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Model Predictive Control for Quasi-Z Source Inverters with Improved Thermal Performance

机译:具有改善的热性能的准Z源逆变器的模型预测控制

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The quasi-Z source inverter (qZSI) is one of the most promising power electronics converter topologies suitable for renewable energy applications. However, as a high-order system, its control is challenging. Recently, the model predictive control (MPC) with several advantages has been applied to the qZSI, where the switching behaviors (counts) are not yet optimized. This paper thus exposes a switching-count-reduction scheme for the MPC used in the qZSI. In the proposed scheme, an optimal switching vector is selected through a multi-parameter optimization, which enables reducing switching counts and thus lowering the thermal stress on the power devices. Simulations have been performed to validate the proposal, which is also benchmarked with several conventional MPCs and the PWM-based control.
机译:准Z源逆变器(qZSI)是适用于可再生能源应用的最有前途的电力电子转换器拓扑之一。但是,作为高阶系统,其控制具有挑战性。近来,具有若干优点的模型预测控制(MPC)已应用于qZSI,其中开关行为(计数)尚未优化。因此,本文揭示了qZSI中使用的MPC的减少转换计数的方案。在提出的方案中,通过多参数优化来选择最佳开关矢量,这可以减少开关次数,从而降低功率器件上的热应力。已经进行了仿真以验证该建议,该建议也已通过几种常规MPC和基于PWM的控制进行了基准测试。

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