A Novel Knapsack Algorithm-Based Energy Routing in a Microgrid

S. Nethravathi., Venkatakirthiga Murali
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Abstract

The increase in penetration of renewable energy sources has transformed the existing grid into a multisource and multipath energy network. For real-time energy transactions in the new microgrid, it is essential to realize an energy router interface, which is the core of the energy internet. The energy router controls the bidirectional energy and data flow and achieves end-to-end energy transmission efficiently. With this consideration, this article proposes a new energy routing algorithm based on the knapsack optimization technique. The proposed work aims to minimize the net energy from the main grid and efficiently utilize solar photovoltaic (SPV) energy through meticulous energy routing. The effectiveness of the proposed work is validated for case studies with various types of loads viz residential, non-residential, and electric vehicle loads. In this work, the best set of loads for optimal energy routing with minimum energy costs are determined. The results show a substantial reduction ranging from 16 to 28% in the peak energy drawn from the grid and at the same time, the cost of electricity to be paid to the utility is noticeably reduced in the range of 39% to 50% for various load types. Further, a sensitivity analysis is carried out to evaluate the effect of variations in input parameters such as PV output, and load demand on the cost of electricity.
一种基于背包算法的微电网能量路由
可再生能源渗透率的提高使现有电网转变为多源、多路径的能源网络。为了实现新型微电网的实时能源交易,实现能源路由器接口是能源互联网的核心。能量路由器控制双向能量流和数据流,实现端到端的高效能量传输。基于此,本文提出了一种新的基于背包优化技术的能量路由算法。提出的工作旨在通过细致的能量路由,最大限度地减少主电网的净能量,并有效地利用太阳能光伏(SPV)能量。建议工作的有效性在不同类型负荷的案例研究中得到验证,包括住宅、非住宅和电动汽车负荷。在这项工作中,以最小的能源成本确定了最优能源路由的最佳负载集。结果显示,从电网获取的峰值能量大幅减少了16%至28%,同时,对于各种负载类型,支付给公用事业公司的电力成本明显减少了39%至50%。此外,还进行了敏感性分析,以评估输入参数(如光伏输出)和负载需求对电力成本的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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