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Hybrid system for meeting global energy demand with solar PV and wind system

机译:用于满足全球能源需求的混合动力车系统与太阳能光伏和风系统

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Wind and solar are considered as if the most beautiful form of non renewable source of energy for harvesting the electricity to meet the global energy demand. Off grid hybrid systems are more useful as compared to grid connected system for supplying the rural areas and grid isolated system. Both hybrid and conventional system can together increase the stability of the system and hence economical in terms of the devices and storing system. This paper will describe about the classification of hybrid system and their related technologies. The design of the hybrid system mainly depends upon the type of source, environment condition and the no. Of user to whom it gives supply. The power mismatching due to the solar cell also creates some problem for a standalone system but as far as the grid connected system is concerned it does not affect the stability of the system. Capacity of the hybrid system can be increased to a large extent by adding more and more numbers of batteries. A hommor based simulation is carried out to test the feasibility as well as the economic value of the system.
机译:风和太阳能被认为是最美丽的非可再生能源形式,用于收获电力以满足全球能源需求。与电网连接系统相比,电网混合系统更有用,以供应农村地区和网格隔离系统。混合动力车和传统系统都可以一起提高系统的稳定性,因此在设备和存储系统方面经济。本文将描述混合系统的分类及其相关技术。混合系统的设计主要取决于源,环境状况和NO的类型。提供供应的用户。由于太阳能电池引起的功率不匹配也为独立系统创造了一些问题,但就网格连接系统而言,它不影响系统的稳定性。通过添加越来越多的电池,可以在很大程度上在很大程度上增加混合系统的能力。进行了基于Hommor的仿真,以测试可行性以及系统的经济价值。

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