The Role of HVDC Technology in Transmission Planning with Renewable Energy Integration: A Case of Wind Energy

Kenneth Rakwach, P. Musau, A. Nyete
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Abstract

Renewable sources of energy have particular characteristics which make grid integration and long-distance transmission onerous. For one, the existing transmission infrastructure cannot, at its present state, accommodate features of RE for reliable integration with the grid and subsequent transmission. Wind, for example is very unpredictable- the ripple effect of this unpredictability is that the availability of power output will also fluctuate so much so that without auxiliary support, secure, reliable and quality power cannot be dispatched. Another set of complexity is the location of RE power plants that are significantly miles away from the intended Point of Use (PoU) centers. This makes VSC-HVDC the most appropriate technology that can harmonize the challenges of RE integration and transmission in one-fold. The VSC-HVDC transmission link was simulated in a MATLAB environment for offshore wind integration and results reveal the need to adopt VSC-HVDC as the most compatible technology for integrating and transmitting RE.
高压直流技术在可再生能源整合输电规划中的作用:以风能为例
可再生能源具有独特的特性,这给并网和远距离输电带来了很大的困难。首先,现有的输电基础设施在目前的状态下无法适应可再生能源与电网的可靠整合和随后的传输。例如,风能是非常不可预测的——这种不可预测性的连锁反应是,电力输出的可用性也会波动很大,以至于没有辅助支持,就无法调度安全、可靠和高质量的电力。另一组复杂性是可再生能源发电厂的位置离预定的使用点(PoU)中心很远。这使得VSC-HVDC成为最合适的技术,可以将可再生能源整合和传输的挑战统一起来。在MATLAB环境中对海上风电集成的VSC-HVDC传输链路进行了仿真,结果表明需要采用VSC-HVDC作为集成和传输可再生能源的最兼容技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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