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Mitigation strategies to minimize potential technical challenges of renewable energy integration

机译:缓解策略,以最大程度地减少可再生能源整合的潜在技术挑战

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摘要

A recent issue of increasing public focus is the need for robust, sustainable and climate friendly power systems that are intelligent, reliable and green. The intermittent nature of renewable energy generation and the associated power electronic inverters creates a number of potential challenges in integrating large-scale renewable energy (RE) into the grid that affects power quality of the distribution network. Therefore, this study initially, investigates the potential technical impacts in particular voltage regulation, active and reactive power variations, transformer loading and current and voltage harmonics causes with RE integration. Then, to reduce the level of impacts observed, STATCOM and energy storage system (both optimised) were integrated into the network that ensures a smooth power supply to the customers. As a case study, the Berserker Street Feeder, Frenchville Substation under Rockhampton distribution network, Central Queensland, Australia has been considered. Similar analyses also carried out with the IEEE 13 bus network to investigate the potential technical challenges of RE integration and identify suitable mitigation measures. Results shows that integration of both optimised STATCOM and energy storage enhances the overall power quality of the power network as it improves voltage regulation, power distribution, and transformer utilisation and reduce total harmonic distortion of the power network.
机译:最近越来越引起公众关注的问题是,需要智能,可靠和绿色的健壮,可持续和气候友好型电力系统。可再生能源发电和相关电力电子逆变器的间歇性在将大规模可再生能源(RE)集成到电网中时会产生许多潜在的挑战,从而影响配电网络的电能质量。因此,本研究首先研究了潜在的技术影响,特别是电压调节,有功和无功功率变化,变压器负载以及RE集成引起的电流和电压谐波。然后,为了降低所观察到的影响程度,将STATCOM和能量存储系统(均经过优化)集成到网络中,以确保为客户提供平稳的电源。作为一个案例研究,已经考虑了澳大利亚昆士兰州中部洛克汉普顿配电网络下的弗里斯维尔变电站的狂战士街馈线。 IEEE 13总线网络也进行了类似的分析,以研究RE集成的潜在技术挑战并确定合适的缓解措施。结果表明,优化的STATCOM和能量存储的集成提高了电网的整体电能质量,因为它改善了电压调节,配电和变压器利用率,并降低了电网的总谐波失真。

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