Analysis And Simulation Of Economic Load Dispatch in Power System

Sanitha Michail C
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Abstract

In an interconnected power system a large number of generating units with different ratings and performance functions are connected together. Total power generation need to meet the load demand satisfying the system constraints. Also it is very important to minimize the cost of generation of power. Some optimization technique needs to be used for the cost minimization. Economic load dispatch (ELD) is one of the optimization technique used to minimize the cost of power generation. ELD can allot the power generation of each generating unit and optimize the cost of power generation satisfying the system constraints of the power system. Several approaches to solve ELD problems include lambda iteration, dynamic programming and linear programming etc. Lambda iteration method is demonstrated in this paper with two different conditions, which are transmission system with and without losses. In this paper four thermal generating units with different performance functions and generator limits are considered for the analysis and simulation is conducted in Mipower software. Lambda iteration is a fast converging method to minimize the cost of generation of power where correct assumption of initial value of lambda helps to converge the results quickly.
电力系统负荷经济调度分析与仿真
在互联电力系统中,大量具有不同额定值和性能功能的发电机组被连接在一起。总发电量需要满足满足系统约束条件的负荷需求。同时,降低发电成本也是非常重要的。为了使成本最小化,需要使用一些优化技术。经济负荷调度是实现发电成本最小化的一种优化技术。ELD可以对各发电机组的发电量进行分配,优化发电成本,满足电力系统的系统约束。求解ELD问题的方法包括lambda迭代、动态规划和线性规划等。本文在有损耗和无损耗两种不同的传输系统条件下演示了Lambda迭代法。本文考虑了4台具有不同性能功能和发电机极限的火电机组,在Mipower软件中进行了分析和仿真。Lambda迭代是一种快速收敛的方法,以最小化发电成本,正确的Lambda初始值假设有助于快速收敛结果。
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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