Optimal power flow for micro-grids

B. Hanna, A. El-Shahat
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引用次数: 3

Abstract

Micro-grids are bits of a power circulation organize that supply various loads, and incorporate distributed generation (DG) like: wind and solar generators. Optimal power flow (OPF) is considered with the goal of limiting either the power circulation misfortunes, or, the cost of influence drawn from the substation and provided by (DG) units. This paper analyzes two systems: a system with no transmission constraints and with transmission constraints. This is known as an ideal power market which means that generators supply energy and load removes energy. No transmission constraints means there is a single marginal cost. This paper analyzes splitting cost at a bus into energy, losses and congestion. The objective of an optimal power flow is to determine the best way to instantaneously operate a power system. The optimal way to operate a power system is that operating total cost and the cost of meeting load would and also subject to constraints. The goal is to show the difference in costs after both systems are analyzed with no transmission constraints and with transmission constraints. Two power systems were taken into consideration: (1) A two bus example with no transmission constraints and also a two bus example with transmission constraints. (2) A five bus system with no transmission constraints and also a five bus example with transmission constraints. Primal Linear Programming (LP) and Optimal Power Flow (OPF) solution algorithm are used to solve this power system. Solution iterates between solving a full ac power flow solution and Primal Linear Programming (LP). The complete analyses are done with the aid of Power-World Software. This work is applicable to the humanization because of microgrids in developing worlds would be an effective and robust route to electrification. This technology will reduce power cost for the customers and could help humans in developed countries.
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微电网的最优潮流
微电网是电力循环组织的一小部分,提供各种负载,并结合分布式发电(DG),如风能和太阳能发电机。考虑最优潮流(OPF)的目标是限制电力循环的不幸,或者从变电站获得的影响成本和由DG提供的影响成本。本文分析了两种系统:无传输约束系统和有传输约束系统。这被称为理想的电力市场,这意味着发电机提供能量,负载去除能量。没有传输限制意味着只有一个边际成本。本文将公交成本分解为能源成本、损耗成本和拥堵成本。最优潮流的目标是确定电力系统瞬间运行的最佳方式。电力系统的最优运行方式是运行总成本和满足负荷的成本同时受到约束。目标是显示两种系统在无传输约束和有传输约束情况下的成本差异。考虑两个电力系统:(1)无传输约束的双母线算例和有传输约束的双母线算例。(2)无传输约束的五母线系统和有传输约束的五母线示例。采用原始线性规划(LP)和最优潮流(OPF)求解算法对该电力系统进行求解。解决方案在解决完整的交流潮流解决方案和原始线性规划(LP)之间迭代。在Power-World软件的帮助下完成了完整的分析。这项工作适用于人性化,因为微电网在发展中国家将是一个有效和稳健的电气化途径。这项技术将为客户降低电力成本,并可以帮助发达国家的人们。
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