Electric vehicle hybrid energy management system based on adaptive wavelet transformation and control method thereof

A technology of electric vehicles and hybrid energy, applied in the direction of electric vehicles, power management, battery/fuel cell control devices, etc., can solve problems such as no consideration

Active Publication Date: 2019-06-07
CENT SOUTH UNIV +1
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

The publication number is CN107947211A, and the publication date is April 20, 2018. It is an invention patent application titled "Optimized Configuration Method for Energy Storage in Island Microgrid Using Wavelet Packet Decomposition and Considering Frequency Response", which comprehensively considers energy storage batteries, The characteristics of the supercapacitor and the ability to absorb the frequency deviation of the system, the unbalanced power is decomposed by the Lay layer wavelet packet to obtain the wavelet packet component, and the unbalanced power is divided into low frequency co

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  • Electric vehicle hybrid energy management system based on adaptive wavelet transformation and control method thereof
  • Electric vehicle hybrid energy management system based on adaptive wavelet transformation and control method thereof
  • Electric vehicle hybrid energy management system based on adaptive wavelet transformation and control method thereof

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[0071] Below in conjunction with accompanying drawing, the present invention will be further described:

[0072] figure 1 Provided the functional block diagram of the system of the present invention, figure 2 The topological structure diagram of the main circuit of the system of the present invention is given. The two DC / DC converters are respectively connected to the lithium battery and the supercapacitor at the low-voltage input terminals. The two-way DC / DC converters are connected in parallel at the high-voltage output end, and then output filter capacitors are connected in parallel, and finally connected to the bus load. The currents are paralleled at the high-voltage outputs, using a common parallel output filter capacitor, connected to the bus load.

[0073] Among them, the boost output from the mixed energy to the load is positive, and the load step-down and feedback to the mixed energy is reverse. The terminal voltage of the output is the bus voltage.

[0074] im...

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Abstract

The invention discloses an electric vehicle hybrid energy management system based on adaptive wavelet transformation and a control method thereof. The electric vehicle hybrid energy management systembased on adaptive wavelet transformation comprises a super capacitor, a lithium battery, two DC/DC converters, a drive module, an acquisition circuit and a control module. The control method comprisesthe following steps that firstly, a total reference current required by the load is obtained through voltage loop control; then the adaptive wavelet transform algorithm is used for performing wavelettransform on the total reference current required by the load to obtain a high-frequency current component and a low-frequency current component, wherein the low-frequency current component is takenas a reference current of the lithium battery, and the high-frequency current component is taken as the reference current of the super capacitor; then, a current loop of the control module tracks thereference current of the lithium battery and the super capacitor in real time to realize the real-time distribution of the load demand power. According to the electric vehicle hybrid energy managementsystem based on adaptive wavelet transformation and the control method thereof, the super capacitor is fully utilized, and the lithium battery is effectively protected.

Description

technical field [0001] The invention relates to the technical field of electric vehicle hybrid energy management, in particular to an electric vehicle hybrid energy management system based on adaptive wavelet transformation and a control method thereof. Background technique [0002] In today's world, the situation of energy shortage and environmental deterioration is becoming more and more serious. Electric vehicles have abundant energy sources and have the advantage of no exhaust pollution, which is very beneficial to environmental protection and air cleanliness. Facing the changing output power in the actual energy supply process, the battery energy storage system needs to provide changing current, and the high-frequency and rapid charging and discharging current changes will cause great damage to the performance of the battery and reduce the service life of the battery. Therefore, considering the power density and discharge characteristics of the battery has become a key ...

Claims

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Application Information

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IPC IPC(8): B60L50/40B60L50/60B60L58/10
CPCY02T10/70Y02T10/72
Inventor 彭军王瑞黄志武李恒杨迎泽蒋富刘伟荣张晓勇周艳辉
Owner CENT SOUTH UNIV
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