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Load Estimation of Complex Power Networks from Transformer Measurements and Forecasted Loads

机译:从变压器测量和预测负载负载复杂电网的估计

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摘要

This paper presents a load estimation method applicable to complex power networks (namely, heavily meshed secondary networks) based on available network transformer measurements. The method consists of three steps: network reduction, load forecasting, and state estimation. The network is first mathematically reduced to the terminals of loads and measurement points. A load forecasting approach based on temperature is proposed to solve the network unobservability. The relationship between outdoor temperature and power consumption is studied. A power-temperature curve, a nonlinear function, is obtained to forecast loads as the temperature varies. An “effective temperature” reflecting complex weather conditions (sun irradiation, humidity, rain, etc.) is introduced to properly consider the effect on the power consumption of cooling and heating devices. State estimation is adopted to compute loads using network transformer measurements and forecasted loads. Experiments conducted on a real secondary network in New York City with 1040 buses verify the effectiveness of the proposed method.
机译:本文介绍了一种基于可用网络变压器测量的复杂电网(即大量网格化的二级网络)的负载估计方法。该方法包括三个步骤:网络减少,负载预测和状态估计。首先将网络数学减少到负载和测量点的终端。提出了一种基于温度的负载预测方法来解决网络不可观察性。研究了室外温度与功耗之间的关系。获得电力温度曲线,非线性功能是在温度变化时预测负载的。引入了反映复杂天气条件(防晒,湿度,雨等)的“有效温度”以适当地考虑对冷却和加热装置的功耗的影响。采用国家估计来计算使用网络变压器测量和预测负载来计算负载。在纽约市的真正二级网络中进行的实验,有1040公共汽车验证了该方法的有效性。

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