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Minimizing the energy cost for microgrids integrated with renewable energy resources and conventional generation using controlled battery energy storage

机译:使用可控电池储能,将与可再生能源和常规发电集成的微电网的能源成本降至最低

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This paper presents a methodology to minimize the total cost of buying power from different energy producers including renewable energy generations particularly within the context of a microgrid. The proposed idea is primarily based on the controlled operation of a battery energy storage system (BESS) in the presence of practical system constraints coupled with our proposed cost optimization algorithm. The complex optimization problem with constraints has been solved using the well-known concept of dynamic programming. The methodology has been assessed using actual power and price data from six different power generation sites and cost reduction has been calculated for a number of BESSs by varying their energy and power capacities. Twofold benefits of the proposed methodology lie in minimizing the total cost along with the constraint-based efficient operation of the BESS. Simulation results depict that the given power demand at a particular region can be fulfilled properly at all times using a BESS and multiple power generation. (C) 2016 Published by Elsevier Ltd.
机译:本文提出了一种方法,可最大程度地减少从不同能源生产商(包括可再生能源发电)购买电力的总成本,特别是在微电网的情况下。所提出的想法主要基于电池能量存储系统(BESS)在实际系统约束条件下的受控运行以及我们提出的成本优化算法。使用众所周知的动态编程概念已经解决了带有约束的复杂优化问题。该方法已使用来自六个不同发电站的实际电力和价格数据进行了评估,并且已通过更改其能源和发电能力为许多BESS计算了成本降低。所提出的方法的双重好处在于将总成本以及基于约束的BESS高效运行减到最少。仿真结果表明,使用BESS和多路发电可以始终满足特定区域的给定功率需求。 (C)2016由Elsevier Ltd.出版

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