首页> 外文会议>Innovative Smart Grid Technologies Asia (ISGT), 2011 IEEE PES >Operational characteristics of a cluster of distributed photovoltaic systems
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Operational characteristics of a cluster of distributed photovoltaic systems

机译:分布式光伏系统集群的运行特性

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As PV systems are an intermittent resource; their behaviour will need to be appropriately characterised before they can be reliably integrated into the electrical grid on a large scale. Relevant issues at the network level include voltage regulation and more variable power flows through network equipment. At the system level, high penetrations may have significant supply-demand and reserve implications. A particular challenge is that PV can be implemented in a highly distributed manner with potentially large numbers of small residential systems. This paper attempts to characterise the behaviour of a distributed system of small scale PV installations using high frequency (10 second) monitoring data from a number of existing PV installations in the Hunter region of Australia. Results highlight the significant variability of PV generation under some weather conditions, the benefits of distributed PV implementation in reducing aggregate short-term variability and the particular characteristics of this variability including its dependence on cloud cover and the time of day. Results are presented in a form which is hoped to allow easy incorporation into distributed generation models and which assists designers of smart grid systems.
机译:由于光伏系统是一种间歇性资源;在将它们的行为大规模可靠地集成到电网之前,需要对其行为进行适当的表征。网络级别的相关问题包括电压调节和流经网络设备的更多可变功率。在系统层面,高渗透率可能会带来大量的供需和储备影响。一个特殊的挑战是,PV可能以高度分布式的方式与潜在的大量小型住宅系统一起实施。本文试图利用来自澳大利亚亨特地区许多现有光伏装置的高频(10秒)监视数据来表征小型光伏装置的分布式系统的行为。结果突出显示了在某些天气条件下光伏发电的显着可变性,分布式光伏实施在减少总体短期可变性方面的优势以及这种可变性的特殊特征,包括其对云量和时间的依赖性。结果以一种形式呈现,希望能够轻松地将其整合到分布式发电模型中,并有助于智能电网系统的设计人员。

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