Technical and Economic Aspects of Tripole HVDC

L. Barthold
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引用次数: 27

Abstract

This paper shows how, with simple modifications using either conventional or bidirectional valves, bipole and monopole systems can be connected in parallel and operated as a three pole configuration in which no earth return current flows in either normal or pole-out conditions. While slightly less efficient in terms of equipment utilization, the system reduces line losses for a given MW transfer and has better overload and internal redundancy; both of which enhance (n-1)-constrained loading of the parallel ac system. Because it makes full thermal use of three conductors, the tripole system improves both the technical and economic cases for converting existing three-phase ac lines to dc. Doing so increases power transfer much more than is possible with compensation or phase shifting transformers. The paper reviews the basic principles inherent in the tripole HVDC system and compares characteristics of both bipole and tripole alternatives in the context of an ac network.
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三极高压直流的技术和经济方面
本文展示了如何使用传统或双向阀进行简单修改,双极和单极系统可以并联连接,并作为三极配置运行,在正常或极外条件下都没有接地回流。虽然在设备利用率方面效率略低,但该系统减少了给定MW传输的线路损耗,并且具有更好的过载和内部冗余;两者都增强了并联交流系统的(n-1)约束负载。由于它充分利用了三导体的热量,三极系统改善了将现有三相交流线路转换为直流线路的技术和经济情况。这样做可以比补偿或移相变压器增加更多的功率传输。本文回顾了三极直流系统固有的基本原理,并比较了交流网络中双极和三极替代方案的特性。
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