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Application of DC-AC Hybrid Grid and Solar Photovoltaic Generation with Battery Storage Using Smart Grid

机译:DC-AC混合网格和太阳能光伏发电应用智能电网电池存储

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摘要

Smart grid for the past few years has been the prime focus of research in power systems. The aim is to eliminate load shedding and problematic blackout conditions, further offering cheap and continuous supply of electricity for both large and small consumers. Another benefit is to integrate renewable energy resources with existing dump grid in more efficient and cost-effective manner. In past few years, growing demand for sustainable energy increases the consumption of solar PV. Since generation from solar PV is in DC and most of the appliances at home could be operated on DC, AC-DC hybrid distribution system with energy management system is proposed in this paper. EMS helps to shift or control the auxiliary load and compel the users to operate specific load at certain time slots. These techniques further help to manage the excessive load during peak and off peak hours. It demonstrates the practical implementation of DC-AC network with integration of solar PV and battery storage with existing infrastructure. The results show a remarkable improvement using hybrid AC-DC framework in terms of reliability and efficiency. All this functioning together enhances the overall efficiency; hence, a secure, economical, reliable, and intelligent system leads to a smart grid.
机译:过去几年的智能电网一直是电力系统研究的主要重点。目的是消除负载脱落和有问题的停电条件,进一步为大型消费者提供便宜和连续的电力供应。另一个好处是以更高效和成本效益的方式将可再生能源资源与现有的转储网格集成。在过去的几年里,对可持续能源的需求不断增长,增加了太阳能光伏的消耗。由于Solar PV的产生是DC,并且在家中的大部分电器可以在DC上运行,本文提出了具有能源管理系统的AC-DC混合分配系统。 EMS有助于转换或控制辅助负载,并将用户强制在特定时隙处运行特定负载。这些技术进一步有助于在峰值和关闭高峰时段期间管理过度负载。它展示了DC-AC网络的实际实现,具有与现有基础设施的太阳能光伏电池和电池存储器集成。结果在可靠性和效率方面使用混合AC-DC框架显着改善。所有这些功能共同提高了整体效率;因此,安全,经济,可靠,智能的系统导致智能电网。

著录项

  • 作者

    Shoaib Rauf; Nasrullah Khan;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 eng
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