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Model Predictive Direct Current Control

机译:模型预测直流控制

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摘要

This paper presents a model predictive current controller and its application to ac electrical drives. In a stationary reference frame, the proposed control scheme keeps the alpha and beta currents within given hysteresis bounds while minimizing the switching frequency of the inverter. Based on a internal model of the drive, the controller predicts the drive's future behavior for each switching sequence, extrapolates the output trajectories and selects the inverter switch position (voltage vector) that minimizes the switching frequency and keeps the predicted current trajectories within the hysteresis bounds. The scheme is applicable to a large class of (three-phase) ac electrical machines driven by inverters and it is also effective under all operating conditions, including transients and zero stator frequency operation. Specifically, the very fast transient response time of the classic hysteresis control scheme is inherited.
机译:本文介绍了模型预测电流控制器及其在AC电气驱动器的应用。在静止参考帧中,所提出的控制方案在给定的滞后范围内保持α和β电流,同时最小化逆变器的开关频率。基于驱动器的内部模型,控制器预测每个开关序列的驱动器的未来行为,推断输出轨迹并选择最小化开关频率的逆变器开关位置(电压向量),并保持滞后界限内的预测电流轨迹。该方案适用于由逆变器驱动的大类(三相)交流电机,并且在所有操作条件下也有效,包括瞬态和零定子频率操作。具体地,遗传经典滞后控制方案的非常快速的瞬态响应时间。

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