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On the effects of monitoring and control settings on voltage control in PV-rich LV networks

机译:关于监测和控制设置对富pV低压电网电压控制的影响

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摘要

(accepted) Adopting on-load tap changer (OLTC)-fitted transformers in low voltage (LV) networks can be a potential solution to counteract voltage rise caused by high penetrations of residential photovoltaic (PV) systems. To efficiently control the OLTC network monitoring might be considered. This work assesses the performance of a proposed OLTC control logic considering different remote monitoring schemes and control cycles. A Monte Carlo-based time-series analysis is applied to a real UK residential LV network considering different uneven PV penetrations per feeder. Results show that the adoption of monitoring only at the end of each feeder can provide a satisfactory performance of customer voltages (BS EN50160 compliant). Additionally, the proposed control logic with a 30-minute control cycle can reduce the number of tap changes whilst producing a good voltage performance. The results can help distribution network operators determining the most adequate control approaches for OLTC-fitted transformers in future LV networks.
机译:(已接受)在低压(LV)网络中采用装有有载分接开关(OLTC)的变压器可能是抵消由住宅光伏(PV)系统的高渗透率引起的电压上升的潜在解决方案。为了有效地控制OLTC网络,可以考虑进行监视。这项工作考虑了不同的远程监视方案和控制周期,评估了提出的OLTC控制逻辑的性能。考虑到每个馈线的不均匀PV渗透率不同,将基于蒙特卡洛的时间序列分析应用于实际的英国居民低压网络。结果表明,仅在每个馈线的末端进行监视才能提供令人满意的客户电压性能(符合BS EN50160)。此外,建议的控制逻辑具有30分钟的控制周期,可以减少抽头变换的次数,同时产生良好的电压性能。结果可帮助配电网络运营商确定未来低压网络中适合OLTC的变压器的最适当控制方法。

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