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Integrating Micro-Generation into Distribution Systems - a review of recent research

机译:将微代融入分销系统 - 近期研究综述

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Micro-generation in its various forms, photovoltaics, micro-wind and micro-chp to name the primary technologies, is steadily gaining market share and is growing in popularity with energy policy makers. Most installations are connected to existing rather than purpose designed distribution systems, and this is likely to continue for some time. Given that existing networks were not designed with such distributed generation in mind, a series of related problems can be caused by these new sources of generation, in particular local voltage rise and the potential to exceed thermal limits of the certain lines and transformers. Distribution network operators (DNOs) have legitimate concerns regarding these issues and also the efficacy of the existing protection arrangements. There are of course also potential benefits. Enthusiasts for micro-generation point to a reduction in CO{sub}2 emissions, a reduction in distribution losses and increased security of supply amongst others. Research has been underway in recent years to quantify both the problems and the benefits associated with micro-generation, and to determine limits to their penetration into existing networks. Moreover, new approaches to system design and operation are immerging. Research developments and progress with the installation of micro-generation in the UK will be used to highlight the key issues. The perceived technical, commercial and regulatory barriers to uptake of micro-generation are also discussed alongside current connection codes and requirements.
机译:微发电在其各种形式,光伏,微风和微仓,以命名主要技术,是稳步增长的市场份额,并具有能源政策制定者的普及。大多数安装都连接到现有而不是目的设计的分销系统,这可能会持续一段时间。鉴于现有网络不是设计的,考虑到这种分布式的一代,这些新的一代源可能引起了一系列相关问题,特别是局部电压上升以及超过某些线路和变压器的热限制的可能性。分销网络运营商(DNOS)对这些问题的合法担忧以及现有保护安排的疗效。当然还有潜在的好处。微发电点对CO {Sub} 2排放的发达国家,减少分销损失和增加的供应安全性增加。近年来正在进行研究,以量化与微代相关的问题和相关的益处,并确定其渗透到现有网络的限制。此外,系统设计和操作的新方法正在被灭亡。在英国微代的研究进展将用于突出关键问题。还讨论了当前的连接码和要求,讨论了对微发电的吸收的技术,商业和监管障碍。

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