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Simulink Model for Economic Analysis and Environmental Impacts of a PV With Diesel-Battery System for Remote Villages

机译:Simulink模型用于偏远村庄采用柴油和电池的光伏系统的经济分析和环境影响

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This paper discusses the economic analysis and environmental impacts of integrating a photovoltaic (PV) array into diesel-electric power systems for remote villages. MATLAB Simulink is used to match the load with the demand and apportion the electrical production between the PV and diesel-electric generator. The economic part of the model calculates the fuel consumed, the kilowatthours obtained per gallon of fuel supplied, and the total cost of fuel. The environmental part of the model calculates the CO{sub}2, particulate matter (PM), and the NO{sub}x emitted to the atmosphere. Simulations based on an actual system in the remote Alaskan community of Lime Village were performed for three cases: 1) diesel only; 2) diesel-battery; and 3) PV with diesel-battery using a one-year time period. The simulation results were utilized to calculate the energy payback, the simple payback time for the PV module, and the avoided costs of CO{sub}2, NO{sub}x, and PM. Post-simulation analysis includes the comparison of results with those predicted by Hybrid Optimization Model for Electric Renewables (HOMER). The life-cycle cost (LCC) and air emissions results of our Simulink model were comparable to those predicted by HOMER.
机译:本文讨论了将光伏(PV)阵列集成到偏远村庄的柴油电力系统中的经济分析和环境影响。 MATLAB Simulink用于使负载与需求匹配,并在PV和柴油发电机之间分配电力。该模型的经济部分计算了消耗的燃料,所供应的每加仑燃料所获得的千瓦时以及燃料的总成本。该模型的环境部分计算排放到大气中的CO {sub} 2,颗粒物(PM)和NO {sub} x。在以下三种情况下,基于在石灰村的偏远阿拉斯加社区中的实际系统进行了模拟:1)仅使用柴油; 2)柴油电池; 3)使用柴油电池的光伏电池,使用期限为一年。仿真结果用于计算能量回收期,PV模块的简单回收期以及避免的CO {sub} 2,NO {sub} x和PM成本。仿真后分析包括将结果与可再生能源混合优化模型(HOMER)预测的结果进行比较。 Simulink模型的生命周期成本(LCC)和空气排放结果与HOMER预测的结果相当。

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