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Multi-objective voltage optimisation trade-off assessment for coupled HV and LV networks

机译:高压和低压网络的多目标电压优化权衡评估

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Real-time HV and LV network voltage optimisation and control are receiving significant attention from both academia and industry as a means of reducing consumer power consumption and increasing the capacity for utilization of low carbon technologies. In this study, a multi-objective optimisation problem involving the twin objectives of HV network loss reduction and LV network energy consumption reduction is considered. The potential trade-off that may exist between these two objectives is investigated using a detailed openDSS simulation of a coupled HV/LV network in the greater Manchester area in the UK. Optimisation of the voltage control devices is performed using a warm start oriented discrete coordinate descent method with a decomposition weighting technique employed to assess the trade-off between the objectives. The results show that, while a trade-off does exist, the much larger scale of LV energy reduction compared to the increase in HV losses means that the latter dominates the optimisation. When the objective functions are given equal weighting an 8.3% and 10.1% reduction is achieved in LV energy consumption and HV energy loss, respectively, compared to nominal operation.
机译:实时高压和低压网络电压的优化和控制正受到学术界和工业界的广泛关注,这是减少消费者功耗并提高低碳技术利用能力的一种手段。在这项研究中,考虑了涉及降低HV网络损耗和降低LV网络能耗的双重目标的多目标优化问题。在英国大曼彻斯特地区,通过对HV / LV耦合网络进行详细的openDSS仿真,研究了这两个目标之间可能存在的潜在权衡。电压控制设备的优化是通过使用热启动定向离散坐标下降法和分解加权技术来评估目标之间的权衡来进行的。结果表明,尽管确实存在折衷,但与HV损失的增加相比,LV能量减少的规模要大得多,这意味着后者主导了优化。与标称运行相比,当目标函数被赋予相等权重时,LV能耗和HV能耗分别降低8.3%和10.1%。

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