Design of an Optimal Hybrid Energy System Model for Remote Rural Area Power Generation

A. Gupta, R. Saini, M. Sharma
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引用次数: 55

Abstract

This paper deals with the design of a hybrid energy system consisting of wind, photovoltaic, biomass and small/micro hydro to supply continuous power to the load. A diesel generator is added to ensure continuous power supply and to take care of intermittent nature of wind and photovoltaic. The paper reports the results of optimization of hybrid energy system model of a remote area of Jaunpur block of Uttaranchal state of India. The model has been developed with the objective of minimizing cost function based on demand and potential constraints and optimized using computer programme developed in C++. The economic analysis has resulted in the calculation of capital cost, cost of energy for different types of resources and optimized cost of hybrid energy system. To consider the fluctuation in the discharge and power generation from SHP, the EPDF has been varied from 1.0 to 0.0. The EPDF is Electric Power Delivery Factor (also called optimizing power factor) has maximum value equal tol.
偏远农村发电最优混合能源系统模型设计
本文设计了一种由风能、光伏、生物质能和小微水电组成的混合能源系统,为负荷提供连续的电力。增加了柴油发电机,以确保持续供电,并照顾到风能和光伏的间歇性。本文报道了印度北方邦Jaunpur区块偏远地区混合能源系统模型的优化结果。该模型以需求和潜在约束为基础,以成本函数最小为目标,利用c++语言编写程序进行优化。通过经济分析,计算了资金成本、不同类型资源的能源成本和混合能源系统的优化成本。考虑到小水电的流量和发电量的波动,EPDF在1.0到0.0之间变化。EPDF是电力输送因子(也称为优化功率因子)的最大值等于1。
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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