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Application of Hybrid Mixing CDMA/IDMA/OCDMA/OIDMA for Smart Grid Integration of Renewable-Energy Resources

机译:混合混合CDMA / IDMA / OCDMA / OIDMA用于可再生能源的智能电网整合的应用

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The paper proposes a novel approach to achieve monitoring and control of modern substations integrated with renewable-energy resources using advanced computer communication and control technology. The proposed approach is based on hybrid mixing a code division multiple access (CDMA)/interleave division multiple access (IDMA) and optical-CDMA (OCDMA)/optical-IDMA (OIDMA) systems over power-line/optical fiber combining wireless communication technology to realize the utility infrastructure of Smart Grid. Recently, due to the rapid growth on optical fiber/wireless communication technology, it can offer standardized communication technologies for wide-area, metropolitan-area, and local-area networks. When integrating with power grid, communication systems become urgent technologies, which enable the accommodation of distributed renewable-energy generation and act extremely important role in monitoring, operating, controlling, and protecting between renewable-energy generators and power systems. This paper presents hybrid mixing communication systems used in distributed power generation systems (DPGS) such as photovoltaic power-generation systems, wind-turbine power-generation systems, micro-turbine power-generation systems, etc. Finally, this paper outlines some research challenges and opportunities and offers possible solutions of the communication systems for grid integration of renewable-energy resources.
机译:本文提出了一种新的方法,实现了使用先进的计算机通信和控制技术实现了与可再生能源集成的现代变电站的监测和控制。所提出的方法基于混合混合的码分多址(CDMA)/交错分割多址(IDMA)和光学-CDMA(OCDMA)/光学-DIDMA(OIDMA)系统,而不是电源线/光纤组合无线通信技术实现智能电网的公用事业基础设施。最近,由于光纤/无线通信技术的快速增长,它可以为广域,大都市区和局域网提供标准化的通信技术。与电网集成时,通信系统成为紧急技术,这使得分布式可再生能源产生的容纳能够在监控,操作,控制和保护可再生能源发生器和电力系统之间进行极其重要的作用。本文介绍了用于分布式发电系统(DPG)的混合混合通信系统,如光伏发电系统,风力涡轮发电系统,微型涡轮发电系统等。最后,本文概述了一些研究挑战和机会,并提供可再生能源资源网格集成的通信系统的可能解决方案。

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