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Triple-Voltage-Vector Model-Free Predictive Current Control for Four-Switch Three-Phase Inverter-Fed SPMSM Based on Discrete-Space-Vector Modulation

机译:基于离散空间矢量调制的四开关三相逆变器馈电SPMSM的三重电压 - 矢量无模型预测电流控制

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摘要

The four-switch three-phase (FSTP) inverters are known for their cost-effective advantages and minimal switching losses. However, such inverter topology’s progress is lagging due to control constraints and requirements, including voltage vector limitations and parameter perturbations. To overcome the issue, this paper proposes a triple-voltage-vector model-free predictive current control (TVV-MFPCC) for FSTP inverter-fed surface permanent magnet synchronous motor (SPMSM) drives. The proposed TVV-MFPCC uses the principle of discrete-space-vector modulation (DSVM) to increase the voltage vector selections. Three primary voltage vectors, either the same or distinct, are linearly combined to yield the synthesized voltage vectors. A redundant voltage vector reduction scheme is also introduced to lessen calculations by optimally reducing the candidate voltage vectors to sixteen equivalent hybrid switching modes. To improve prediction accuracy, the TVV-MFPCC performs three different current readings and three current difference calculations in each sampling period. Experiments using a TMS320F28379D microcontroller are conducted to compare the performance of the proposed TVV-MFPCC against conventional MFPCC (C-MFPCC) and validate the scheme.
机译:四开关三相(FSTP)逆变器以其成本效益的优点和最小的开关损耗而闻名。然而,由于控制约束和要求,包括电压矢量限制和参数扰动,因此这种逆变器拓扑的进步在滞后。为了克服该问题,本文提出了一种用于FSTP逆变器馈电表面永磁同步电动机(SPMSM)驱动器的三电压 - 载体模型无电流控制(TVV-MFPCC)。所提出的TVV-MFPCC使用离散空间矢量调制(DSVM)的原理来增加电压矢量选择。具有相同或不同的三个初级电压矢量是线性组合的,以产生合成的电压矢量。还引入冗余电压矢量降低方案以通过最佳地将候选电压矢量降低到16个等效的混合开关模式来减少计算。为了提高预测精度,TVV-MFPCC在每个采样周期中执行三个不同的电流读数和三个电流差计算。进行使用TMS320F28379D微控制器的实验以比较所提出的TVV-MFPCC对传统MFPCC(C-MFPCC)的性能并验证该方案。

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