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A Modulated Model Predictive Current Controller for Four-Switch Three-Phase Inverter-Fed SynRMs

机译:用于四个开关三相逆变器馈电Synrms的调制模型预测电流控制器

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This paper proposes a modulated model predictive current controller (MMPCC) for four-switch three-phase inverter-fed synchronous reluctance motors (SynRMs). The modulation is introduced via a linear combination of predefined voltage vectors to boost the selections from four to eight. Each synthesized voltage vector contains two vectors with adjustable duty ratios. Both duty ratios and synthesized voltage vectors can be optimized via a new design of cost function. Current behaviors at varied command speeds in the steady-state condition are examined using the TMS320F28379D microcontroller. Compared to the existing method, the proposed MMPCC reduces both current ripple and current error by approximately 50%.
机译:本文提出了一种用于四开关三相逆变器进料同步磁阻电动机(SYNRM)的调制模型预测电流控制器(MMPCC)。通过预定义电压向量的线性组合引入调制,以将选择从四到八个提升。每个合成的电压矢量包含两个具有可调占空比的载体。可以通过成本函数的新设计进行占空比和合成电压矢量。使用TMS320F28379D微控制器检查稳态条件下的各种命令速度的当前行为。与现有方法相比,所提出的MMPCC将电流纹波和电流误差减少约50%。

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