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An investigation into the technical impacts of microgeneration on UK-type LV distribution networks

机译:微米型对英国LV配电网络技术影响的调查

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In a bid to meet the UK renewable energy targets, and to reduce GHG emissions in accordance with the Kyoto Protocol, the UK government is encouraging small scale developers through different incentive schemes. So far, the UK renewable energy generation has seen a steady growth but there are concerns about the impacts of these on the power system network. Sequel to this, the UK research councils have invested in microgeneration specific researches, one of which is the impact of significant microgeneration penetration on the LV/MV/HV network to 2050 [1]. This paper investigates the technical impacts of microgeneration on the UK low voltage distribution networks, using the Solar PV as a case study. Technical impacts considered include voltage rise, voltage unbalance, reversed power flow, transformer and cable loading, system losses and harmonics. The networks were modeled using OpenDSS and simulations performed using MATLAB via the OpenDSS COM interface. The analysis of the results obtained show that the aforementioned impacts increased with high solar PV penetration, but within acceptable limits. However, the variations of solar PV penetration beyond the acceptable limits of the network were illustrated.
机译:在以满足英国可再生能源目标,并根据京都议定书减少温室气体排放,英国政府通过不同的激励计划鼓励小规模开发商。到目前为止,英国可再生能源产生稳定增长,但涉及这些对电力系统网络的影响。续集到这一点,英国研究委员会研究了微生物特异性研究,其中一个是显着的微生物渗透对LV / MV / HV网络的影响到2050 [1]。本文研究了使用太阳能光伏作为案例研究的芯片对英国低压配电网的技术影响。所考虑的技术影响包括电压上升,电压不平衡,反向电源流,变压器和电缆负载,系统损耗和谐波。网络是使用MATLAB经由Opendss COM接口进行的开稿和模拟建模的。得到的结果分析表明,上述影响力高,太阳能光伏渗透率增加,但在可接受的限度范围内。然而,示出了超出网络的可接受限制的太阳能光伏渗透的变化。

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