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Very low impedance (VLI) superconductor cables

机译:超低阻抗(VLI)超导电缆

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High Temperature Superconductor (HTS) cable is regarded as one of the most promising new technologies to address grid bottlenecks. Among HTS cable designs, one in particular-shielded cold dielectric cable-offers performance advantages particularly well suited to today's siting, reliability and performance challenges. Shielded cold dielectric HTS transmission cables feature lower electrical losses; the virtual elimination of stray EMF; and significantly lower impedance than conventional cables and lines. Of particular importance, the very low impedance (VLI) inherent in cables of coaxial design makes it possible to control power flows over VLI circuits. In addition, variable impedance may be cost-effectively added to VLI circuits with relatively small angle, conventional phase angle regulators. Thus, VLI circuits can function like fully controllable DC circuits. The introduction of VLI cable enables new approaches to important challenges in grid management. The strategic insertion of relatively short segments of VLI cable to bridge bottlenecks can offload flows from overburdened conventional circuits, thereby expanding grid capacity, extending the useful life of conventional network elements, and raising overall asset utilization. With power markets in turmoil and transmission increasingly the center of attention, VLI cable is a breakthrough technology that has great potential as a cost-effective solution for many of the industry's most pressing problems.
机译:高温超导体(HTS)电缆被认为是解决电网瓶颈的最有希望的新技术之一。在HTS电缆设计中,特别是屏蔽的冷电介质电缆具有一种性能优势,特别适合当今的选址,可靠性和性能挑战。屏蔽冷介电HTS传输电缆具有较低的电损耗;虚拟消除杂散EMF;而且阻抗明显低于传统的电缆和线。特别重要的是,同轴设计的电缆固有的极低阻抗(VLI)使控制VLI电路上的功率流成为可能。此外,可变阻抗可以经济有效地添加到具有相对较小角度的传统相角调节器的VLI电路中。因此,VLI电路的功能类似于完全可控的DC电路。 VLI电缆的引入为应对电网管理中的重大挑战提供了新的方法。将相对较短的VLI电缆段战略性地插入桥式瓶颈可以减轻过载的常规电路的流量,从而扩大电网容量,延长常规网络元素的使用寿命,并提高整体资产利用率。随着动荡不安的电力市场和传输日益成为人们关注的焦点,VLI电缆是一项突破性技术,具有巨大的潜力,可以作为解决行业中许多紧迫问题的经济有效的解决方案。

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