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Rural electric network layout optimization method based on urban and rural integration

A technology for rural power grid and layout optimization, which is applied in electrical digital data processing, special data processing applications, instruments, etc., and can solve problems such as long low-voltage power transmission distance, multiple power transformation levels, and repeated power transformation.

Active Publication Date: 2012-04-11
STATE GRID CORP OF CHINA +2
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In the actual operation of the power grid, if the voltage level difference is too large, it will cause difficulties in the production and operation of substation equipment and low-voltage transmission, resulting in a large number of outgoing lines and long low-voltage power transmission distances, resulting in increased losses
Conversely, if the level difference is too small, there will be too many substation levels, resulting in unnecessary repeated substations, increasing the operating costs of the power grid, and also causing overlapping power supply ranges, and the role of each voltage level cannot be fully utilized

Method used

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  • Rural electric network layout optimization method based on urban and rural integration
  • Rural electric network layout optimization method based on urban and rural integration
  • Rural electric network layout optimization method based on urban and rural integration

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Embodiment Construction

[0156] The following are preferred embodiments of the present invention, and the technical solutions realized by the present invention will be further described below in conjunction with the accompanying drawings.

[0157] 1. Calculation of the number of substations

[0158] Take the number of 35kV substations in the 500 / 220 / 110 / 35 / 10 / 0.4kV system as an example:

[0159] N 35 = A 110 A 35 · N 110 = R S 110 2 R S 35 2 · N 110

[0160] The calculation method of the number of substations at other levels is the same, and the number of substations of e...

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Abstract

The invention provides a rural electric network layout optimization method based on urban and rural integration, which belongs to the field of rural electric network plan construction. An electric network structure model under the urban and rural integration layout, an economic power supply radius and economic power factor calculation model using the minimum annual cost as an objective function, a voltage grade sequence economic technology index optimization model and the like are built, a layered design and building method of the electric network structure model is systematically and completely provided, and in addition, the electric network annual cost optimization model is given for all voltage grade sequences. The method belongs to the electric network plan design method, which integrates the plan and the design and is applicable to the urban and rural integration.

Description

technical field [0001] The invention belongs to the field of planning and construction of rural power grids, and in particular relates to a method for optimizing the layout of rural power grids based on urban-rural integration. Background technique [0002] Many domestic and foreign research methods on the voltage system are to obtain the maximum economic benefits under the premise of meeting the technical requirements and safe, reliable and stable operation, that is, the comprehensive cost of power grid operation (including construction investment, line loss, transformer, etc.) Loss, operation and maintenance costs, depreciation, etc.) are minimal. The voltage level in the grid voltage system basically follows the law of "geometric mean" and the principle of "rounding up two and finding three". The law of "geometric mean value" is for a network or a regional network, the economic voltage U when the comprehensive cost is minimized is obtained from the relational expression ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G06F17/50
CPCY04S10/545Y02E60/76Y02E40/76Y04S40/22Y02E60/00
Inventor 盛万兴王金丽王金宇杨红磊宋祺鹏
Owner STATE GRID CORP OF CHINA
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