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Maximizing solar PV energy penetration using energy storage technology

机译:使用储能技术最大化太阳能光伏能量的渗透

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Many countries around the world are considering using solar energy technologies in their future energy planning. The intermittency and unpredictability nature of solar power generation, which can influence the power quality and reliability of the power grid especially at large-scale solar energy systems, constitute a drawback for use of solar technology. Precise research and investigations are needed to overcome this weakness helping solar power be used in power network in large scale. The variation in sun radiation may lead to over-production of electricity from solar PV generators at one time, and lack of production to satisfy the energy demand at another time. As a result, solar PV systems demonstrate a low-level of reliability in power systems. However, an energy storage technology would play a significant role in increasing the reliability of solar power generation systems. The objectives of this study are: firstly to review the issues in relation to grid-integration of solar PV systems, secondly, to review a range of storage devices that could technically and economically be used in association with solar PV energy in order to increase the solar energy penetration level with appropriate reliability in weak electric systems, and finally to present a model for solar PV system combined with battery and super-capacitor.
机译:世界上许多国家/地区都在考虑在未来的能源规划中使用太阳能技术。太阳能发电的间歇性和不可预测性会影响电网的电能质量和可靠性,尤其是在大规模太阳能系统中,这构成了使用太阳能技术的一个缺点。需要精确的研究和调查来克服这一弱点,以帮助将太阳能大规模用于电网。太阳辐射的变化可能会导致太阳能光伏发电器一次产生过多的电力,而导致另一次发电不足以满足能源需求。结果,太阳能光伏系统在电力系统中显示出较低的可靠性。但是,储能技术将在提高太阳能发电系统的可靠性方面发挥重要作用。这项研究的目标是:首先审查与太阳能光伏系统并网有关的问题,其次,审查可在技术上和经济上与太阳能PV能源结合使用的一系列存储设备,以增加在弱电系统中具有适当可靠性的太阳能渗透水平,最后提出了结合电池和超级电容器的太阳能光伏系统模型。

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