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PV and CSP integration study experience in a Mediterranean partner country

机译:在地中海伙伴国家的PV和CSP集成研究经验

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The current study employs static and dynamic analysis configurations under different case studies in order to define the allocation, maximum capacity of non-conventional generation with emphasis on photovoltaic (PV), concentrating solar power (CSP) and wind energy technologies that may be inhabited within a region of a Mediterranean partner country. This work focuses on the impact that may induce any distributed units’ addition on the power system's load flow and transient stability. A group of substations were proposed to introduce the dispersed generation with the extension in mind to suggest the voltage level to connect these units. The main issues addressed were the total system losses and short-circuit capacity whereas among the most critical disturbances was a three-phase fault incident. Thermal and solar plants using basic machine models such as synchronous generator, exciter and governor and a wind farm employing doubly fed induction generator technology were chosen throughout this research study. The dynamic behaviour of the system elements was examined by changing the solar irradiance, applying a three-phase fault at the PV and wind power plant connected buses and by performing open-circuit setpoint step tests for one of the CSP exciter models. PSS®E software simulation tool of Siemens PTI will be utilised throughout this work.
机译:本研究在不同案例研究中采用静态和动态分析配置,以定义分配,非常规发电的最大容量,重点是光伏(PV),聚光太阳能(CSP)和风能技术,地中海伙伴国家的地区。这项工作着眼于可能导致分布式设备增加对电力系统的潮流和暂态稳定性的影响。提出了一组变电站,在引入扩展的同时引入分散发电,以建议连接这些单元的电压水平。解决的主要问题是总的系统损耗和短路容量,而其中最严重的干扰是三相故障事件。在整个研究过程中,选择了使用基本机械模型(例如同步发电机,励磁机和调速器)的热电厂和太阳能电厂以及采用双馈感应发电机技术的风电场。通过更改太阳辐照度,在光伏和风电厂连接的母线上施加三相故障以及对一种CSP励磁机模型执行开路设定点阶跃测试,来检查系统元素的动态行为。整个过程将使用Siemens PTI的PSS®E软件仿真工具。

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