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Online voltage estimation and control for smart distribution networks

机译:智能配电网的在线电压估算和控制

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The increasing deployment of Distributed Generation (DG) technologies introduces power quality challenges to the grid, in particular steady state voltage rise at the connection point for DG units. In most distribution networks, control and monitoring of grid parameters is missing, as well as system security is at risk. Smart grid technologies have the capability to realize the real-time measurements and on-load voltage controls. With the steady implementation of smart grid technologies throughout the existing distribution networks, the online voltage control can be achieved ensuring the power quality and voltage levels within the statutory limits. This study presents a methodology for the estimation of voltage profile in a smart distribution network with DG for the online voltage control, taking into account different line X/R ratios and laterals. This method is based on maximum and minimum voltage estimation by remote terminal units (RTUs) placed only at DG connected bus and at capacitor connected bus. Voltage regulation is carried out based on RTUs estimated values. This work is tested on two radial distribution networks with/without DGs and laterals. Comparative results for voltage magnitudes estimated with different methodology are presented. The reported simulation results show that the method presented is capable of estimating the voltage profile along the distribution network with DGs for the online voltage control, considering different line X/R ratios and laterals.
机译:越来越多的分布式发电(DG)技术部署给电网带来了电能质量挑战,特别是DG装置的连接点处的稳态电压上升。在大多数配电网络中,缺少对网格参数的控制和监视,并且系统安全受到威胁。智能电网技术具有实现实时测量和有载电压控制的能力。通过在整个现有配电网络中稳定实施智能电网技术,可以实现在线电压控制,从而确保电能质量和电压水平在法定范围内。这项研究提出了一种利用DG在线估算电压的智能配电网中的电压分布的估算方法,同时考虑了不同的线X / R比和支路。此方法基于仅在DG连接的总线和电容器连接的总线上放置的远程终端单元(RTU)的最大和最小电压估算值。根据RTU的估算值进行电压调节。这项工作在两个带有/不带有DG和侧管的径向配电网上进行了测试。给出了用不同方法估算的电压幅度的比较结果。所报告的仿真结果表明,考虑到不同的线路X / R比率和支路,所提出的方法能够利用DG估算配电网沿配电网的电压分布,以进行在线电压控制。

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