Steady-state modelling of Hybrid Energy System

Ajai Gupta, R. Saini, M. Sharma
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引用次数: 15

Abstract

In order to evaluate the techno-economic performance of Hybrid Energy System for remote rural area electrification, a mixed integer linear mathematical programming model (time-series) has been developed to determine the optimal operation, optimal configuration including the assessment of the economic penetration levels of photovoltaic array area, and cost optimization for a hybrid energy generation system consisting of small/micro hydro, biogas, biomass (fuelwood), photovoltaic array, a battery bank and a fossil fuel generator. An optimum control algorithm written in C++, based on combined dispatch strategy, allowing easy handling of the models and data of hybrid energy system components is presented. A special feature of the proposed model is that a cost constant (cost/unit) for each of the proposed resource is introduced in the cost objective function in such a way that resources with lesser unit cost share the greater of the total energy demand in an attempt to optimize the objective function. To demonstrate the use of model and algorithm, a case study for a rural remote area is also presented.
混合能源系统的稳态建模
为了评估偏远农村地区电气化混合能源系统的技术经济性能,建立了混合整数线性数学规划模型(时间序列),以确定由小/微水电、沼气、生物质(薪柴)、光伏阵列、太阳能发电系统组成的混合能源发电系统的最优运行、最优配置(包括光伏阵列区域经济渗透水平的评估)和成本优化。一个电池组和一个化石燃料发电机。提出了一种基于组合调度策略的最优控制算法,使混合能源系统各组成部分的模型和数据易于处理。该模型的一个特点是,在成本目标函数中引入了每一种资源的成本常数(成本/单位),以使单位成本较低的资源分享总能源需求的大部分,以试图优化目标函数。为了演示模型和算法的使用,还提出了一个农村偏远地区的案例研究。
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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