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Calculation of earthing and screening effects of compensation conductor laid alongside underground multi-cable power lines

机译:沿地下多电缆电力线铺设补偿导体的接地和筛选效果

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Power substations in an urban area are interconnected by high voltage underground power cables, resulting also in interconnections of their earthing grids through cable metallic screens/sheaths. Most modern power cables with XLPE insulated core have metallic screens which are practically insulated from ground. These screens can only be (and usually are) grounded at cable ends and therefore do not act like extra earth electrodes extending from a station. In this case, almost the same positive earthing effects of an extended electrode can be obtained only by extending an auxiliary wire in the same trench and routing it closely parallel to the power line. This bare conductor also provides better screening for nearby telecommunication circuits against inductive interference. This paper presents an analytical method to determine the line-to-ground fault current distribution and related voltages in the earthing system which consists of two substation earthings interconnected by insulated metal sheaths of modern XLPE cables and one bare earthing wire laid in parallel in the same cable trench. The analytical expressions, derived by solving a set of differential equations, are based on the assumption of uniformly distributed conductance between the earthing wire and earth. The proposed mathematical model takes into account mutual inductive couplings between all conductors (phases, cable sheaths and the bare conductor). In addition the paper presents a procedure for computing the resulting nominal screening factor of multi-conductor connection between two substations. The earthing and screening effects of one bare conductor laid parallel to double cable power line are numerically illustrated and outlined.
机译:城市区域中的电源变电站由高压地下电源电缆互连,也通过电缆金属屏/护套互连其接地栅格。具有XLPE绝缘核心的大多数现代电源电缆具有金属屏幕,实际上与地层绝缘。这些屏幕只能在电缆端部接地,因此不像从站延伸的额外接地电极一样。在这种情况下,只能通过在同一沟槽中延伸辅助线并将其与电力线紧密地布线来获得延伸电极的几乎相同的正接地效果。这种裸片还为附近的电信电路提供更好的筛选,以防止电感干扰。本文提出了一种分析方法,用于确定接地系统中的地面故障电流分布及相关电压,该接地系统由现代XLPE电缆的绝缘金属护套和一个裸露的接地线相互连接的两个变电站接地。电缆沟。通过求解一组微分方程来源的分析表达式基于接地线和地球之间的均匀分布电导的假设。所提出的数学模型考虑了所有导体(阶段,电缆护套和裸导体)之间的互感联轴器。此外,纸张提供了一种用于计算两个变电站之间的多导体连接的标称筛选因子的过程。平行于双电缆电力线的一个裸导体的接地和筛选效果是用的和概述的。

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