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Time-Optimal and Loss-Minimizing Deadbeat-Direct Torque and Flux Control for Interior Permanent-Magnet Synchronous Machines

机译:内部永磁同步电机的时间最优和损耗最小的无差拍直接转矩和磁通控制

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摘要

This paper presents time-optimal control of an interior permanent-magnet synchronous machine (IPMSM) in voltage-limited and current-limited conditions using deadbeatdirect torque and flux control (DB-DTFC). A commanded air-gap torque and flux can be achieved by the end of each pulse width modulation (PWM) period using the DB-DTFC. However, it may take several PWM periods to achieve a desired torque that is physically infeasible in one step when operating near the voltage limit. The large torque command can be shaped as a feasible trajectory so that the deadbeat torque and flux is achieved for every sample time instant (switching period) along the trajectory. In this paper, the feasible trajectory is dynamically optimized to achieve a large torque command in the shortest time during the voltage-limited and current-limited operation. A loss-minimizing stator flux linkage is used during steady-state operation to reduce the computational complexity of the dynamic optimization and to operate the IPMSM at the loss-minimizing condition. The voltage-limited and current-limited operation of IPMSM drives is evaluated in both the simulation and experiment in this paper.
机译:本文提出了一种使用无差拍直接转矩和磁通控制(DB-DTFC)在电压限制和电流限制条件下的内部永磁同步电机(IPMSM)的时间最优控制。在每个脉冲宽度调制(PWM)周期结束时,都可以使用DB-DTFC获得命令的气隙扭矩和磁通量。但是,可能需要花费几个PWM周期才能达到所需的转矩,而该转矩在接近电压极限的情况下一步一步在物理上是不可行的。可以将大转矩指令定为一条可行的轨迹,以便沿轨迹的每个采样时刻(切换周期)获得无差拍转矩和磁通。在本文中,对动态轨迹进行了动态优化,以在限压和限流操作中在最短的时间内实现较大的转矩指令。在稳态运行过程中使用了损耗最小的定子磁链,以降低动态优化的计算复杂度,并使IPMSM在损耗最小的条件下运行。本文在仿真和实验中都对IPMSM驱动器的电压限制和电流限制操作进行了评估。

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