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Single-phase auto-reclosure studies: secondary arc model research including a 500kV line experimental circuit

机译:单相自动重合闸研究:包含500kV线路实验电路的二次电弧模型研究

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Brazilian electrical transmission system has radial sub-systems and not much meshed long EHV/HV lines, a profile that suggests single-phase auto-reclosure (SPAR) as usual procedure. Since year 2000, the national electrical energy regulatory agency (ANEEL) has required the use of SPAR in the design, construction and operation of new transmission lines. Analysis of SPAR success is basically related to secondary arc extinction in a reasonably short time. So, secondary arc modeling became an important issue on defining optimized solutions. In 2003, FURNAS, UFRJ and CEPEL - transmission utility, university and research center, respectively - started a research project related to secondary arc modeling. A test infra-structure was set up at CEPEL's high power laboratory, including an out door real 500 kV line piece, with three towers and two spans and necessary measuring devices (electrical parameters, visual - films - and wind records), where arcs have been generated and monitored. The main purpose of this research project is to obtain and validate a robust model of the primary and secondary arcs in a transmission line, allowing to investigate the interaction between the arc and the "network", at arc terminals, and the evaluation of SPAR procedure success (or not). This work presents: the basic aspects of the laboratorial work conception; some difficulties related to the accuracy quality of arc parameters evaluation, of some usual measurement and data processing procedures; the adopted solutions to overcome such difficulties.
机译:巴西的电力传输系统具有放射状子系统,并且没有太多啮合的超长EHV / HV线路,该配置文件建议采用单相自动重合闸(SPAR)作为常规程序。自2000年以来,国家电能监管机构(ANEEL)要求在新输电线路的设计,建造和运营中使用SPAR。 SPAR成功的分析基本上与在相当短的时间内二次灭弧有关。因此,二次电弧建模成为定义优化解决方案的重要问题。 2003年,变速箱公用事业,大学和研究中心的FURNAS,UFRJ和CEPEL分别启动了与二次电弧建模有关的研究项目。在CEPEL的高功率实验室中建立了一个测试基础设施,包括一个室外500 kV真实线路,该线路具有三座塔架和两个跨度以及必要的测量设备(电参数,视觉-电影和风速记录),其中有电弧被生成和监视。该研究项目的主要目的是获得并验证输电线路中初级和次级电弧的鲁棒模型,从而能够研究电弧与“网络”之间,电弧终端处的相互作用,以及对SPAR程序的评估。成功(或不成功)。这项工作提出了:实验室工作构想的基本方面;与电弧参数评估的准确性,某些常规测量和数据处理程序有关的一些困难;为克服这些困难而采取的解决方案。

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