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Design, modelling and simulation of three-phase front-end converter for unity power factor and reduced harmonics in line current

机译:三相前端转换器的设计,建模与仿真,以及线电流中减少谐波

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Low power factor and high harmonic content are the major drawbacks of conventional front-end rectifiers. Front-end converter is reported in this paper for three-phase system. A systematic design approach is presented for front-end converter and the modelling of the same is also described in detail in presented work. The control strategy for three phase front-end converter consists of inner current-loop and outer voltage-loop. The parameters for voltage control loop are derived from Unity Modulus (Magnitude Optimum) method. The power circuit of front-end converter with closed loop control is simulated in MATLAB for various steady state, transient and dynamic conditions. The proposed converter operates in forward power flow as well as in reverse power flow conditions. It is found that unity power factor is obtained for steady state as well as all dynamic and transient conditions. Irrespective of load conditions, constant dc output voltage is maintained demonstrating good voltage regulation and effectiveness of the proposed controller. It is also observed that %THD (Total Harmonic Distortion) ofthe supply current had drastically reduced in the reported system.
机译:低功率因数和高谐波含量是传统前端整流器的主要缺点。本文报告了前端转换器,用于三相系统。对于前端转换器提出了一种系统设计方法,并且还在呈现的工作中详细描述了相同的建模。三相前端转换器的控制策略由内部电流 - 环和外部电压环组成。电压控制回路的参数源自Unity模量(幅度最佳)方法。具有闭环控制的前端转换器的电源电路在MATLAB中模拟了各种稳态,瞬态和动态条件。所提出的转换器以正向电流以及反向功率流动条件运行。结果发现,为稳态和瞬态和瞬态条件获得unity功率因数。无论负载条件如何,维持恒定的直流输出电压,证明所提出的控制器的良好电压调节和有效性。还观察到,在报告的系统中,电源电流的%THD(总谐波变形)大幅减少。

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