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電壓型PWM整流器直接功率控制系統主電路參數設計

Power circuit parameter design of the direct power control system of three phase boost-type PWM rectifiers

  • 摘要: 為了解決電壓型PWM整流器直接功率控制系統主電路參數設計問題,根據整流器在dq兩相同步旋轉坐標系中的數學模型建立了其功率控制數學模型.基于功率控制數學模型,結合整流器直接功率控制系統的特點,推得交流側電感是由功率、功率滯環比較器環寬及開關平均頻率決定的;直流側直流電壓是由交流電壓、電感及負載決定的;突加負載時直流側電容是由直流電壓波動、功率、電感及負載決定的.根據上述影響主電路參數的諸多因素,提出交流側電感、直流側電壓及直流側電容的設計方法.計算機仿真和實驗證明了本文提出的設計方法是可行的.

     

    Abstract: To solve the power circuit parameter design of the direct power control (DPC) system of three phase boost-type PWM rectifiers, the power control model of a PWM rectifier is established based on it model in the synchronouscoordinate. According to the power control model and the features of the DPC system of three phase boost-type PWM rectifiers, it is deduced that inductance on the AC side depends on power, the width of power hysteresis comparators, and switching average frequency. DC voltage is determined by AC voltage, inductance on the AC side, and load. DC capacitor relies on the pulsation of DC voltage, power, inductance on the AC side, and load. A design method of inductance on the AC side, DC voltage and DC capacitor of the power circuit based on many factors is proposed. The design method is proved feasible by simulation and experiment.

     

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