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Assessment of hybrid off-grid wind photovoltaic system: A case study of university campus

机译:混合离网风能光伏系统评估:以大学校园为例

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The new and improved Smart Grid (SG) is replacing conventional electrical grid due to: (a) Integration of renewable energy sources, (b) Demand response programs, (c) energy management system, and (d) supply versus demand management. The electrical demand is typically supplied by conventional fossil fuel generation that induces high cost and increased carbon dioxide (CO2) emissions. Therefore, to overcome abovementioned issues, there is a pressing need to supply the consumer demand using hybrid energy system with low cost and reduced CO2 emissions. The analytical assessment of optimal hybrid power generation system at University campus is performed during load shedding hours or unavailability of power supply from the conventional power system. Further, this paper analyzes four various configurations of the power system that includes: (a) Diesel based, (b) Photo Voltaic (PV) based, (c) Wind based, and (d) Wind and PV based power generation system. Cost of Energy (COE) and Net Present Cost (NPC) plays a vital role in opting for power generation system. Therefore, this research will analyze COE and NPC for the abovementioned configurations using Hybrid Optimization Model for Electric Renewables (HOMER) software. A configuration with reduced COE and NPC will be proposed for University campus.
机译:由于以下原因,新的和改进的智能电网(SG)取代了传统的电网:(a)可再生能源的整合;(b)需求响应计划;(c)能源管理系统;以及(d)供需管理。电力需求通常由传统的化石燃料发电来满足,这会导致高成本并增加二氧化碳(CO2)排放。因此,为了克服上述问题,迫切需要使用低成本和减少的CO 2排放的混合能源系统来满足消费者的需求。大学校园内最佳混合动力发电系统的分析评估是在甩负荷时间或传统电力系统无法供电时进行的。此外,本文分析了电力系统的四种不同配置,包括:(a)基于柴油的;(b)基于光伏(PV)的;(c)基于风的;以及(d)基于风力和PV的发电系统。能源成本(COE)和净现值(NPC)在选择发电系统方面起着至关重要的作用。因此,本研究将使用电力可再生能源混合优化模型(HOMER)软件分析上述配置的COE和NPC。将为大学校园提出降低COE和NPC的配置。

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