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Chaos in the switched reluctance motor drive employing digital speed and current control

机译:在开关磁阻电机驱动器中的混沌采用数字速度和电流控制

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摘要

Adjustable speed motor drives are among the most representative types of non-linear systems which can exhibit rich varieties of complex dynamic behaviours. This study presents the investigation of chaotic phenomena in the switched reluctance (SR) motor drive employing digital speed regulator and hysteresis current controller. For conducting stability analysis, a small signal discrete-time model of the SR drive has been derived and analysed for a range of control parameters. The simulation results of time-domain and frequency-domain analysis and phase portraits of the SR drive system are also demonstrated and discussed. Two influencing factors for chaotic behaviour in the SR drive system are identified and examined in detail: the feedback delay of the speed regulator and measurement imperfection from a rotary incremental encoder. For verification, an 8/6 pole 2.3 kW SR drive is employed in experimental tests. The bifurcation diagrams of the reference signal, waveforms of phase current, and the corresponding frequency spectra are recorded and illustrated for both normal and chaotic operations, which reveal the pattern of chaos exhibited from this type of electric drive system.
机译:可调节速度电动机驱动器是最具代表性的非线性系统中,可以表现出丰富的复杂动态行为品种。本研究介绍了采用数字速度调节器和滞后电流控制器的开关磁阻(SR)电机驱动中的混沌现象的研究。为了进行稳定性分析,已经导出和分析了SR驱动器的小信号离散时间模型,用于一系列控制参数。还证明并讨论了SR驱动系统的时域和频域分析和相位肖像的仿真结果。 SR驱动系统中混沌行为的两个影响因素进行了详细识别和检查:速度调节器的反馈延迟和旋转增量编码器的测量缺陷。为了验证,实验测试采用8/6极2.3千瓦SR驱动器。参考信号,相电流波形和相应的频谱的分叉图被记录和示出了正常和混沌操作,其揭示了从这种类型的电驱动系统所呈现的混沌模式。

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