Smart Demand Side Management for Techno-Economic Analysis of Microgrid System

Fouad Zaro
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Abstract

The world uses about 20 trillion kilowatt hours of electricity annually. Because of this great level of necessity, the use of green energy is growing and is becoming more and more significant in today's society. Demand-side management (DSM) programs are described as the procedures for planning, carrying out, and overseeing the tasks assigned by electric utilities to encourage customers to adjust their loads and energy usage in order to reduce power consumption and lower their electricity costs. It is utilized in smart grid systems to balance energy generation and consumption in a way that benefits both customers and utilities, to achieve the goals of utility energy policies, and to modify the quantity and quality of power and electricity used. Customers should have the capacity to control their energy consumption, especially during peak usage, to enable them to make better informed decisions. Demand response (DR) and energy efficiency techniques were employed by DSM to assist energy users in lowering their consumption. to increase resilience, economy, sustainability, and efficiency. The main objective of this study is to apply two demand side management strategies, examine power flow analysis on distribution networks utilizing IEEE rules both before and after PV cells are integrated, and assess the impact of doing so. The approaches' practicality is confirmed by comparing the simulation results from one technique with the other. For the end user, lowering their electricity cost is their primary goal.
微电网系统技术经济分析中的智能需求方管理
全世界每年的用电量约为 20 万亿千瓦时。由于这种巨大的需求量,绿色能源的使用量在不断增长,并在当今社会变得越来越重要。需求侧管理 (DSM) 计划是指电力公司为鼓励客户调整负荷和能源使用以减少电力消耗和降低电费而制定的计划、执行和监督任务的程序。智能电网系统利用它来平衡能源的生产和消费,使客户和电力公司都能从中受益,实现电力公司能源政策的目标,并改变电力和用电的数量和质量。客户应该有能力控制自己的能源消耗,尤其是在用电高峰期,以便做出更明智的决定。DSM 采用需求响应(DR)和能源效率技术来帮助能源用户降低消耗,以提高复原力、经济性、可持续性和效率。本研究的主要目的是应用两种需求侧管理策略,在光伏电池集成前后利用 IEEE 规则检查配电网络的功率流分析,并评估这样做的影响。通过比较一种技术和另一种技术的模拟结果,证实了这两种方法的实用性。对于终端用户来说,降低用电成本是他们的首要目标。
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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