Power distribution network dynamic power restoration method based on load curve

A technology of dynamic power supply and recovery method, applied in electrical components, circuit devices, AC network circuits, etc., can solve the problem that the grid structure cannot be adjusted, the power outage area cannot be reduced, and the time-dependent load changes during fault repair cannot be considered on an hourly basis. And other issues

Active Publication Date: 2014-04-23
CHONGQING UNIV
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Problems solved by technology

The main disadvantages of this method are: ①The specified time period in this method actually refers to the fault repair time, so the load change can only be considered according to the fault repair time, and the load change with time during the fault repair period cannot be considered by hour; ② The adopted principle of terminating the power supply recovery process will lead to abandoning the power supply recovery scheme that will not overload the feeder receiving the load of the power outage section during a certain period of time during the fault recovery period, resulting in an increase in the partial load power outage time; ③ during the fault recovery During this period, only one grid

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  • Power distribution network dynamic power restoration method based on load curve
  • Power distribution network dynamic power restoration method based on load curve
  • Power distribution network dynamic power restoration method based on load curve

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Experimental program
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Embodiment

[0053] Such as figure 1 , 2 As shown, the specific steps of a method for dynamic power supply restoration of distribution network based on load curve are as follows:

[0054] (1) Enter the basic parameters

[0055] First, input the basic parameters required for the calculation, including the basic parameters of the distribution network and the parameters of the traditional genetic algorithm. The basic parameters of the distribution network include the total number of lines (M=72), line numbers (1, 2, …, 72), line head and end node numbers, line resistance (R), line reactance (X), line carrying capacity, line Switch type (no switch installed, section switch installed, tie switch installed), feeder number of the line; total number of nodes (N=70), total number of power nodes (K S =2), power node number (1, 70), node active load (P L ), node reactive power load (Q L ), node load types, active daily load rate curves of various load types; node voltage upper limit (U max =1.1p.u.), the...

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Abstract

The invention provides a power distribution network dynamic power restoration method based on a load curve, which belongs to the technical field of power distribution system automation. The method utilizes a computer, realizes computing through programs and comprises the steps of inputting basic parameters; computing active load and reactive load of each node in each hour and determining a grid structure in normal operation; determining a fault section, a power supply path of the power side of the fault section and a grid structure after failure isolation; applying a traditional genetic algorithm to determine a candidate grid structure set of the least loss load in each hour during fault restoration; finally determining the optimum dynamic power restoration scheme during fault restoration. The method fully utilizes the load curve, and the dynamic restoration scheme is formulated by hour, so that the grid structure changes along with the change of the load during fault restoration, and accordingly, the method has the characteristics of being capable of effectively reducing power failure areas caused by fault, shortening power failure time for users, reducing the power failure loss of the users, and the like. The method can be widely applied to power distribution network power restoration.

Description

Technical field [0001] The invention belongs to the technical field of power distribution system automation, and specifically relates to a method for dynamic power supply restoration of a distribution network based on a load curve. Background technique [0002] Electric energy is closely related to people's production and life, and reliable and continuous power supply is one of the basic requirements for the operation of the power system. The distribution network that connects the transmission grid and users is an important part of the distribution of electric energy and an important part of the power system. It is difficult to avoid the occurrence of faults in the actual operation of the large-scale and wide-ranging distribution network. The failure of the power outage will cause economic losses to users and affect people’s quality of life. Therefore, the distribution network often adopts closed-loop design and open-loop operation to facilitate failures. When it occurs, it can ...

Claims

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Application Information

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IPC IPC(8): H02J3/00G06Q10/00G06Q50/06
CPCY04S10/50
Inventor 王韶王熙刘沛铮谭文晏健张知王理丽张煜成
Owner CHONGQING UNIV
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