可再生能源与需求侧混合管理配电系统可靠性分析

Maad Alowaifeer, M. Almuhaini
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引用次数: 7

摘要

可靠性一直是设计高效智能配电系统的关键问题。虽然基于可再生能源的dg可以在很大程度上提高可靠性,但由于其波动性,它们也可能损害可靠性。解决这一问题的智能配电系统的关键特征之一是需求侧管理(DSM)。DSM指的是电力公司或客户影响负荷行为的任何活动。DSM有许多有效的方面,如果得到有效处理,可以使公用事业和消费者都受益。本文将研究智能配电局部负荷系统的可靠性评估,包括DSM和风能与太阳能的整合。将讨论风能和太阳能对当地负荷可靠性的影响,并与基本情况可靠性进行比较。实际风速数据和太阳辐射用于模拟风能和太阳能输出,以包括季节变化。然后,将实施DSM概念来评估负载可靠性的增加。对电力需求侧的两个主要方面进行了研究和仿真,即负荷转移和削峰。蒙特卡罗模拟(MCS)将用于评估住宅、商业和工业负荷的可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reliability analysis of distribution systems with hybrid renewable energy and demand side management
Reliability is, and will always be, a crucial mater in designing efficient smart distribution systems. Although renewable based DGs can largely improve the figure of reliability, they may also harm it due to their fluctuating nature. One of the key characteristics of smart distribution systems that could resolve this issue is the demand side management (DSM). DSM refers to any activity done by the utility or the customer to influence load behavior. There are many effective aspects of the DSM that, when addressed efficiently, could benefit both utilities and consumers. In this paper, a reliability assessment of a smart distribution local load system will be studied, including the DSM and the integration of wind and solar energies. The impact of the wind and solar energies on the reliability of the local load will be addressed and compared to base-case reliability. Actual wind speed data and solar irradiation are used in modeling wind and solar power outputs to include seasonal variations. Then, the DSM concept will be implemented to assess the increase in load reliability. Two main DSM aspects are studied and simulated which are load shifting and peak clipping aspects. The Monte Carlo Simulation (MCS) will be utilized to evaluate the reliability for residential, commercial, and industrial loads.
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