{"title":"小型研究所HRES的最优规模","authors":"Vivek Soni, R. Khare","doi":"10.1109/ICEES.2014.6924145","DOIUrl":null,"url":null,"abstract":"Hybrid energy system generally consists of a primary energy source working in parallel with standby secondary energy storage units. Hybrid Renewable energy system (HRES) is a combination of one or several renewable resources such as wind, solar, biomass, small/micro hydro, with other technologies such as batteries and fossil fuel powered diesel generator (for backup) to provide electric power. HRES is an excellent solution for electrification of remote rural areas where the grid extension is difficult and not economical. A hybrid renewable energy system may be used to reduce dependency on either conventional energy or renewable system. This paper gives the design idea of optimized Hybrid Energy System for a certain technical college/remote rural area for a particular site in central India (Bhopal). For this hybrid system, the meteorological data of Solar Isolation is taken for Bhopal (Longitude 77°42' E, Latitude 23°25' N and Altitude 427 m) and the pattern of load consumption of load are studied and suitably modeled for optimization of the hybrid energy system using HOMER software. HOMER (Hybrid Optimization Model for Electric Renewable) is a design model that determines the optimal architecture and control strategy of the hybrid system. Validation of this result is through evolutionary computing such as GA (genetic algorithm). Our objective is selected as minimizing the total capital cost, subject to the constraint of the Loss of Power Supply Probability (LPSP). 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引用次数: 17
摘要
混合能源系统一般由一次能源与备用二次储能单元并联工作组成。混合可再生能源系统(HRES)是一种或几种可再生能源的组合,如风能、太阳能、生物质能、小/微型水力发电,以及其他技术,如电池和化石燃料驱动的柴油发电机(备用)提供电力。HRES是偏远农村地区电气化的一个极好的解决方案,那里的电网扩展困难且不经济。混合可再生能源系统可用于减少对常规能源或可再生能源系统的依赖。本文针对印度中部(博帕尔)某技术学院/偏远农村地区的特定地点,给出了优化混合能源系统的设计思想。针对该混合能源系统,选取博帕尔(东经77°42′,北纬23°25′,海拔427 m)的太阳隔离气象数据,利用HOMER软件对负载的负荷消耗模式进行了研究,并进行了适当的建模,以优化混合能源系统。HOMER (Hybrid Optimization Model for Electric Renewable)是确定混合动力系统最优结构和控制策略的设计模型。验证这一结果是通过进化计算,如GA(遗传算法)。我们的目标是在电力供应损失概率(LPSP)的约束下,使总资本成本最小。研究证明,遗传算法具有很好的收敛性,所提出的方法对于单机混合动力系统的最优规模是可行的。
Optimal sizing of HRES for small sized institute using HOMER
Hybrid energy system generally consists of a primary energy source working in parallel with standby secondary energy storage units. Hybrid Renewable energy system (HRES) is a combination of one or several renewable resources such as wind, solar, biomass, small/micro hydro, with other technologies such as batteries and fossil fuel powered diesel generator (for backup) to provide electric power. HRES is an excellent solution for electrification of remote rural areas where the grid extension is difficult and not economical. A hybrid renewable energy system may be used to reduce dependency on either conventional energy or renewable system. This paper gives the design idea of optimized Hybrid Energy System for a certain technical college/remote rural area for a particular site in central India (Bhopal). For this hybrid system, the meteorological data of Solar Isolation is taken for Bhopal (Longitude 77°42' E, Latitude 23°25' N and Altitude 427 m) and the pattern of load consumption of load are studied and suitably modeled for optimization of the hybrid energy system using HOMER software. HOMER (Hybrid Optimization Model for Electric Renewable) is a design model that determines the optimal architecture and control strategy of the hybrid system. Validation of this result is through evolutionary computing such as GA (genetic algorithm). Our objective is selected as minimizing the total capital cost, subject to the constraint of the Loss of Power Supply Probability (LPSP). Studies have proved that the genetic algorithm converges very well and the methodology proposed is feasible for optimally sizing standalone hybrid power systems.