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Model Predictive Power Control With Dual Vectors for Three-Level Inverter

机译:三电平逆变器的具有双矢量的模型预测功率控制

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Model predictive power control (MPPC) has been receiving plenty of concern due to its fast dynamic response. However, the varying switching frequency makes the harmonics of output voltage vary over a wide scope, which adds difficulty in designing alternating current (ac) filter. Here, on the basis of the active and reactive power derivatives of each vector and the effect of switching states on neutral point (NP) voltage, we present an MPPC with dual vectors (MPPCDV) to control the three-level (3L) inverter. In this algorithm, a new switching sequence is provided to balance the NP voltage of 3L inverter, and two cost functions are derived to reduce the number of cycle computation. According to the first cost functions, the sector containing optimal switching sequence (OSS) is obtained. The second cost function is assigned to achieve the multiobjective optimization. Simulations and experiments are built to test the effectiveness of MPPCDV. When the 3L inverter adopts the MPPCDV, the majority of the harmonic frequencies in the output voltage is concentrated near the sample frequency, the steady-state performances are improved remarkably, and the dynamic performance is as fast as the conventional MPPC.
机译:模型预测功率控制(MPPC)由于其快速的动态响应而备受关注。然而,变化的开关频率使输出电压的谐波在很宽的范围内变化,这增加了设计交流(ac)滤波器的难度。在此,根据每个矢量的有功和无功功率导数以及开关状态对中性点(NP)电压的影响,我们提出了一种具有双矢量(MPPCDV)的MPPC,以控制三电平(3L)逆变器。在该算法中,提供了一个新的开关序列来平衡3L逆变器的NP电压,并推导了两个成本函数以减少周期计算的次数。根据第一成本函数,获得包含最佳切换序列(OSS)的扇区。分配第二个成本函数以实现多目标优化。建立仿真和实验来测试MPPCDV的有效性。当3L逆变器采用MPPCDV时,输出电压中的大多数谐波频率都集中在采样频率附近,稳态性能显着提高,动态性能与常规MPPC一样快。

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