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ON THE ROLE OF POWER TRANSFORMER DESIGN FOR RESILIENT FUTURE ELECTRIC ENERGY SYSTEMS

机译:弹性未来电力系统中电力变压器设计的作用

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Power transformers play a key role in electricity systems as long as alternating current (AC) grid infrastructure is the preferred technical solution for transmission and distribution of electric energy. Further, the world-wide demand of electric energy is going to grow steadily in the next decades, and new challenges have arisen in terms of grid operation, and asset management. First, financially supported intermittent feed-in of renewable energy sources, partially in remote areas. Second, different mixtures of AC and direct current (DC) technology applied in the grid in addition to a rising share of con verter based supply, and hence diminishing system inertia. Third, growing concerns about the vulnerability of the electric grid infrastructure to several exogenous system threats. However, the current economic evaluation of reliable and resilient infrastructure, hence the methods to calculate the total cost of ownership (TCO) of power transformers, given the advancements in power transformer design, may not trigger the right incentives for investments in respective reinforcements, or new technologies. The aim of this paper is to review some the most recent advancement in power transformer design with focus on the previously mentioned challenges in power system operation, and to highlight the problematic setting of focusing solely on purchase price and loss evaluations for a critical system element such as a transformer. It can be concluded that further improvements in the life cycle costs evaluations, and the design of specifications are needed in order to narrow the commercial gap between technical innovations and its remuneration.
机译:只要交流(AC)电网基础设施是电能传输和分配的首选技术解决方案,电力变压器便会在电力系统中发挥关键作用。此外,在接下来的几十年中,全球对电能的需求将稳定增长,并且在电网运营和资产管理方面出现了新的挑战。首先,有财政支持的间歇性补充可再生能源,部分在偏远地区。其次,电网中交流电和直流电(DC)技术的不同混合使用,不仅增加了基于转换器的电源份额,而且还降低了系统惯性。第三,人们越来越担心电网基础设施对多种外来系统威胁的脆弱性。但是,当前对可靠和有弹性的基础设施的经济评估,因此,鉴于电力变压器设计的进步,计算电力变压器总拥有成本(TCO)的方法可能不会激发对相应加强件进行投资的正确动机,或者新技术。本文的目的是回顾电源变压器设计的一些最新进展,重点是前面提到的电力系统运行中的挑战,并着重指出仅关注采购价格和关键系统要素的损耗评估等问题设置。作为变压器。可以得出结论,为了缩小技术创新与其报酬之间的商业差距,需要进一步改进生命周期成本评估,并设计规格。

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