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Load signatures development via harmonic current vectors

机译:通过谐波电流矢量开发负载信号

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This paper examines the development of load signatures based on odd order harmonic current vectors. A measurement setup is developed, and measurements concerning stand-alone and combined operation of several appliances in steady state have been performed using the fundamental voltage phase angle as the angular reference. The proposed load signatures consist of the first three harmonic order currents and each one of them is considered a vector quantity. An alternative formulation that considers only the projections of these vectors on the x-axis is also proposed in order to simplify the load signatures structure. The disaggregation scheme regarding the NILM approach assumes that the contribution of each appliance's harmonic current to the aggregated one, under simultaneous operation of specific appliances, is linear and results by summation of the respective components. Results indicate that the accuracy of this approach is higher when harmonic currents are treated as vectors and their phase angle is taken into account in the computations. The proposed load signature formulation is simple, the linear approach for the disaggregation scheme is kept regardless the harmonic current vectors consideration and the results seem to be more accurate.
机译:本文研究了基于奇数阶谐波电流矢量的负载信号的发展。开发了一种测量设置,并已使用基本电压相角作为角度参考进行了有关几种电器在稳态下的独立运行和组合运行的测量。所提出的负载特征包括前三个谐波阶次电流,并且每个电流都被视为一个向量。还提出了一种仅考虑这些矢量在x轴上的投影的替代公式,以简化负载特征结构。关于NILM方法的分解方案假设在特定设备同时运行的情况下,每个设备的谐波电流对所聚集的谐波电流的贡献是线性的,并且是通过将各个组件求和而得出的。结果表明,将谐波电流作为矢量并将其相角考虑在内时,该方法的准确性更高。所提出的负载签名公式很简单,不管谐波电流矢量如何考虑,都可以使用线性方法进行分解,结果似乎更准确。

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