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Integrate-Power -Control-Strategy -Based Electrolytic Capacitor-less Back-to-Back converter for Variable Frequency Speed Control System

机译:集成 - 电源 - 控制策略 - 基于电解电容的反向回到后反转器,用于可变频率控制系统

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The aim of this paper is to present a topology for variable frequency speed regulation system, which consists on a back-to-back (BTB) converter and DC-link small film capacitor. The DC-link voltage cannot be well controlled by the classical internal DC voltage control loop because of lacking the big electrolytic capacitor. There would be a strong power coupling between the rectifier and the inverter side. Integrate-power-control-strategy (IPCS) is proposed for realizing the synchronous control of the rectifier and inverter side power, which can overcome the power coupling between the rectifier and the inverter side. High transmission efficiency maintains the power balance of the rectifier and inverter and reduces the DC bus voltage ripple. The proposed IPCS realize the high power-factor (PF) and low total harmonic distortion (THD) of DC-link current. Simulations and experimental results are given to provide further validation of the proposed IPCS under different operating scenarios.
机译:本文的目的是为可变频率调节系统提供拓扑,其包括在背对背(BTB)转换器和DC-Link小胶片电容器上。由于缺少大型电解电容器,通过经典的内部直流电压控制回路不能很好地控制DC-Link电压。整流器和逆变器侧之间会有强大的电源耦合。建议集成 - 功率控制策略(IPC)实现整流器和逆变器侧功率的同步控制,这可以克服整流器和逆变器侧之间的电源耦合。高传输效率保持整流器和逆变器的功率平衡,并降低了直流母线电压纹波。所提出的IPCS实现了直流连杆电流的高功率因数(PF)和低总谐波失真(THD)。给出了模拟和实验结果,以便在不同的操作场景下进一步验证拟议的IPC。

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