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Impacts of renewable energy integration into the high voltage (HV) networks

机译:可再生能源整合到高压(HV)网络中的影响

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Current power systems creates environmental impacts as well as global warming due to utilisation of fossil fuels, especially coal, as carbon dioxide is emitted into the atmosphere. It is therefore a fundamental concern today to be able to bring higher percentages of renewable electricity into the energy mix as these sources are climate-frindly and unlimited. However, intermittent nature of power output from renewable energy sources, in particular wind and solar, introduces potential technical impacts that affect quality of power observed including voltage fluctuations, power fluctuations, overloading of distribution transformers and voltage and current harmonics injection into the network. This study developed a simulation model with power system simulation software PSS Sincal to investigate the potential adverse impact of large-scale renewable energy (RE) penetration into the Rockhampton power networks, Queensland, Australia. From the model analyses, it has been clearly evident that large-scale RE integration not only influence in the low voltage distribution network but it also influence in the transmission, subtransmission and high voltage (HV) distribution network in terms of power quality issues such as voltage fluctuations, overloading of transformers and injection of harmonics.
机译:当前的电力系统由于利用化石燃料,特别是煤炭,将二氧化碳排放到大气中,从而对环境以及全球变暖产生了影响。因此,当今至关重要的是能够将更高比例的可再生电力纳入能源结构,因为这些来源不受气候影响且不受限制。但是,可再生能源(尤其是风能和太阳能)的输出功率的间歇性会带来潜在的技术影响,这些技术影响会影响所观察到的功率质量,包括电压波动,功率波动,配电变压器的过载以及向网络注入的电压和电流谐波。这项研究使用电力系统仿真软件PSS Sincal开发了一个仿真模型,以研究大规模可再生能源(RE)渗透到澳大利亚昆士兰州Rockhampton电网中的潜在不利影响。从模型分析中可以清楚地看出,大规模可再生能源集成不仅会影响低压配电网,而且还会在诸如电能质量等方面影响传输,子传输和高压配电网。电压波动,变压器过载和谐波注入。

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