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Low Switching Frequency Deadbeat-Direct Torque and Flux Control of Wound Field Synchronous Machines

机译:磁场同步电机的低开关频率无差拍直接转矩和磁通控制

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Enhancements to the deadbeat-direct torque and flux control (DB-DTFC) of wound field synchronous machines (WFSMs) are proposed allowing for operation at low switching frequency to fundamental frequency ratios. Discrete time current and flux linkage observers which properly model WFSM d-q and d-f cross-coupling are formed using a Taylor series approximated sampled Laplace approach. The affect of the Taylor series order on the discretization error and model accuracy is examined. The torque curve to determine the inverter voltage commands is derived from the flux linkage model coefficients. Experimental comparison of the WFSM torque response is made between the classical DB-DTFC with current and flux observers formed using a z-transform approach and the torque line derived from a forward Euler method and the newly proposed observers and torque curve.
机译:提出了增强绕线式同步电机(WFSM)的无差拍直接转矩和磁通量控制(DB-DTFC)的方法,以允许在低开关频率与基本频率之比下运行。使用泰勒级数近似采样拉普拉斯方法,可以正确建模WFSM d-q和d-f交叉耦合的离散时间电流和通量链接观测器。检验了泰勒级数阶数对离散误差和模型准确性的影响。从磁链模型系数中得出确定逆变器电压命令的转矩曲线。在传统的DB-DTFC与使用z变换方法形成的电流和磁通观测器以及从正向Euler方法得出的转矩线以及新提出的观测器和转矩曲线之间,对WFSM转矩响应进行了实验比较。

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