A soft open point (SOP) is a power electronic device, usually using ba的英语翻译

A soft open point (SOP) is a power

A soft open point (SOP) is a power electronic device, usually using back-to-back voltage source converters (VSCs), installed at a previously normally open point of a distribution network. Due to its flexible and accurate control of power flows, an SOP is versatile, and increasingly being considered to mitigate voltage and thermal constraints in medium voltage (MV) networks with high penetrations of distributed generation (DG). A Jacobian matrix - based sensitivity method was used to define the operating region of an SOP when the grids/feeders at the two terminals of the SOP have various load and generation conditions, and the SOP operating region was visualized in a graphical manner. The exact operating set-points were determined by adopting a non-linear optimization considering separately different objectives. The methodology was demonstrated on an 11 kV network, considering three optimization objectives with different DG penetrations and different network observabilities. Results showed that the use of an SOP significantly increases the network’s DG hosting capacity. The objective for voltage profile improvement increased the headroom of the voltage limits by the largest margin, at the expense of increased energy losses. In contrast the objectives to achieve line utilization balancing and energy loss minimization showed the most improvement in circuit utilization and in limiting energy losses. The work helps electricity network operators to visualize an SOP’s operation status, and provides high level decision support, e.g. selecting control schemes and restraining SOP operational boundaries.
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A soft open point (SOP) is a power electronic device, usually using back-to-back voltage source converters (VSCs), installed at a previously normally open point of a distribution network. Due to its flexible and accurate control of power flows, an SOP is versatile, and increasingly being considered to mitigate voltage and thermal constraints in medium voltage (MV) networks with high penetrations of distributed generation (DG). A Jacobian matrix - based sensitivity method was used to define the operating region of an SOP when the grids/feeders at the two terminals of the SOP have various load and generation conditions, and the SOP operating region was visualized in a graphical manner. The exact operating set-points were determined by adopting a non-linear optimization considering separately different objectives. The methodology was demonstrated on an 11 kV network, considering three optimization objectives with different DG penetrations and different network observabilities. Results showed that the use of an SOP significantly increases the network’s DG hosting capacity. The objective for voltage profile improvement increased the headroom of the voltage limits by the largest margin, at the expense of increased energy losses. In contrast the objectives to achieve line utilization balancing and energy loss minimization showed the most improvement in circuit utilization and in limiting energy losses. The work helps electricity network operators to visualize an SOP’s operation status, and provides high level decision support, e.g. selecting control schemes and restraining SOP operational boundaries.
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软开点(SOP)是一种电力电子装置,通常使用背靠背电压源转换器(VSC),安装在配电网先前常开的点上。由于其对潮流的灵活而精确的控制,SOP具有通用性,并且越来越被认为是在分布式发电(DG)的高渗透性的中压(MV)网络中缓解电压和热约束。采用基于雅可比矩阵的灵敏度方法,确定了当SOP两端的电网/馈线具有不同的负载和发电条件时,SOP的工作区域以图形方式可视化。通过采用非线性优化方法,分别考虑不同的目标,确定了精确的操作设定点。该方法在11kv电网上进行了验证,考虑了不同DG穿透率和不同网络可观测性的三个优化目标。结果表明,使用SOP可以显著提高网络的DG托管容量。电压分布改善的目标是最大限度地增加电压限制的净空,但以增加能量损失为代价。相比之下,实现线路利用平衡和能量损失最小化的目标在电路利用率和限制能量损失方面表现出最大的改善。这项工作有助于电网运营商可视化标准操作程序的运行状态,并提供高层决策支持,例如选择控制方案和限制SOP操作边界。<br>
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