龙飞邓晖赵一琰王博文
Owner ELECTRIC POWER RES INST OF STATE GRID ZHEJIANG ELECTRIC POWER COMAPNY
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