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Harmonic Comparison of Three Phase Direct Matrix Converter for Reactive Load with Balance and Unbalance Supply Voltage

机译:具有平衡和不平衡电源电压的无功负载的三相直接矩阵变换器的谐波比较

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This paper presents harmonic analysis of matrix converter using different control technique for balance and Unbalance three phase input voltage of reactive load. Since Matrix converter is subject to affected either by external disturbance or by load conditions. Due to this the supply voltage becomes unbalance. This cause improper switching of matrix converter results higher harmonics. This harmonics are harmful to the quality of the output power. The switching sequence of the matrix converter is controlled by vector control method. Different control technique is proposed in this paper to get optimized result with reduced harmonic for unbalanced and balance input voltage using PID, Fractional Order PID (PIλDδ) controller (FOPID), Particle Swarm Optimization (PSO)FOPID. PID control technique result are compared with other optimization technique for best optimum output. The FOPID controller is used to compensates the current and also improvise the quality of energy by reducing the harmonic content. The simulations and hardware results will be presented and interpreted. The effectivess of the proposed system is proven with the results is shown in this paper which produce a better steady state lesser transient rather than the conventional PID method.
机译:本文介绍了采用不同控制技术对无功负载的三相输入电压进行平衡和不平衡控制的矩阵变换器的谐波分析。由于矩阵转换器会受到外部干扰或负载条件的影响。因此,电源电压变得不平衡。这会导致矩阵转换器的不正确切换导致更高的谐波。该谐波对输出功率的质量有害。矩阵转换器的开关顺序由矢量控制方法控制。本文提出了不同的控制技术,以使用PID,分数阶PID(PI λDδ)控制器(FOPID),粒子群优化(PSO)来针对不平衡和平衡输入电压获得降低谐波的优化结果。 FOPID。将PID控制技术的结果与其他优化技术进行比较,以获得最佳的最佳输出。 FOPID控制器用于补偿电流,并通过减少谐波含量来改善能量质量。仿真和硬件结果将被展示和解释。本文所显示的结果证明了所提出系统的有效性,与传统的PID方法相比,该方法产生的稳态更好,瞬变更少。

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