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Vector selection approach-based hexagonal hysteresis space vector current controller for a three phase diode clamped MLI with capacitor voltage balancing

机译:基于矢量选择方法的六边形磁滞空间矢量电流控制器,用于带有电容器电压平衡的三相二极管钳位的MLI

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摘要

The purpose of this study is to provide a broad idea about current control scheme and equilibrating voltages in DC-link capacitors of the neutral-point clamped multilevel inverter (NPC-MLI), using an innovative hexagonal space vector hysteresis current control (SVHCC) scheme. The main ideology is to force the literal current vector to reach the reference current vector through an appropriate voltage vector selection sequence. This proposed scheme defines two hexagonal hysteresis bands encompassing the error vector, as a first step. With respect to the error vector location, the selection of the adjacent vector is acted to minimise the error vector. In addition to the error vector selection, the capacitor voltage is also equilibrated by controlling the degree of freedom available in selecting the switching vectors. The SVHCC scheme is intelligent in performing modulation depth dependent selection of switching vectors between the groups namely closest three vector and preferred three vector (PTV). This scheme balances the DC-link capacitors’ voltages within a tolerance limit for any value of modulation index. The proposed scheme is asserted through MATLAB/Simulink software. The superiority of the proposed technique is validated through the 2 kW NPC-MLI supported with SPARTAN III 3AN –XC3S400 field programmable gate array.
机译:这项研究的目的是使用创新的六角形空间矢量磁滞电流控制(SVHCC)方案,为中性点钳位多电平逆变器(NPC-MLI)的直流母线电容器中的电流控制方案和平衡电压提供一个广泛的思路。主要思想是通过适当的电压矢量选择序列强制文字电流矢量达到参考电流矢量。第一步,该方案定义了两个包含误差矢量的六角形磁滞带。关于误差矢量的位置,选择相邻的矢量以使误差矢量最小。除了选择误差矢量之外,还通过控制选择开关矢量时可用的自由度来平衡电容器电压。 SVHCC方案在执行与调制深度相关的组之间切换矢量的选择方面非常智能,这些组即最接近的三个矢量和首选的三个矢量(PTV)。该方案可在任何调制指数值的容差范围内平衡直流母线电容器的电压。通过MATLAB / Simulink软件对提出的方案进行了断言。通过SPARTAN III 3AN –XC3S400现场可编程门阵列支持的2 kW NPC-MLI验证了所提出技术的优越性。

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