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Hybrid optimization algorithm applied for selective harmonic elimination in multilevel inverter with reduced switch topology

机译:具有减少开关拓扑的多级逆变器中选择性谐波消除的混合优化算法

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This paper presents, ant colony optimization based hybrid algorithm for selective harmonic elimination in single phase seven level multilevel inverter with reduced switches. For high power and high voltage applications, multilevel structure with selective harmonic elimination (SHE) modulation scheme is used. The output voltage of multilevel inverter contains fundamental component along with harmonics. SHE technique aims to solve non-linear transcendental equations maintaining the fundamental harmonic component to its desired value and to eliminate lower order odd harmonics. Many optimization algorithms have been implemented to solve this problem. But these algorithms are complicated and time consuming. The Newton-Raphson algorithm is also very convergent for solving these non-linear equations. The main disadvantage of this method is, it requires strong initial guess. To overcome these drawbacks, hybrid optimization algorithm is used in this paper. This algorithm is performed in two stages, during first stage ant colony optimization has been run and in second stage the solutions obtained from ACO is used as a initial guess for Newton-Raphson algorithm which confirms the exact converged solution. Thus the drawback of Newton's method i.e. requirement of good initial guess is overcomed by proposed hybrid algorithm. The MATLAB/SlMULINK software is used for comprehensive simulation of seven-level inverter. Experimental results validate the simulated results.
机译:本文介绍了基于蚁群优化的混合算法,用于单相七级多电平逆变器中的选择性谐波消除。对于高功率和高压应用,使用具有选择性谐波消除(SHE)调制方案的多级结构。多级逆变器的输出电压包含基本组件以及谐波。她的技术旨在解决将基本谐波分量保持在其所需值的非线性超轮廓方程,并消除低阶奇数谐波。已经实施了许多优化算法以解决这个问题。但这些算法是复杂且耗时的。牛顿-Raphson算法也非常会聚,用于求解这些非线性方程。这种方法的主要缺点是,需要强烈的初步猜测。为了克服这些缺点,本文使用了混合优化算法。该算法以两个阶段执行,在第一阶段蚂蚁核心优化期间已经运行并且在第二阶段中,从ACO获得的溶液用作牛顿-Raphson算法的初始猜测,该算法确认了确切的融合解决方案。因此,牛顿方法的缺点是克服了良好的初步猜测的要求被提出的混合算法克服。 MATLAB / SLMULINK软件用于综合模拟七级逆变器。实验结果验证了模拟结果。

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