交流微电网对称故障保护技术性能分析

Mukul Singh, O. Singh, M. Ansari
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引用次数: 0

摘要

该研究论文提出了一种微电网的实现方法,它假设在一个可控单元系统下运行的许多负载和源向局部区域提供电力。结合风能、太阳能、柴油发电机组和居民负荷模型建立微电网模型,分析可再生能源接入微电网在正常和故障状态下对有功、无功、电流、电压等各量的影响,如图所示。能源生产所依赖的各种因素是光伏农场的规模和效率以及风力农场的风力速度。负载是住宅的,在给定的功率因数下具有消耗概况。太阳强度最高的时候是在正午。该模型的开发旨在为负载提供可持续的能源供应,而不影响自然和损害未来一代的需求。在我们的研究工作中,我们采用了高速跳闸保护技术对对称故障进行保护。
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Performance analysis of protection technique for AC microgrid from symmetrical faults
The research paper is presenting an implementation of Microgrid which assumes lots of loads & sources operated under a one controllable unit system providing power to the localized area. A microgrid model is built integrating wind energy, solar energy, diesel generator and residential load model and analyzing the impact of Renewable Energy Sources with microgrid on various quantities like active power, reactive power, current & voltage as shown and presented in the research paper during normal and fault condition. The various factors on which production of energy depends are PV farm’s size & it’s efficiency and speed of wind for Wind farm. The load is re sidential which has a consumption profile at given power factor. Highest solar intensity is during mid-day. The development of model is aimed to provide a sustainable energy supply to load without affecting the nature and compromising the needs of the future generation. In our research work we have used high-speed tripping protection technique for symmetrical faults.
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