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A network planning perspective for grid integration of renewable distributed generation in South Africa

机译:南非可再生分布式发电并网的网络规划视角

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With the drive for cleaner energy, Independent Power Producers (IPP's) are tasked in finding suitable potential land sites that meet their renewable project needs and that prove to be technically feasible to integrate into the nearest distribution electrical infrastructure. With the South African utility, Eskom, adapting generic planning guidelines for grid integration of generators, the network planning assessment becomes complex with multi-machine grid integration. The voltage stability effects of the Eskom Distribution network to which these generating plants connect to, are analysed. Solar density maps provide an indication of proposed MW output in a particular area. These maps are used to identify the maximum connecting distributed generation (DG) to the electrical grid in feasible geographic areas. This paper documents research objectives which quantify network planning criteria that the utility and planning engineer may use in determining the successful integration of multiple machine DG units to the network grid. Four objectives were identified. Two of the four objectives are summarized in this paper as they were covered in detail in previous papers. Two new objectives consist of establishing voltage stability criteria using synchronous machine technology and locating feasible land sites using photovoltaic technology and are discussed further in this paper.
机译:在寻求更清洁能源的推动下,独立电力生产商(IPP)的任务是找到合适的潜在土地场地,以满足其可再生能源项目的需求,并证明在技术上可行地整合到最近的配电电力基础设施中。随着南非公用事业公司Eskom调整通用规划准则以实现发电机的电网集成,随着多机电网集成,网络规划评估变得非常复杂。分析了这些发电厂所连接的Eskom配电网络的电压稳定性影响。太阳密度图提供了在特定区域中建议的兆瓦输出的指示。这些地图用于识别可行地理区域中与电网的最大连接分布式发电(DG)。本文记录了研究目标,这些目标量化了公用事业和规划工程师可以用来确定将多台机器DG单元成功集成到网络网格中的网络规划标准。确定了四个目标。本文总结了这四个目标中的两个,在先前的文章中已对其进行了详细介绍。两个新的目标包括使用同步电机技术建立电压稳定性标准和使用光伏技术定位可行的陆地站点,本文将对此进行进一步讨论。

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