Method for judging whether continuous phase changing of direct-current system fails on basis of short-circuit ratio dynamic tracking

A DC system, commutation failure technology, applied in the direction of power transmission and AC network, can solve the problems of difficult to exhaustive hidden faults, single, large workload, etc., to achieve the effect of easy online implementation, clear physical meaning, and rapid judgment

Active Publication Date: 2014-06-25
STATE GRID CORP OF CHINA +2
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Problems solved by technology

[0004] For the AC / DC hybrid fed into the receiving end grid, the more serious safety and stability problem is the possible cascading failure of the AC / DC system, that is, the failure of the AC system may cause the continuous commutation failure of the DC system, which in turn leads to DC blocking and greater power transfer to the AC channel, triggering a cascading power grid collapse accident
The current research methods for this problem are still single. In engineering, the time domain simulation method is mainly used. Through the transient stability simulation of various AC and DC system fault combinations, it is evaluated whether it will cause the continuous commutation failure of the DC system, and then cause more damage. It is a serious cascading failure; however, this method faces problems such as heavy workload and difficulty in enumerating potential failures
In addition, some studies have been carried out at home and abroad on the formation mechanism and evolution process of cascading faults, and analysis methods such as power flow transfer evaluation after faults and small-world characteristics of power grids have been proposed, which have promoted the development of cascading fault set construction technology; but the current Research methods mostly focus on theoretical analysis or summary of operating experience. How to propose an effective and practical method of cascading fault set construction in combination with the actual situation of the power grid still needs further research

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  • Method for judging whether continuous phase changing of direct-current system fails on basis of short-circuit ratio dynamic tracking
  • Method for judging whether continuous phase changing of direct-current system fails on basis of short-circuit ratio dynamic tracking
  • Method for judging whether continuous phase changing of direct-current system fails on basis of short-circuit ratio dynamic tracking

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Embodiment Construction

[0034] The present invention will be described in further detail below in conjunction with the accompanying drawings.

[0035] like figure 1 , the present invention provides a method for judging continuous commutation failure of a DC system based on short-circuit ratio dynamic tracking, said method comprising the following steps:

[0036] Step 1: Calculate the effective short-circuit ratio ESCR and multi-infeed short-circuit ratio MSCR of the AC system under the normal operation mode of the AC system i ;

[0037] Step 2: Calculate the effective short-circuit ratio of the AC system under the condition of line fault disconnection and multi-infeed short-circuit ratio

[0038] Step 3: Sort the line faults;

[0039] Step 4: Combine the worst set of cascading failures;

[0040] Step 5: Calculate the effective short-circuit ratio ESCR of the AC system under cascading faults l and multi-infeed short-circuit ratio MSCR l ;

[0041] Step 6: Determine whether commutation failu...

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Abstract

The invention provides a method for judging whether continuous phase changing of a direct-current system fails on basis of short-circuit ratio dynamic tracking. The method includes the following steps of calculating the ESCR and the MSCR i of an alternating-current system under the condition that the alternating-current system operates normally, calculating the ESCR and the MSCR i of the alternating-current system under the condition that line faults occur and power is cut off, sequencing the line faults, combining the poorest interlocking fault sets, calculating the ESCR 1 and MSCR 1 of the alternating-current system on the condition of interlocking faults, and judging whether phase changing fails. By means of the method, feature analysis is carried out on transient voltage instability accidents which probably exist in existing and planned alternating-current and direct-current hybrid power grids, fault screening and sequencing can be effectively carried out according to hazard degrees of alternating-current faults to stable operation of the direct-current system, by combination of the current transfer situation after the faults, the interlocking fault sets are reasonably built, and failures of continuous phase changing of the direct-current system and received-end power grid voltage instability risks after the faults can be quickly evaluated.

Description

technical field [0001] The invention belongs to the field of safety and stability analysis of electric power systems, and in particular relates to a method for judging continuous commutation failure of a DC system based on short-circuit ratio dynamic tracking. Background technique [0002] At present, my country's power grid has formed a North China-Central China AC interconnected power grid, and the East China Power Grid operates in isolation, and is connected to the North China-Central China Power Grid through a DC system. According to the plan, my country will build dozens of UHV DC projects in the next 10-20 years, and gradually form a UHV AC-DC hybrid power grid to supply power to the central and eastern load centers through UHV DC and AC systems. Conventional HVDC transmission systems require sufficient commutation voltage from the AC system at the receiving end, and will absorb a large amount of reactive power from the AC system after commutation failure occurs. After...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02J3/36
CPCY02E60/60
Inventor 唐晓骏蓝海波林俊杰李群矩杨琦吴涛申旭辉王丰罗红梅王菲李晶金海峰
Owner STATE GRID CORP OF CHINA
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