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首页> 外文期刊>Industrial Electronics, IEEE Transactions on >Performance Investigation of Two Novel HSFSI Demodulation Algorithms for Encoderless FOC of PMSMs Intended for EV Propulsion
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Performance Investigation of Two Novel HSFSI Demodulation Algorithms for Encoderless FOC of PMSMs Intended for EV Propulsion

机译:EV推进PMSM无编码器FOC的两种新颖HSFSI解调算法的性能研究

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摘要

This paper investigates the performance of two novel half-switching frequency signal injection (HSFSI) demodulation algorithms for encoderless field-oriented control (FOC) of permanent magnet synchronous machines (PMSMs) intended for electric vehicle (EV) propulsion. The proposed rotating and pulsating HSFSI demodulation algorithms do not require voltage measurements or approximations for estimating the rotor position angle. The proposed HSFSI algorithms have been quantitatively and qualitatively compared by MATLAB-SimPowerSystems simulations, as well as experimentally against the two equivalent classical high-frequency signal injection (HFSI) approaches. A 2.5 kW PMSM with radially inset rotor magnets has been used for experimentally evaluating and validating the performance analysis and the comparison of the four algorithms fully implemented to work in real-time on a TI C2000 digital signal processor (DSP). The results obtained with an 80 kW interior (I)-PMSM intended for EV propulsion also show that the proposed algorithms allow a better machine control performance in terms of a smaller torque ripple generation and a faster current control loop.
机译:本文研究了两种新颖的半开关频率信号注入(HSFSI)解调算法的性能,这些算法用于电动汽车(EV)推进的永磁同步电机(PMSM)的无编码器磁场定向控制(FOC)。所提出的旋转和脉动HSFSI解调算法不需要电压测量值或近似值即可估算转子位置角。所提出的HSFSI算法已通过MATLAB-SimPowerSystems仿真进行了定量和定性比较,并针对两种等效的经典高频信号注入(HFSI)方法进行了实验。具有径向插入式转子磁体的2.5 kW PMSM已用于通过实验评估和验证性能分析,以及对在TI C2000数字信号处理器(DSP)上完全实现实时工作的四种算法的比较。用80 kW内部(I)-PMSM进行电动汽车推进所获得的结果还表明,所提出的算法在产生较小的转矩纹波和更快的电流控制环路方面具有更好的机器控制性能。

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