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Model Predictive Control of Load-Commutated Inverter-Fed Synchronous Machines

机译:负载换向逆变器同步电机的模型预测控制

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This paper considers torque regulation of a variable-speed synchronous machine fed by a line-commutated rectifier and a load-commutated inverter. The proposed control approach is model-predictive control where both the rectifier and inverter firing angles are considered as control inputs. Conventional controllers assign different tasks to the rectifier and inverter firing angle. In contrast, the model-predictive controller coordinates the firing angles and this improves the dynamic performance and disturbance rejection. In particular, the proposed controller handles line side under voltage conditions better than a conventional PI controller. The nonlinear model-predictive torque controller has been implemented on an embedded system and applied in an experimental test bed. The experiments confirm that the controller is able to successfully ride through line side under voltage conditions.
机译:本文考虑了由换向整流器和负载换向逆变器供电的变速同步电机的转矩调节。所提出的控制方法是模型预测控制,其中整流器和逆变器的点火角都被视为控制输入。常规控制器将不同的任务分配给整流器和逆变器点火角。相比之下,模型预测控制器可以协调点火角,从而改善了动态性能和干扰抑制能力。特别地,所提出的控制器在电压条件下处理线路侧要比常规PI控制器更好。非线性模型预测扭矩控制器已在嵌入式系统上实现,并已应用于实验测试台。实验证实,该控制器能够在电压条件下成功穿越线路侧。

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