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首页> 外文期刊>Industry Applications, IEEE Transactions on >FPA Optimized Selective Harmonic Elimination in Symmetric–Asymmetric Reduced Switch Cascaded Multilevel Inverter
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FPA Optimized Selective Harmonic Elimination in Symmetric–Asymmetric Reduced Switch Cascaded Multilevel Inverter

机译:FPA在对称非对称减压开关级联多级逆变器中优化选择性谐波消除

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摘要

Symmetrical and asymmetrical multilevel inverters (MLIs) have demonstrated its usefulness in a wide range of applications. This is accomplished due to the ongoing improvement by reducing the converter size and enhancement in the voltage quality. In this article, a generalized cascaded MLI structure is developed, which can operate in both symmetric and asymmetric modes. Comparative assessment in terms of the number of components and voltage stress warrants the design superiority. A new selective harmonic elimination (SHE) control using flower pollination algorithm (FPA) is investigated for the developed asymmetrical MLI. The salient features of the FPA such as less burdensome compilation and ability tos single-stage local and global search ascertain the elimination of the targeted harmonics through optimum angles computation. Moreover, the competence of the FPA is verified by comparing it with well-known SHE algorithms. Simulation analysis is carried out in MATLAB/Simulink environment, which validates the workability of the developed system. Experimental tests using fundamental and high switching frequency control techniques are further conducted under a dynamic environment to demonstrate the efficacy of the proposed methodology.
机译:对称和不对称的多级逆变器(MLIs)在广泛的应用中证明了其有用性。这是由于通过降低转换器尺寸和电压质量的增强而持续改进,因此实现了这一点。在本文中,开发了广泛的级联MLI结构,其可以以对称和不对称模式操作。在组件数量和电压应力的数量方面的比较评估认证设计优越性。研究了使用花授粉算法(FPA)的新选择性谐波消除(SHE)控制,用于开发的不对称MLI。 FPA的突出特征如较少的繁琐编译和能力TOS单级本地和全球搜索通过最佳角度计算确定消除目标谐波。此外,通过将其与众所周知的SHE算法进行比较来验证FPA的能力。仿真分析在MATLAB / SIMULINK环境中进行,验证了开发系统的可加工性。使用基本和高开关频率控制技术的实验测试在动态环境下进一步进行,以证明所提出的方法的功效。

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