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Power distribution network project reliability benefit evaluation method based on total life cycle

A technology with full life cycle and reliability, which is applied in data processing applications, instruments, calculations, etc., can solve problems such as unobvious reliability benefits, heavy enumeration workload, and difficult algorithm solution, achieving fast and accurate quantitative evaluation, easy Statistics, easily accessible effects

Active Publication Date: 2017-01-11
HUBEI ELECTRIC ENG CORP +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

In actual engineering calculation, the analytical method is relatively easy to implement, but the commonly used failure mode consequence analysis method needs to analyze the power outage accident caused by each component failure. For the distribution network with complex structure, the enumeration workload is huge, and some improved methods For example, the minimum path method and the minimum cut set method have certain difficulties in solving the algorithm, and the division criteria and boundary conditions are not clear enough when the network equivalent law is used to divide the equivalent area.
[0004] Aiming at the distribution network reliability benefit assessment problem, the traditional method is also based on the unit outage loss cost, but the calculation of the unit outage loss cost is very complicated, and it is necessary to conduct a large number of investigations and analyzes on power users to determine the different types of users in different power outage situations. At present, there is no survey data on user power outage losses in my country
In addition, the traditional method usually does not consider the change of network load in the whole life cycle, but only calculates the reliability benefit in the first year, because the load in the first year is relatively low, the reliability benefit may not be obvious, and a project is in the It has been able to bring benefits throughout the years of its life. As the years increase and the load increases year by year, the reliability benefits will also be different. That is, the reliability benefits of subsequent years need to be calculated sequentially, and cannot be simply calculated based on the first year. calculations for other years, which lead to inaccurate reliability benefit calculations

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  • Power distribution network project reliability benefit evaluation method based on total life cycle
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  • Power distribution network project reliability benefit evaluation method based on total life cycle

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Embodiment Construction

[0025] Below in conjunction with accompanying drawing and specific embodiment the present invention is described in further detail:

[0026] Such as figure 1 As shown, this patent includes the following steps:

[0027] (1) Determine the technical indicators for calculating the reliability benefits of the distribution network: clarify the source of the reliability benefits of the distribution network projects, and determine the relevant technical indicators for calculating the reliability benefits of the distribution network projects in combination with the internationally accepted reliability indicators of the distribution network;

[0028] (2) Establish a loss cost model for power outages in the distribution network: classify users according to load types, and obtain power outages caused by unreliable distribution network power supply in relevant areas through investigation and analysis of a large number of statistical data. Based on the method, the average cost model of pow...

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Abstract

The invention relates to the technical field of power distribution network benefit evaluation, and particularly to a power distribution network project reliability benefit evaluation method based on a total life cycle. In the total life cycle, maximal power supply capability restriction of the power distribution network is considered; according to the load value of each load point of the power distribution network in each year, a reliability technical index of a system before and after project establishing in each year is calculated, and a reliability improvement value in each year is obtained; and according to the reliability improvement value of each year in the total life cycle and power failure loss costs of power distribution network using organizations, and calculating a reliability benefit which is generated by power distribution network projection construction in the total life cycle. based on quantitative evaluation on the power distribution network reliability, according to power failure loss costs of the organizations, a power distribution network reliability benefit evaluation model is established, and reliability benefit of the power distribution network project is calculated. Furthermore system load change in the total life cycle is considered, and the reliability benefit of the power distribution network project in the total life cycle can be evaluated more accurately and more reasonably.

Description

technical field [0001] The invention relates to the technical field of distribution network benefit evaluation, in particular to a distribution network project reliability benefit evaluation method based on the whole life cycle. Background technique [0002] Power grid reliability is an important issue that needs to be considered during the operation of the power system, and it represents the ability of the power system to meet the electricity demand of users. With the steady development of the national economy and the gradual improvement of people's living standards, the demand for electricity in the whole society is also increasing, and the requirements for the reliability of power supply in the power system are also getting higher and higher. Studies have shown that about 80% of blackouts are caused by distribution system failures, which means that the distribution system has the greatest impact on the reliability of power supply for users. Therefore, there is an urgent ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G06Q10/06G06Q50/06
CPCG06Q10/0639G06Q50/06
Inventor 范黎娄素华吴耀武程杰范传光余佩隗震魏添
Owner HUBEI ELECTRIC ENG CORP