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Analysis on system sizing and secondary benefits of centralized PV street lighting system

机译:集中式光伏路灯系统的系统规模和次要效益分析

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The combination of solar and LED lighting has enabled interest in the municipalities and governing authorities to lighten streets/remote areas without setting up electrical infrastructure in a mere traditional way. For which, stand-alone solar street lighting solutions are very popular and often built with customized PV panels and overdesigned. Recently, AC-centralized street lighting system is adopted by many of the street lighting installers as such system is easy for installation, maintenance and future grid interconnectivity. Generally, solar off-grid solutions are designed for autonomy of 3–5 days to meet lighting requirements under worst environmental conditions. Hence, in situations like continuous sunny days (especially in countries like India), the surplus solar energy gets unutilized, which can be avoided in case of centralized system. This paper presents analytical work on system sizing for two geographical locations in India based on monthly averaged solar irradiance and dusk-dawn length data. Comparison among three solutions (decentralized, AC-centralized, DC-centralized) in terms of system size, amount of surplus energy etc. is presented in this paper. The effect of dust on PV performance is also considered during analysis. An approach to use judiciously available surplus energy in centralized system for other local energy needs is discussed.
机译:太阳能和LED照明的结合使市政当局和主管部门对减轻街道/偏远地区的兴趣,而无需以传统方式建立电气基础设施。为此,独立式太阳能路灯解决方案非常受欢迎,并且通常使用定制的PV面板建造并且设计过度。最近,许多街道照明安装人员都采用了AC集中式街道照明系统,因为该系统易于安装,维护和未来的电网互连。通常,太阳能离网解决方案的设计时间为3-5天,可以满足最恶劣环境条件下的照明要求。因此,在连续晴天的情况下(尤其是在印度这样的国家),多余的太阳能将无法利用,在集中式系统的情况下可以避免这种情况。本文介绍了根据月平均太阳辐照度和黄昏黎明长度数据对印度两个地理位置的系统规模进行的分析工作。本文介绍了三种解决方案(分散式,交流式,直流式)在系统规模,剩余能量等方面的比较。在分析过程中还应考虑灰尘对PV性能的影响。讨论了一种在中央系统中明智地使用剩余能源来满足其他本地能源需求的方法。

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