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Modeling and simulation of a novel small-scale compressed air hybrid system for stand-alone off-grid applications

机译:用于独立离网应用的新型小型压缩空气混合动力系统的建模和仿真

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摘要

The search is on for alternative ways for novel method to electrify electrical and electronic devices as telecom infrastructures. In north-eastern America, these infrastructures are installed in areas correspond to locations where the population is very sparsely distributed and climatic conditions extreme. Thus, these sites are both hard to access, especially in the winter time, and are not linked to the electric grid. Nevertheless, telecom infrastructures require continuous, stable, and 100% safe current supply. As a result, in most — if not all-locations, diesel generators are used. Whereas these generators require frequent maintenance or service, they also continuously emit carbon dioxide. In this paper, the anatomy, design and modeling of a small scale compressed air hybrid system is presented. To investigate the effectiveness and overall performance and issues of the proposed hybrid system for stand-alone off-grid applications, a case study was considered.
机译:正在寻找替代方法,以使电气和电子设备作为电信基础设施电气化的新颖方法。在美国东北部,这些基础设施安装在人口稀少且气候条件极端恶劣的地区。因此,这些站点既难以访问,尤其是在冬季,并且不与电网链接。但是,电信基础设施需要持续,稳定和100%安全的电流供应。结果,在大多数(如果不是所有地点)都使用柴油发电机。这些发生器需要经常维护或保养,但它们也不断排放二氧化碳。本文介绍了小型压缩空气混合动力系统的解剖,设计和建模。为了研究针对独立离网应用的混合系统的有效性,整体性能和问题,考虑了一个案例研究。

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