Three-phase load balance method and device for main line and branched lines of power distribution network

A three-phase load and branch line technology, applied in the direction of reducing the asymmetry of the polyphase network, eliminating/reducing the asymmetry of the polyphase network, etc. The effect of commutation vibration

Active Publication Date: 2017-11-17
BEIJING MPLUCKY TECH CO LTD
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Problems solved by technology

The technical solution disclosed in the above-mentioned Chinese patent does not consider the load characteristics of the load device it supplies when selecting the

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  • Three-phase load balance method and device for main line and branched lines of power distribution network
  • Three-phase load balance method and device for main line and branched lines of power distribution network
  • Three-phase load balance method and device for main line and branched lines of power distribution network

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Embodiment Construction

[0028] In order to clarify the technical scheme and technical purpose of the present invention, the present invention will be further introduced below in conjunction with the accompanying drawings and specific implementation methods.

[0029] Distribution network power wiring:

[0030] The low-voltage output side of the distribution transformer adopts a three-phase four-wire system and is wired to residential areas to provide electric energy to residential users. The low-voltage output side can be understood as a distribution network and a low-voltage distribution network, which are collectively referred to as distribution networks hereinafter. The distribution network, such as Figure 4 As shown, it includes a main line drawn from the low-voltage side of the distribution transformer and m branch lines, which are respectively branch line 1, branch line 2, ..., branch line m. The branch lines 1, 2, ..., branch lines m are respectively electrically connected to the main line, ...

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Abstract

The invention discloses a three-phase load balance method and device for a main line and branched lines of a power distribution network. The method comprises the following steps: when the three-phase load of the main line is unbalanced, determining a phase adjustment pair of the main line and corresponding adjustment magnitude; selectively adjusting the branched lines in the branched lines with high phase switching for source phase total power load, marking commutation devices without supplying power for load devices internally provided with magnetic moving components on the source phases of the adjusted branched lines, selecting required commutation devices from the marked commutation devices, and if the marked communication devices are insufficient, selecting the communication devices from the unmarked communication devices; enabling the sum of the power loads of the communication devices selected from each adjusted branched line to be equivalent to the adjustment magnitude of the main line, and switching the access switching of the communication devices selected on the branched lines to target phase, so that the three-phase load of the main line and the branched lines reach a balance requirement. Commutation vibration is prevented from occurring in the load devices internally provided with the magnetic moving components at the user client to generate noise, and the stable operation is maintained.

Description

technical field [0001] The present invention relates to distribution network load balancing technology, in particular to a distribution network main and branch line three-phase load balancing method suitable for low-voltage distribution network, and a distribution network main and branch line suitable for realizing the balancing method. The invention relates to a branch line three-phase load balancing device, which belongs to the field of low-voltage power distribution network power distribution technology. Background technique [0002] The load of the low-voltage distribution network is generally composed of a mixture of three-phase loads and single-phase loads. Residential electricity is all single-phase loads, and the distribution network is relatively complicated. The size is different and the power consumption time is different. Therefore, the three-phase unbalanced condition of the distribution network is irregular and unpredictable in advance, which leads to the long-...

Claims

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Application Information

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IPC IPC(8): H02J3/26
CPCH02J3/26Y02E40/50
Inventor 陈鸽
Owner BEIJING MPLUCKY TECH CO LTD
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