Performance Analysis of High Gain Z-Source DC-DC Boost Converter

Rahul Kumar, R. Kannan, N. M. Nor
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Abstract

With the increasing trend in energy demand, researchers are moving towards renewable energy sources (RESs). However, RESs such as, fuel cell or photovoltaic panel offers low output voltage, and it is essential to step-up this low voltage before connecting to the grid or an inverter in two stage power conversion system. The Z-network converter could be used for DC-DC conversion to enhance renewable energy sources voltage. however, boost capabilities of conventional Z-source DC-DC converter (ZSC) are limited, and utilization of higher part count makes it bulky and expensive. In this paper, a new design of ZSC is presented that offers higher gain at smaller duty cycle. Besides, the performance of proposed converter is analyzed with parasitic parameters to validate the proposed design. Moreover, the PI controller is designed for the proposed converter to maintain the constant output voltage to the desired value. The values of proportional and integral (P and I) terms are calculated based on the PID tuning method and the transfer function of the proposed system is achieved using the system identification toolbox (SIT) in MATLAB. Moreover, The performance of proposed converter is compared with recently proposed Hybrid ZSC and conventional ZSC. The simulation studies for the proposed design, conventional ZSC, and Hybrid ZSC are carried out in Simulink software and the outcome verified the superiority of the proposed converter over conventional converters.
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高增益z源DC-DC升压变换器性能分析
随着能源需求的增加,研究人员正在转向可再生能源(RESs)。然而,诸如燃料电池或光伏板等RESs的输出电压较低,在两级功率转换系统中,在连接电网或逆变器之前,必须先升压这个低电压。z -网络转换器可用于DC-DC转换,以提高可再生能源的电压。然而,传统的z源DC-DC变换器(ZSC)的升压能力有限,并且使用较高的零件数量使其体积庞大且价格昂贵。本文提出了一种新的ZSC设计方案,在较小的占空比下提供更高的增益。此外,利用寄生参数对所提出的变换器进行了性能分析,以验证所提出的设计。此外,还设计了PI控制器,以使所提出的变换器的输出电压保持在期望的恒定值。基于PID整定方法计算了比例项和积分项(P和I)的值,并利用MATLAB中的系统识别工具箱(SIT)实现了所提出系统的传递函数。此外,还将该变换器的性能与最近提出的混合ZSC和传统ZSC进行了比较。在Simulink软件中对所提设计、常规ZSC和混合ZSC进行了仿真研究,结果验证了所提变换器相对于传统变换器的优越性。
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