文件名称:lilizixudianchi
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本文设计了主电路参数并在MATLAB/Simuhnk环境下进行了仿真。本文还提
出了以MC9512D64为核心的双向DC/DC变换器控制板和控制器的硬件、软件的完
整的设计方案。充电采用恒流充电和恒压充电相结合的控制策略,实现单体电池
电压控制,提高了充放电控制性能和安全性。充放电系统样机测试结果表明:满
载时,系统效率80 以上,功率因数99 以上,谐波含量5 以下,满足设计要求,
验证了系统设计的可行性。
-The design parameters of the main circuit and in MATLAB/Simuhnk environment simulation. The paper also proposed to MC9512D64 core bidirectional DC/DC converter control panel and controller hardware and software design. Charging using the combination of constant current charge and constant voltage charge control strategy to achieve the control of cell voltage, and to improve the charge-discharge control performance and security. The charging and discharging system prototype test results show that: when fully loaded, the system efficiency is above 80 , more than 99 of the power factor, harmonic content below 5 , to meet the design requirements, verify the feasibility of the design of the system.
出了以MC9512D64为核心的双向DC/DC变换器控制板和控制器的硬件、软件的完
整的设计方案。充电采用恒流充电和恒压充电相结合的控制策略,实现单体电池
电压控制,提高了充放电控制性能和安全性。充放电系统样机测试结果表明:满
载时,系统效率80 以上,功率因数99 以上,谐波含量5 以下,满足设计要求,
验证了系统设计的可行性。
-The design parameters of the main circuit and in MATLAB/Simuhnk environment simulation. The paper also proposed to MC9512D64 core bidirectional DC/DC converter control panel and controller hardware and software design. Charging using the combination of constant current charge and constant voltage charge control strategy to achieve the control of cell voltage, and to improve the charge-discharge control performance and security. The charging and discharging system prototype test results show that: when fully loaded, the system efficiency is above 80 , more than 99 of the power factor, harmonic content below 5 , to meet the design requirements, verify the feasibility of the design of the system.
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