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Harmonic analysis and FPGA implementation of SHE controlled three phase CHB 11-level inverter in MV drives using deterministic and stochastic optimization techniques

机译:使用确定性和随机优化技术的中频变频器中SHE控制的三相CHB 11级逆变器的谐波分析和FPGA实现

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摘要

With the advancements in semiconductor technology, high power medium voltage (MV) Drives are extensively used in numerous industrial applications. Challenging technical requirements of MV Drives is to control multilevel inverter (MLI) with less Total harmonic distortion (%THD) which satisfies IEEE standard 519-1992 harmonic guidelines and less switching losses. Among all modulation control strategies for MLI, Selective harmonic elimination (SHE) technique is one of the traditionally preferred modulation control technique at fundamental switching frequency with better harmonic profile. On the other hand, the equations which are formed by SHE technique are highly non-linear in nature, may exist multiple, single or even no solution at particular modulation index (MI). However, in some MV Drive applications, it is required to operate over a range of MI. Providing analytical solutions for SHE equations during the whole range of MI from 0 to 1, has been a challenging task for researchers. In this paper, an attempt is made to solve SHE equations by using deterministic and stochastic optimization methods and comparative harmonic analysis has been carried out. An effective algorithm which minimizes %THD with less computational effort among all optimization algorithms has been presented. To validate the effectiveness of proposed MPSO technique, an experiment is carried out on a low power proto type of three phase CHB 11- level Inverter using FPGA based Xilinx’s Spartan -3A DSP Controller. The experimental results proved that MPSO technique has successfully solved SHE equations over all range of MI from 0 to 1, the %THD obtained over major range of MI also satisfies IEEE 519-1992 harmonic guidelines too.
机译:随着半导体技术的进步,高功率中压(MV)驱动器已广泛用于众多工业应用中。 MV驱动器具有挑战性的技术要求是控制总谐波失真(%THD)少,满足IEEE标准519-1992谐波准则且开关损耗较小的多电平逆变器(MLI)。在用于MLI的所有调制控制策略中,选择性谐波消除(SHE)技术是传统上在基本开关频率下具有较好谐波分布的首选调制控制技术之一。另一方面,通过SHE技术形成的方程本质上是高度非线性的,在特定的调制指数(MI)下可以存在多个,单个或什至没有解。但是,在某些MV驱动器应用中,需要在一定范围的MI上运行。在MI从0到1的整个范围内提供SHE方程的解析解对研究人员而言是一项艰巨的任务。本文尝试使用确定性和随机优化方法求解SHE方程,并进行了比较谐波分析。在所有优化算法中,提出了一种有效的算法,可以用较少的计算量来最小化%THD。为了验证所提出的MPSO技术的有效性,使用基于FPGA的Xilinx的Spartan -3A DSP控制器对低功耗原型类型的三相CHB 11级逆变器进行了实验。实验结果证明,MPSO技术已经成功解决了从0到1的所有MI范围内的SHE方程,在MI的主要范围内获得的%THD也满足IEEE 519-1992谐波准则。

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