并网屋顶太阳能:问题、学习和解决方案

N. Mathews, Narendar Rao, Gowrisankar, Biswajit Pattnaik, G. Prasad
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引用次数: 4

摘要

化石燃料资源在世界范围内的枯竭使得迫切需要寻找替代能源来满足目前的需求。在所有可再生能源选择中,太阳能是一种清洁、取之不尽、用之不竭的环保资源。但是,由于季节性和周期性的天气变化,无论是独立的太阳能光伏(PV)系统还是风能系统都无法提供持续的能源供应。因此,为了满足负荷需求,目前正在实施并网能源系统,该系统将太阳能和公用电网相结合,其中电网充当无限的能量存储。本文采用可充电储能系统(RESS)在家庭中实现10kWp并网屋顶太阳能系统,以克服公用事业电网频繁关闭的问题。在印度这样的国家,当太阳能发电达到最高速率时,公用电网会在白天关闭几个小时。在此关闭期间,除了家庭连接的负载外,来自太阳能系统的能量被存储在RESS中。储存的能量可以在夜间使用,而不需要从公用电网获取太多电力。来自公用电网的电力消耗可以与拟议的系统相抵消,除此之外,来自太阳能系统的多余储存电力用于减少其他能源购买的使用,例如烹饪气体,并供应回电网,这对用户有益。对所提出的系统进行了实验测试,并给出了实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Grid tied Roof top solar: Problems, learnings and solutions
The depletion of fossil-fuel resources on a worldwide basis has necessitated an urgent search for substitute energy sources to meet up the present day demand. Solar energy is clean, inexhaustible and environment-friendly resource among all renewable energy options. But neither a standalone solar photovoltaic (PV) system nor a wind energy system can provide a continuous supply of energy due to seasonal and periodic weather variations. Therefore, in order to satisfy the load demand, grid connected energy systems are now being implemented, that combines solar and utility grid, where the grid acts as an infinite like energy storage. In this paper a 10kWp grid tied roof solar system is implemented with a rechargeable energy storage system (RESS) in a home to overcome the frequent shut downs of the utility grid. In a country like India, the utility grid is shut down for few hours during the day time when the power from the solar is at maximum rate. During this shut down period, the energy from the solar system is stored in RESS apart from the loads connected in the home. The stored energy can be utilized during the night without taking much power from the utility grid. The power consumption from the utility grid can be nullified with the proposed system and in addition to this the excess stored power from the solar system is used for reducing usage of other energy purchases such as cooking gas and supplied back to the grid which is beneficial to the user. The proposed system is experimentally tested and the results are presented.
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