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A Modified Branch-Current Based Algorithm for Fast Low Voltage Distribution Grid State Estimation using Smart Meter Data

机译:一种用于快速低压分布网格状态估计的改进的分支电流算法使用智能电表数据

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We present a modified version of the branch-current based weighted-least-squares (WLS) state estimation for application in three-phase low-voltage power distribution grids with a single transformer connection to the superordinate medium-voltage level. Due to its low complexity, it is applicable for online power flow control algorithms that utilize measurements at high update rates. In our approach, voltage magnitude measurements are utilized to estimate the slack node voltage in a backward-sweep procedure separated from the WLS loop. As a result of excluding the voltage measurements from the WLS loop, the measurement functions are linear in the state variables as long as only power and power flow measurements are considered besides voltage measurements. Therefore, the computational complexity is significantly reduced compared to the straightforward way of including the nonlinear voltage magnitude measurement equations in the WLS loop. The proposed method is numerically evaluated in time-series simulations using various low-voltage benchmark grids. The results in terms of accuracy and speed are compared to the nonlinear node voltage based WLS approach as well as to a linear sensitivity-based method. It is shown that our algorithm yields an accuracy similar to the nonlinear WLS approach while requiring significantly less computation time.
机译:我们介绍了基于分支电流的加权 - 最小二乘(WLS)状态估计的修改版本,以便在三相低压配电网格中应用,具有与上级介质电压电平的单个变压器连接。由于其较低的复杂性,适用于在线电源流控制算法,该算法利用高更新速率测量。在我们的方法中,利用电压幅度测量来估计从WLS环路分离的后向扫描过程中的松弛节点电压。作为从WLS回路的电压测量排除的结果,测量功能在状态变量中是线性的,只要除了电压测量之外仅考虑电力和功率流量测量。因此,与包括WLS环路中的非线性电压幅度测量方程的直接方式相比,计算复杂性显着减少。使用各种低压基准网格的时间序列仿真在数量上评估所提出的方法。将精度和速度方面的结果与基于非线性节点电压的WLS方法以及基于线性灵敏度的方法进行比较。结果表明,我们的算法产生了类似于非线性WLS方法的精度,同时需要显着较少的计算时间。

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