Micro Grid Operation to Interface of Distributed Generation

M. K. Kumar
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Abstract

Distributed generations (DG) are the ultra-modern mobile power resources which are located near the customer and generally used for small range of power requirements. The advantages of using embedded or local generation reserves are plenty which ensures power for all. The load along with local generation reserves and other auxillary units together is called microgrid. The energy management system involves in the proper balance with the parallel network which involves both local generation units along the traditional methods of power generation. The entire concept of local generation eliminates frequent conversion of AC to DC between source and load. The power from renewable reserves is utilized for local load requirements. The novel power electronic technology-based converters are designed and used for interfaced the non-conventional energy centers with the gird for effective and dynamic load management. In gird coupled operation, the hybrid AC/DC microgrid is presented in this paper and extensive analysis is carried out with respect to feasibility of the proposed system in real-time. The renewable sources are solar power module, wind energy conversion system and battery for storage purpose. The simulation platform is MATLAB/ SIMULINK environment and the results confirm the effectiveness of the proposed system.
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微网运行到分布式发电接口
分布式代(DG)是一种超现代的移动电源资源,它位于用户附近,通常用于小范围的电力需求。使用嵌入式或本地发电储备的优势是充分的,这确保了所有人的电力供应。负荷连同本地发电储备和其他辅助装置一起称为微电网。能源管理系统涉及到与既包括本地发电机组又包括传统发电方式的并网进行适当的平衡。局部发电的整个概念消除了源和负载之间交流到直流的频繁转换。来自可再生能源储备的电力被用于满足当地的负荷需求。设计并应用了基于电力电子技术的新型变流器,实现了非传统能源中心与电网的有效动态负荷管理。在并网运行中,本文提出了交直流混合微电网,并对该系统的可行性进行了实时分析。可再生能源是太阳能发电模块、风能转换系统和用于存储的电池。仿真平台为MATLAB/ SIMULINK环境,仿真结果验证了系统的有效性。
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