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A novel method to assess distribution system reliability considering smart solar cell

机译:考虑智能太阳能电池的分配系统可靠性的一种新方法

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One of the most important issues in the smart grid is to quantitatively assess the impacts of distributed energy resources (DER) on the distribution system reliability. Solar cells (SCs) as developing DERs are normally placed close to the load centers. In this paper, a new algorithm is developed to evaluate distribution system reliability, considering SCs in the vicinity of the end-users. The probabilistic nature of the demand and SC power output are investigated to solve challenges of integrating these intermittent resources with the distribution system. In a smart home, to handle the variation of SC generation, solar load controller (SLC) is utilized to match load and generation of SCs during the islanding mode. Harmonizing load and generation by SLC may cause continual fluctuation in the on/off mode of appliances. In this paper, a structure is proposed to supply the critical load throughout periods in which SC cannot supply the entire associated demand. Simulation results reveal that the proposed method outperforms the conventional one, particularly from the accuracy points of view, while keeping the simplicity and elegance in a reasonable range. Numerical simulations are investigated to verify the miscellaneous aspects of the proposed approach.
机译:智能电网中最重要的问题之一是定量评估分布式能源(DER)对分销系统可靠性的影响。作为显影剂的太阳能电池(SCS)通常靠近负载中心。在本文中,开发了一种新的算法来评估分配系统可靠性,考虑到最终用户附近的SC。调查了需求和SC功率输出的概率性质,解决了将这些间歇性资源与分配系统集成的挑战。在一个智能家中,为了处理SC生成的变化,太阳能载荷控制器(SLC)用于匹配岛屿模式期间SCS的负载和产生。协调负载和SLC的产生可能导致设备的开/关模式不断波动。在本文中,提出了一种结构来提供整个周期的临界负荷,其中SC无法提供整个相关的需求。仿真结果表明,所提出的方法优于传统的方法,特别是从精度的观点来看,同时在合理的范围内保持简单和优雅。研究了数值模拟,以验证所提出的方法的杂项方面。

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