利用新型模块化静态同步串联补偿器提高RES集成和跨界潮流

IF 3.3 Q3 ENERGY & FUELS
Konstantinos F. Krommydas;Christos-Spyridon G. Karavas;Konstantinos A. Plakas;Edward Hanlon;Efthimia Chassioti;Ioannis Moraitis
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引用次数: 0

摘要

开发创新技术被认为是成功整合大量可再生能源发电和确保电力系统稳定运行的关键因素。本文提出了一种新型的模块化静态同步串联补偿器(M-SSSC),它可以实时调整输电线路电抗以改变电网潮流。本文首次在实际传输系统中进行了详细的演示,展示了这种创新技术如何最大限度地提高整体网络利用率并管理运营约束。通常,只有潮流仿真研究,不可避免地包含模型不准确和设计假设。通过利用相关系数和线性回归的概念,我们展示了M-SSSC如何促进可再生能源发电和跨境电力流动。并与移相变压器、统一潮流控制器和动态线路额定系统等创新技术进行了比较。结果表明,当需要分布式阻抗控制时,所提出的技术可以成为一种合适的经济解决方案,每欧姆阻抗的占地面积更小,并且与其他技术相比,具有快速可部署性,可扩展性和可重新部署性等优点。此外,M-SSSC可以在多个部署之间提供实时、粒度控制和协调,以优化系统潮流。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Utilizing Novel Modular Static Synchronous Series Compensators for Increased RES Integration and Cross-Border Power Flows
Developing innovative technologies is considered a critical enabler to successfully integrate large amounts of renewable generation and ensure the stable operation of power systems. In this paper, we propose a novel modular static synchronous series compensator (M-SSSC) that can adjust transmission line reactance in real-time in order to change network power flows. For the first time, a detailed demonstration in a real transmission system is presented that shows how such an innovative technology can maximize overall network utilization and manage operational constraints. Usually, only power flow simulations studies are presented that inevitably contain model inaccuracies and design assumptions. By exploiting the concepts of correlation coefficient and linear regression we demonstrate how the M-SSSC can facilitate renewable generation and cross-border power flows. A comparison with other innovative technologies such as phase shifting transformers, unified power flow controllers and dynamic line rating systems is presented. It is showcased that the proposed technology can be a suitable economical solution when distributed impedance control is needed, has a smaller footprint per ohm impedance, and depicts various advantages, such as rapid deployability, scalability and redeployability compared to other technologies. Furthermore, the M-SSSC can offer real-time, granular control and coordination between multiple deployments is possible, to optimize system power flows.
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来源期刊
CiteScore
7.80
自引率
5.30%
发文量
45
审稿时长
10 weeks
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