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Large-scale security constrained optimal reactive power flow for operational loss management on the GB electricity transmission network

机译:GB电力传输网络运行损失管理的大规模安全约束最优无功潮流

摘要

The transmission of power across the GB transmission system, as operated by National Grid, results in inevitable loss of electrical power. Operationally these power losses cannot be eliminated, but they can be reduced by adjustment of the system voltage profile. At present the minimisation of active power losses relies upon a lengthy manually based iterative adjustment process. Therefore the system operator requires the development of advanced optimisation tools to cope with the challenges faced over the next decade, such as achieving the stringent greenhouse gas emission targets laid down by the UK government, while continue to provide an economical, secure and efficient service. To meet these challenges the research presented in this thesis has developed optimisation techniques that can assist control centre engineers by automatically setting up voltage studies that are low loss and low cost. The proposed voltage optimisation techniques have been shown to produce solutions that are secured against 800 credible contingency cases. A prototype voltage optimisation tool has been deployed, which required the development of a series of novel approaches to extend the functionality of an existing optimisation program. This research has lead to the development of novel methods for handling multi-objectives, contradictory shunt switching configurations and selecting all credible contingencies. Studies indicate that a theoretical loss saving of 1.9% is achievable, equivalent to an annual emissions saving of approximately 64,000 tonnes of carbon dioxide. A novel security constrained mixed integer non-linear optimisation technique has also been developed. The proposed method has been shown to be superior to several conventional methods on a wide range of IEEE standard network models and also on a range of large-scale GB network models. The proposed method manages to further reduce active power losses and also satisfies all security constraints.
机译:由国家电网运营的跨GB传输系统的电力传输导致不可避免的电力损耗。在操作上,这些功率损耗无法消除,但可以通过调整系统电压曲线来降低。当前,有功功率损耗的最小化取决于漫长的基于手动的迭代调整过程。因此,系统运营商需要开发先进的优化工具,以应对未来十年所面临的挑战,例如实现英国政府制定的严格的温室气体排放目标,同时继续提供经济,安全和高效的服务。为了应对这些挑战,本文提出的研究已经开发出了优化技术,可以通过自动设置低损耗和低成本的电压研究来协助控制中心工程师。所建议的电压优化技术已显示出可针对800个可靠的意外事件提供解决方案的解决方案。已经部署了原型电压优化工具,该工具需要开发一系列新颖的方法来扩展现有优化程序的功能。这项研究导致开发了用于处理多目标,矛盾的并联开关配置以及选择所有可信突发事件的新颖方法。研究表明,理论上可节省1.9%的损失,相当于每年节省约64,000吨二氧化碳。还开发了一种新的安全约束混合整数非线性优化技术。在广泛的IEEE标准网络模型以及一系列大型GB网络模型上,所提出的方法已被证明优于几种常规方法。所提出的方法设法进一步减少有功功率损耗,并且还满足所有安全约束。

著录项

  • 作者

    Taylor G; Macfie Peter;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
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