thesis代写

学术论文代写:太阳能光伏系统的未来

学术论文代写:太阳能光伏系统的未来。Shafiullah和Carter在他们的研究工作分析了太阳能光伏系统的未来。更具体地说,作者评估了如何在澳大利亚PV系统被使用在一个更有效的方式和什么类型的问题被识别和解决。作者试图在一个农村环境中创建一个PV柴油混合动力网络来衡量效益。在农村社区,太阳能光伏系统被使用,因为那里没有用于发电的传统设施。太阳能光伏发电对气候和成本都很友好。接下来学术论文代写专家将为留学生们分享下太阳能光伏系统的未来的论文范文。

Shafiullah和Carter[6]试图为一个乡镇创建一个柴油混合动力系统,为了调查可能性,在他们的研究[6]中提出了荷马模型的应用。研究工作的重点是实施和评估混合动力pv -柴油系统。现有的柴油动力系统对向澳大利亚的一个小镇供电很有用。光伏集成系统是基于现有电力系统的调节柴油容量建模的。作者尝试用多能源荷马混合优化的仿真模型来研究光伏集成的效率。Parida et al., [12], Nema et al., [13], Katiraei et al.,[14]等人的研究表明,未来PVs的应用将会更加完善和大规模。集成系统和问题可以在电网和离网情况下考虑,而不需要指出电网和离网[13]的所有故障。

Shafiullah和Carter[6]的研究目的是了解PV集成的效率,重点关注集成中可能发生的故障。研究人员发现,更高的太阳能源吸收、转换和穿透率会带来更好的能源生产,但高PV设置的缺陷挑战了能源来源[6]。基于净现值成本NPC、能源COE成本、可再生射频比例和温室气体排放GHG等因素对混合动力系统性能进行了分析。尽管发现了这些问题,但模拟研究表明,通过将现有的独立发电机与可再生能源相结合,各国有多少农村地区可以从使用这些发电机的电网系统中获益。“从仿真分析,显然发现线索,以及其他在西澳大利亚中西部地区,拥有巨大的潜力大大增加使用太阳能光伏与现有的独立的发电机,从而减少柴油的使用,发电机的操作时间,导致减少能源消耗和温室气体排放”[6]。

Shafiullah & Carter [6] attempted to create a diesel hybrid system for a township and for the purpose of investigating possibilities came up with an application of the HOMER model in their research [6]. The research work focus was on implementing and assessing a hybrid PV-Diesel system. The Diesel power system in existence was useful for supplying power to a town in Australia. PV integrated system was modelled based on the accommodative diesel capacity of the existing power systems. Authors attempted to study efficiency of PV integration with a simulation model called the HOMER -Hybrid optimization of Multiple energy resources. Research works like Parida et al., [12], Nema et al., [13] and Katiraei et al., [14] argue for the more enhanced and large-scale application of PVs in the future. Integration systems and issues can be considered within the grid and off-grid without pointing out all faults in grid versus off-grid [13].

The aim of the study of Shafiullah & Carter [6] was to understand efficiency of PV integration with focus on faults that can happen in integration. The researchers identified that higher solar source absorption, conversion and penetration lead to better energy production, but faults in high PV setup challenged energy sourcing [6]. Hybrid power system performance was analyzed based on factors like net present cost NPC, cost of energy COE, renewable fraction RF and greenhouse gas emissions GHG. Inspite of the issues identified, the simulation study showed how many rural locations within countries can benefit from using exiting stand-alone generators of energy grid systems by integrating them with renewable sources of energy. “From the simulation analysis, it is clearly observed that Cue, as well as other mid-west locations within Western Australia, has enormous potential for substantially increasing the use of solar PV in parallel with the existing stand-alone generators, thereby reducing the use of diesel fuel, generator operating hours, resulting in reduced energy costs and GHG emissions”.

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