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首页> 外文期刊>Journal of Electrical Engineering >Small-Signal Analysis of Autonomous Hybrid Distributed Generation Systems in Presence of Ultracapacitor and Tie-Line Operation
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Small-Signal Analysis of Autonomous Hybrid Distributed Generation Systems in Presence of Ultracapacitor and Tie-Line Operation

机译:超级电容器和联络线运行下自主混合分布式发电系统的小信号分析

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Small-Signal Analysis of Autonomous Hybrid Distributed Generation Systems in Presence of Ultracapacitor and Tie-Line Operation This paper presents small-signal analysis of isolated as well as interconnected autonomous hybrid distributed generation system for sudden variation in load demand, wind speed and solar radiation. The hybrid systems comprise of different renewable energy resources such as wind, photovoltaic (PV) fuel cell (FC) and diesel engine generator (DEG) along with the energy storage devices such as flywheel energy storage system (FESS) and battery energy storage system (BESS). Further ultracapacitors (UC) as an alternative energy storage element and interconnection of hybrid systems through tie-line is incorporated into the system for improved performance. A comparative assessment of deviation of frequency profile for different hybrid systems in the presence of different storage system combinations is carried out graphically as well as in terms of the performance index (PI), ie integral square error (ISE). Both qualitative and quantitative analysis reflects the improvements of the deviation in frequency profiles in the presence of the ultracapacitors (UC) as compared to other energy storage elements.
机译:具有超级电容器和联络线运行的自治混合​​分布式发电系统的小信号分析本文介绍了隔离的以及互连的自治混合​​分布式发电系统的小信号分析,用于分析负荷需求,风速和太阳辐射的突然变化。混合动力系统包括不同的可再生能源,例如风能,光伏(PV)燃料电池(FC)和柴油发动机发电机(DEG)以及能量存储设备,例如飞轮能量存储系统(FESS)和电池能量存储系统( BESS)。进一步的超级电容器(UC)作为可替代的储能元件,并通过联络线将混合动力系统互连在一起,从而提高了性能。在存在不同存储系统组合的情况下,以图形方式以及根据性能指标(PI),即积分平方误差(ISE),对不同混合系统的频率曲线偏差进行了比较评估。与其他储能元件相比,定性和定量分析均反映了超级电容器(UC)存在时频率曲线偏差的改善。

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