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A Study Using a Monte Carlo Method of the Optimal Configuration of a Distribution Network in Terms of Power Loss Sensing

机译:基于蒙特卡洛方法的配电网最优配置的功率损耗传感研究

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摘要

Recently there have been many studies of power systems with a focus on “New and Renewable Energy” as part of “New Growth Engine Industry” promoted by the Korean government. “New And Renewable Energy”—especially focused on wind energy, solar energy and fuel cells that will replace conventional fossil fuels—is a part of the Power-IT Sector which is the basis of the SmartGrid. A SmartGrid is a form of highly-efficient intelligent electricity network that allows interactivity (two-way communications) between suppliers and consumers by utilizing information technology in electricity production, transmission, distribution and consumption. The New and Renewable Energy Program has been driven with a goal to develop and spread through intensive studies, by public or private institutions, new and renewable energy which, unlike conventional systems, have been operated through connections with various kinds of distributed power generation systems. Considerable research on smart grids has been pursued in the United States and Europe. In the United States, a variety of research activities on the smart power grid have been conducted within EPRI’s IntelliGrid research program. The European Union (EU), which represents Europe’s Smart Grid policy, has focused on an expansion of distributed generation (decentralized generation) and power trade between countries with improved environmental protection. Thus, there is current emphasis on a need for studies that assesses the economic efficiency of such distributed generation systems. In this paper, based on the cost of distributed power generation capacity, calculations of the best profits obtainable were made by a Monte Carlo simulation. Monte Carlo simulations that rely on repeated random sampling to compute their results take into account the cost of electricity production, daily loads and the cost of sales and generate a result faster than mathematical computations. In addition, we have suggested the optimal design, which considers the distribution loss associated with power distribution systems focus on sensing aspect and distributed power generation.
机译:最近,韩国政府推动了许多有关电力系统的研究,重点是“新能源和可再生能源”,并将其作为“新增长引擎产业”的一部分。 “新能源和可再生能源”(尤其专注于风能,太阳能和燃料电池,将取代传统的化石燃料)是Power-IT部门的一部分,而Power-IT部门是SmartGrid的基础。 SmartGrid是高效智能电网的一种形式,它通过在电力生产,传输,分配和消费中利用信息技术,允许供应商和消费者之间进行交互(双向通信)。新的和可再生能源计划的目标是通过公共或私人机构的深入研究来发展和传播新的和可再生能源,与传统系统不同,新能源和可再生能源是通过与各种分布式发电系统的连接来运行的。在美国和欧洲已经进行了有关智能电网的大量研究。在美国,EPRI的IntelliGrid研究计划已开展了有关智能电网的各种研究活动。代表欧洲智能电网政策的欧盟(EU)一直致力于扩大分布式发电(分散发电)和改善环境保护的国家之间的电力贸易。因此,当前强调需要评估这种分布式发电系统的经济效率的研究。在本文中,基于分布式发电能力的成本,通过蒙特卡洛模拟对可获得的最佳利润进行了计算。依靠重复随机抽样来计算结果的蒙特卡洛模拟考虑了发电成本,每日负荷和销售成本,并且比数学计算更快地生成结果。另外,我们提出了最佳设计,该设计考虑了与配电系统相关的配电损耗,重点放在传感方面和分布式发电上。

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