Segmental non-contact power supply transmitting device for rail car and control method for segmental non-contact power supply transmitting device

A non-contact power supply and transmission device technology, applied in circuit devices, electrical components, etc., can solve the problems of no-load or low impedance of segmented power supply coils, power supply of transmission coils, power reduction, etc., to avoid inconsistent impedance between coils, The effect of increasing the power supply range and reducing the length

Active Publication Date: 2016-08-17
SOUTHWEST JIAOTONG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, when the impedances of the parallel branches of the two sending coils are different, the current phase of the two sending coil branches may change, causing the magnetic fields of the two power sending coils placed in close proximity to cancel each other, reducing the power and efficiency of power transmission
In addition, in the case of constant voltage power supply on the primary side and the use of series compensation topology, the no-load or low impedance of the segmented power supply coil may also cause excessive current in the primary side loop and damage to devices and power supplies, thus seriously affecting the quality of rail transit. efficiency and safety
[0007] If an AC constant current power supply is used for power supply, since the impedance parameters of the two parallel transmitting coils are changed by the position of the receiving coil coupled with them, the impedance of the transmitting coil close to the receiving coil becomes larger, and the impedance of the transmitting coil far away from the receiving coil becomes smaller; On the contrary, the current of the sending coil farther away from the receiving coil increases, and the current of the sending coil closer to the receiving coil decreases, which reduces the power obtained by the receiving coil and affects the power supply stability and operation stability of the rail car.
[0008] In addition, the non-contact power supply system usually uses a single power supply. When the power supply fails, it cannot provide power to the sending coil, and the rail car cannot run due to power loss, which will also affect the normal operation of rail transit.

Method used

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  • Segmental non-contact power supply transmitting device for rail car and control method for segmental non-contact power supply transmitting device

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Embodiment

[0047] figure 1 It shows that a specific embodiment of the present invention is a segmented non-contact power supply transmission device for rail cars, including a power conversion device DB connected to the power supply bus M, a power conversion device DB and a plurality of transmission coils in the interval Connected, characterized by:

[0048] The specific way that the described electric energy conversion device is connected with a plurality of sending coils is:

[0049] The left output terminal of the electric energy conversion device DB is simultaneously connected with the left power distribution switch-K 11 The moving end and the left power distribution switch 2K 12 The moving end is connected, and the left power distribution switch is K 11 The fixed end and the first left single-pole double-throw switch Q 11 The moving end is connected; the left power distribution switch 2K 12 The fixed end and the Nth left single-pole double-throw switch Q 1N The right fixed end ...

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Abstract

The invention provides a segmental non-contact power supply transmitting device for a rail car and a control method for the segmental non-contact power supply transmitting device. The power supply transmitting device comprises an electric energy conversion device and a plurality of transmitting coils, wherein the electric energy conversion device is connected with a power supply bus; the plurality of transmitting coils are connected with the electric energy conversion device; each segmental power supply transmitting coil comprises a plurality of groups of transmitting coils which are connected in series; and the electric energy conversion device is connected with the segmental transmitting coils through power distribution switches and corresponding single-pole double-throw switches. The control method of the device comprises the following steps: when a receiving coil is entering the transmitting coils, energizing the transmitting coils in advance for making a power supply preparation; when the receiving coil completely enters the range of the transmitting coils, only energizing the transmitting coils to supply electricity to the receiving coil; and when the receiving coil stretches across two adjacent transmitting coils, simultaneously energizing the two coils to supply electricity to the receiving coil and achieving smooth switching between a single-coil power supply mode and a dual-coil power supply mode. Continuous electric energy transmission with stable transmission power can be carried out on a mobile rail car-mounted receiving device; the electric energy transmission loss is small; and the efficiency is high.

Description

technical field [0001] The invention relates to a non-contact electric energy transmission technology, in particular to a rail car single-power segmented non-contact power supply sending device and a control method thereof. Background technique [0002] The traditional form of power supply for rail cars is contact power supply (such as contact power supply through catenary or third rail), which is easy to cause carbon deposition and wear at the contact point, and may cause dangers such as arcing and electric shock. For this reason, people have proposed a non-contact power supply technology for rail cars based on non-contact power transmission technology, which reduces the difficulty of maintenance of the power supply system and reduces the danger caused by exposed power supply lines. [0003] The rail car non-contact power supply system is divided into two parts: the ground sending device and the vehicle receiving device. The sending device is mainly to convert the electric...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02J50/10
Inventor 何正友杨鸣凯麦瑞坤李砚玲
Owner SOUTHWEST JIAOTONG UNIV
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