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Penetration level of Capacitor Coupling Sub-station on a power transmission network

机译:输电网络中电容器耦合变电站的渗透水平

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Generally, rural areas in Sub Saharan Africa (SSA) have low concentration of electrical energy users. As a result, most power utility will not be able to generate an adequate return on investment necessary to install a conventional distribution sub-station on the transmission line. Consequently, costs related to the deployment of a conventional distribution sub-station are prohibitive for most rural electrification projects. In order to address the drawback associated with costs of a conventional substation, a relatively small Capacitor Coupling Substation (CCS) which taps power from high voltage transmission lines and can be located close to or underneath extra high voltage transmission may be used. This paper investigates the penetration level of these Substations on a 220kV, 440km power transmission network of the Kenya Electricity Supply Industry (KESI). The objective or contribution is to establish the optimum penetration level of the technology with regard to cost, reliability, performance and local conditions.
机译:通常,撒哈拉以南非洲(SSA)的农村地区电能用户集中度较低。结果,大多数电力公司将无法产生在传输线上安装常规配电变电站所需的足够的投资回报。因此,对于大多数农村电气化项目而言,与部署常规配电变电站相关的成本高得令人望而却步。为了解决与常规变电站的成本有关的缺点,可以使用相对较小的电容器耦合变电站(CCS),其从高压传输线汲取电力并且可以位于超高压传输附近或下方。本文研究了这些变电站在肯尼亚电力供应行业(KESI)的220kV,440km输电网络上的渗透水平。目的或贡献是就成本,可靠性,性能和当地条件建立最佳的技术渗透水平。

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