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Modeling, Simulation and Performance Analysis of SEPIC Converter Using Hysteresis Current Control and PI Control Method

机译:SEPIC变换器的滞环电流控制和PI控制方法建模,仿真和性能分析

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This paper proposes an analytic study of SEPIC (Single-Ended Primary Inductor Converter) converter by employing Hysteresis Current Control and PI control technique to observe Output Voltage Stability, Total Harmonic Distortion (THD), Power Factor (PF) and Efficiency. SEPIC converter is extensively used in battery operated equipment for its significant feature of stepping up and stepping down voltage without changing polarity. The paper focuses on modeling SEPIC converter in CCM (continuous conduction mode) mode. State-Space Average technique is deployed to model the system mathematically and to implement the PI controller. Satisfactory performance is achieved by adopting both Hysteresis Current Control and PI control. Hysteresis current control method shows THD of 2.798% and efficiency of 90.07% whereas PI control method depicts THD of 17.17% and efficiency of 88%. Power Factor of 0.966 is achieved for PI controller while hysteresis current control method shows a power factor of 0.8208. PSIM software has been used for simulation purpose and the total investigation is analyzed for both methods.
机译:本文提出了一种利用滞环电流控制和PI控制技术观察输出电压稳定性,总谐波失真(THD),功率因数(PF)和效率的SEPIC(单端初级电感转换器)转换器的分析研究。 SEPIC转换器因其在不改变极性的情况下升压和降压的显着特征而广泛用于电池供电的设备。本文着重于在CCM(连续传导模式)模式下对SEPIC转换器建模。运用状态空间平均技术对系统进行数学建模并实现PI控制器。通过同时采用磁滞电流控制和PI控制,可以获得令人满意的性能。磁滞电流控制方法显示THD为2.798%,效率为90.07%,而PI控制方法显示THD为17.17%,效率为88%。 PI控制器的功率因数为0.966,而磁滞电流控制方法的功率因数为0.8208。 PSIM软件已用于仿真目的,并对两种方法的总体研究进行了分析。

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