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Impact of Distributed Generations With Energy Storage Devices on the Electric Grid

机译:带有储能装置的分布式发电对电网的影响

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The commonly used distributed generations (DG) technologies include wind generators, photovoltaics, and biomass generators with their sizes varying between several kW to a few MW. Energy storage devices are generally used to smooth variations in DG''s MW output due to inherent unpredictability and to minimize exchange of power from grid. Connecting the storage and DGs to the grid have both technical and economic impacts. This paper aims at analyzing the technical and economic impacts of distributed generators along with energy storage devices on the distribution system. The technical analysis includes analyzing the transient stability of a system with DGs and energy storage devices, such as a battery and ultracapacitor. The DGs are represented by small synchronous and induction generators. Different types and locations of faults and different penetration levels of the DGs are considered in the analysis. Energy storage devices are found to have a positive impact on transient stability. For economic analysis, the costs of the system with different DG technologies and energy storage devices are compared using the software tool “hybrid optimization model for electric renewables (HOMER).” Finally, the analysis for cost versus benefits of DGs and energy storage devices is compared briefly.
机译:常用的分布式发电(DG)技术包括风力发电机,光伏发电和生物质发电机,其大小在几千瓦到几兆瓦之间不等。由于固有的不可预测性,通常使用能量存储设备来平滑DG MW输出的变化,并最大程度地减少来自电网的电力交换。将存储和DG连接到电网会产生技术和经济影响。本文旨在分析分布式发电机以及储能设备对配电系统的技术和经济影响。技术分析包括分析具有DG和电池和超级电容器等储能设备的系统的暂态稳定性。 DG以小型同步发电机和感应发电机为代表。分析中考虑了不同类型的断层类型和位置以及不同的DG渗透水平。发现储能装置对瞬态稳定性有积极影响。为了进行经济分析,使用软件工具“电力可再生能源混合优化模型(HOMER)”比较具有不同DG技术和能量存储设备的系统成本。最后,简要比较了DG和能量存储设备的成本与收益分析。

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