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首页> 外文期刊>Energy Conversion & Management >Performance of US hybrid distributed. energy systems: Solar photovoltaic, battery and combined heat and power
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Performance of US hybrid distributed. energy systems: Solar photovoltaic, battery and combined heat and power

机译:美国混合动力的表现。能源系统:太阳能光伏,电池以及热电联产

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摘要

Until recently, the relatively high levelized cost of electricity from solar photovoltaic (PV) technology limited deployment; however, recent cost reductions, combined with various financial incentives and innovative financing techniques, have made PV fully competitive with conventional sources in many American regions. In addition, the costs of electrical storage have also declined enough to make PV + battery systems potentially economically viable for a mass-scale off-grid low-emission transition. However, many regions in the U.S. (e.g. Northern areas) cannot have off-grid PV systems without prohibitively large battery systems. Small-scale combined heat and power (CHP) systems provide a potential solution for off-grid power backup of residential-scale PV + battery arrays, while also minimizing emissions from conventional sources. Thus, an opportunity is now available to maximize the use of solar energy and gain the improved efficiencies possible with CHPs to deploy PV + battery + CHP systems throughout the U.S. The aim of this study is to determine the technical viability of such systems by simulating PV + battery + CHP hybrid systems deployed in three representative regions in the U.S., using the Hybrid Optimization Model for Electric Renewable (HOMER) Pro Microgrid Analysis tool. The results show that the electricity generated by each component of the hybrid system can be coupled to fulfill the residential load demand. A sensitivity analysis of these hybrid off grid systems is carried out as a function capacity factor of both the PV and CHP units. The results show that conservatively sized systems are technically viable in any continental American climate and the details are discussed to provide guidance for both design and deployment of PV + battery + CHP hybrid systems to reduce consumer costs, while reducing energy- and electricity-related emissions. (C) 2015 Elsevier Ltd. All rights reserved.
机译:直到最近,来自太阳能光伏(PV)技术的相对较高的水平电费成本仍限制了部署。但是,最近的成本降低,加上各种财务激励措施和创新的融资技术,使PV在许多美国地区与传统资源完全竞争。另外,蓄电成本也已下降到足以使PV +电池系统在经济上可行的规模化离网低排放过渡。但是,在美国许多地区(例如北部地区),如果没有大型电池系统,就无法拥有离网光伏系统。小规模的热电联产(CHP)系统为住宅规模的PV +电池组的离网电力备份提供了一种潜在的解决方案,同时还可以最大程度地减少传统来源的排放。因此,现在有机会最大程度地利用太阳能并提高热电联产的效率,从而在全美国部署PV +电池+ CHP系统。本研究的目的是通过模拟PV来确定此类系统的技术可行性。 +电池+ CHP混合动力系统,使用可再生电力混合优化模型(HOMER)Pro微电网分析工具在美国三个代表性地区部署。结果表明,混合动力系统各组成部分产生的电力可以耦合,以满足居民的负荷需求。这些混合离网系统的灵敏度分析是作为PV和CHP单元的功能容量因子进行的。结果表明,规模保守的系统在任何美洲大陆性气候下在技术上都是可行的,并讨论了详细信息以为PV +电池+ CHP混合系统的设计和部署提供指导,以降低消费者成本,同时减少与能源和电力相关的排放。 (C)2015 Elsevier Ltd.保留所有权利。

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