用于分布式网络的混合太阳能背靠背高压直流模块转换器

Karunakar Thadkapally, Francis Thomas Josh, Jeyaraj Jency Joseph, Jayaraj Jayakumar
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摘要

高压直流输电(HVDC)对电力控制(由太阳能或风能产生)非常灵活,与高压替代电流(HVAC)相比,可以以最小的损耗传输数千千米的电力。它允许太阳能发电大规模并入当前电网。本文作者的观点旨在概述用于集成高压直流和太阳能系统的方法。MATLAB/Simulink 用于模拟太阳能发电与 HVDC 输电链路的集成。本文强调了太阳能与电网的集成,从而为电网提供优质、可控的电力。此外,还将模拟研究与 Pugalur 交流电网站(太阳能高发区)和 Thrissur 交流电网站(太阳能低发区)之间的实时数据进行了比较。从模拟、电压、电流和电能质量中获得的结果强调了太阳能一体化的优越性。比较研究表明,在太阳能光伏发电渗透到公用事业网络的过程中,需要采用高压直流技术。
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The hybrid solar energized back-to-back high voltage direct current modular converter for distributed networks
High voltage direct current (HVDC) transmission is flexible towards the power control (produced by solar or wind) and can be transported over thousands of kilo meters with minimal losses over the high voltage alternative current (HVAC). It allows solar power to be integrated into the current power grid on a large scale. The author view in this article aims at providing an overview of methods used to integrate HVDC and solar systems. MATLAB/Simulink is used to simulate the solar power integration with HVDC transmission link. This article emphaises solar energy and grid integration, which results in quality and controlled electricity to the grid. Further the simulation studies are compared with real time data between the stations Pugalur AC grid (high solar energy region) and Thrissur AC grid (low solar energy region). Obtained results from the simulation, voltage and currents and power quality stresses the superiority towards the solar integration. The comparison studies enumerate the need to go situation for HVDC technology during the penetration of solar voltaic penetration into the utility network.
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