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Predictive Fast DSP-Based Current Controller for Thyristor Converters

机译:基于可预测的基于DSP的快速DSP电流控制器

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摘要

The predictive current controller presented in this paper provides fast current control for thyristor converters without relying on the accurate load model. Unlike load-model-based predictive methods of current control, this method does not use load parameters in the calculations of the firing angle. Instead, thyristors are fired when the sum of the measured instantaneous load current and the load current rise, which is predicted from the voltage–time area on the dc-side inductor, is equal to the current reference. This way, accurate current control is achieved just by knowing the dc-side inductor parameters and by measuring line voltages, the load current, and the load voltage. The proposed predictive current controller exhibits a practically negligible steady-state error, the fastest possible transient response, and the fastest possible and smooth transitions between continuous- and discontinuous-current conduction modes, for both the rectification and inversion modes of operation of the converter. It shows great stability and robustness. The controller also compensates for sudden changes in both line and load voltages, as well as for voltage drops due to the commutation process. Based on the proposed algorithm, the computer simulation model and the laboratory prototype of the system were developed. Both the simulation and experimental results demonstrated an excellent dynamic performance of the proposed controller.
机译:本文介绍的预测电流控制器无需依赖精确的负载模型即可为晶闸管转换器提供快速电流控制。与基于负载模型的电流控制预测方法不同,此方法在触发角的计算中不使用负载参数。取而代之的是,当测得的瞬时负载电流和负载电流上升之和(由直流侧电感器的电压-时间区域预测)等于电流基准时,晶闸管将被触发。这样,仅通过了解直流侧电感器参数并测量线路电压,负载电流和负载电压即可实现精确的电流控制。对于转换器的整流和反转模式,所提出的预测电流控制器表现出几乎可以忽略的稳态误差,最快的可能瞬态响应以及连续和不连续电流传导模式之间最快和尽可能平滑的过渡。它显示出极大的稳定性和鲁棒性。控制器还可以补偿线路电压和负载电压的突然变化,以及由于换向过程而引起的压降。基于所提出的算法,开发了系统的计算机仿真模型和实验室原型。仿真和实验结果均证明了所提出控制器的出色动态性能。

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