Intelligent Load Management System Development with Renewable Energy for Demand Side Management

Ward Ul Hijaz Paul, Anwar Shahzad Siddiqui, S. Kirmani
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引用次数: 2

Abstract

Electric smart grid reliability and stability could be increased by the application of demand response initiatives and renewable energy resources. This study provides a brand new demand side management paradigm for smart grids with renewable energy integration that is based on intelligent optimisation. The suggested system combines real-time demand response programmes from electric utility companies and makes use of fuzzy logic to forecast consumer energy consumption patterns. Using demand response programmes, a smart energy management controller adjusts consumer energy usage forecasts to produce an operation schedule. Using simulations employing real-world data, we assess the efficacy of the suggested intelligent demand side management framework. According to the findings, compared to the load management-free method, total electricity costs and carbon emissions have significantly decreased. A potential strategy for demand side management with the integration of renewable energy, the proposed intelligent hybrid optimisation method of load management achieves superior performance in regulating energy consumption, peak loads, and carbon emissions. By presenting a useful and effective paradigm for demand-side management with renewable energy integration, this research makes a contribution to the field of energy management.
面向需求侧管理的可再生能源智能负荷管理系统开发
智能电网的可靠性和稳定性可以通过应用需求响应计划和可再生能源来提高。本研究为基于智能优化的可再生能源集成智能电网提供了一种全新的需求侧管理范式。建议的系统结合了电力公司的实时需求响应程序,并利用模糊逻辑来预测消费者的能源消耗模式。智能能源管理控制器利用需求响应程序,调整消费者的能源使用预测,以产生运行时间表。通过使用真实世界数据的模拟,我们评估了建议的智能需求侧管理框架的有效性。根据研究结果,与无负荷管理方法相比,总电力成本和碳排放显著降低。本文提出的负荷管理智能混合优化方法在调节能源消耗、峰值负荷和碳排放方面具有优异的性能,是可再生能源集成的需求侧管理的潜在策略。本研究为可再生能源整合的需求侧管理提供了一个有用和有效的范例,为能源管理领域做出了贡献。
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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