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Control challenges and mitigation techniques for sensor errors in modular motor drives with weakly-coupled distributed control architectures

机译:用弱耦合分布式控制体系结构控制模块化电机驱动器中传感器误差的挑战和缓解技术

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Distributed controls have promising applications that include both highly fault-tolerant motor drives and modular drivesfor large machines. Communications speed limitations of these drive systems require each modular sub-drive to operate nearly independently over short timescales. As a result, sensor errors and system unbalances that cause only minor performance degradation in conventional drive systems can lead to complete loss of function in modular drives with distributed control architectures. This paper investigates alternative techniques such as calibration function compensation that can be applied to mitigate these challenges, making it possible for modular drives with weakly-coupled distributed controllers to deliver high-performance motor control. Simulation results are used to evaluate theeffectiveness of the proposed control techniques for addressing the special challenges posed by these distributed control architectures.
机译:分布式控制具有有前途的应用,包括高容错电机驱动器和大型机器的模块化驱动。这些驱动系统的通信速度限制要求每个模块化子驱动器在短时间间隙上几乎独立地操作。因此,在传统的驱动系统中仅导致小型性能下降的传感器错误和系统不平衡可能导致模块化驱动器中的功能损失,具有分布式控制架构。本文调查了校准功能补偿等替代技术,可以应用于减轻这些挑战,使得模块化驱动器可以采用弱耦合的分布式控制器来提供高性能电机控制。仿真结果用于评估所提出的控制技术来解决这些分布式控制架构所带来的特殊挑战的效力。

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