High-frequency pulse fast charging method and charging pile

A fast charging and high-frequency pulse technology, applied in the electronic field, can solve problems such as potential safety hazards, harmful public grids, and short charging time, and achieve the effects of improving charging quality, reducing impact, and shortening charging time

Active Publication Date: 2015-02-25
山东诺锐智能科技股份有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] Fast charging, also known as emergency charging, refers to a mode of charging electric vehicles with a large current within a short period of 30 minutes to 2 hours. The charging time is short, and the general charging cur

Method used

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  • High-frequency pulse fast charging method and charging pile
  • High-frequency pulse fast charging method and charging pile
  • High-frequency pulse fast charging method and charging pile

Examples

Experimental program
Comparison scheme
Effect test

Example Embodiment

[0044] Embodiment 1, high-frequency pulse fast charging method, the charging method provides:

[0045] One more resonant oscillation steps to generate continuous t1 pulse signal and t2 pulse signal;

[0046] A charging switch step, when the t1 pulse signal is generated in the multi-resonance step, the battery is charged forward during the t1 pulse period;

[0047] A monostable step, when the t2 pulse signal is generated in the multi-resonance step, a pulse control signal with adjustable width is generated;

[0048] A discharge switch step, when a trigger pulse is generated in the monostable step, the battery discharges within the trigger pulse period;

[0049] When the monostable step stops generating trigger pulses, the battery will stop discharging during the stop period;

[0050] Before the t1 pulse signal is generated again in the multi-oscillation step, the charge switch step and the discharge switch step stop.

[0051] During the t1 pulse period, the multi-resonance step generates a...

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PUM

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Abstract

The invention discloses a high-frequency pulse fast charging method. In the multi-harmonic oscillation step, a continuous pulse signal t1 and a continuous pulse signal t2 are produced; when the pulse signal t1 is produced in the multi-harmonic oscillation step, a storage battery is charged in the forward direction within the pulse t1 period; when the pulse signal t2 is produced in the multi-harmonic oscillation step, a width-adjustable pulse control signal is produced; when a trigger pulse is produced in the mono-stability step, the storage battery is discharged within the trigger pulse period; when production of the trigger pulse is stopped in the mono-stability step, discharging of the storage battery is suspended within the stopping period; before the pulse signal t1 is reproduced in the multi-harmonic oscillation step, the charging switching step and the discharging switching step are stopped, wherein charging time is 2-3 hours, and the service life of the storage battery is prolonged by 1.5-2 times.

Description

technical field [0001] The invention relates to a charging method, in particular to a high-frequency pulse fast charging method and a charging pile, and belongs to the field of electronic technology. Background technique [0002] At present, with the deepening of the global energy crisis, low-carbon economy has become the main theme of my country's economic development, and electric vehicles will become an important part of my country's new energy strategy. It will be the main direction of future automotive technology development, and the development of electric vehicles is the top priority. It is also the best way for the automotive industry to cope with the challenges of energy crisis, environment and climate change and maintain sustainable and harmonious development. Electric vehicles are complex and systematic projects, and charging piles for charging electric vehicle batteries are one of the important components. Therefore, the development of this product has broad marke...

Claims

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Application Information

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IPC IPC(8): H02J7/10
CPCB60L53/60Y02T10/70Y02T10/7072Y02T90/12
Inventor 刘利军尹建华程宁刘筠李滨
Owner 山东诺锐智能科技股份有限公司
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