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Second Order Volterra Filter for Appliance Modelling

机译:用于设备建模的二阶Volterra滤波器

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Availability of large quantities of residential electrical consumption data is bringing considerable attention towards load monitoring, load forecasting, load disaggregation and demand response. Load modelling is the first and most essential step in achieving all the above said tasks. Even though many appliance modelling schemes are presented in the literature, no considerably influential work has been done on modelling appliances under voltage fluctuating environment. Motivated by this fact, we present the design and analysis of a Volterra based appliance modelling scheme which can be used in a voltage fluctuating environment. Principles of Volterra filter, least mean square algorithm for Volterra filter coefficient approximation and applicability of Volterra filter for appliance modelling are discussed. Further, a case study is presented to validate and identify the performance of the model using a data set obtained from a real household. Obtained results show that, Volterra filter can be utilized as an efficient tool for appliance modelling in a supply voltage fluctuating environment. Finally, how Volterra filter modelling can be extended to achieve the non intrusive load monitoring task is discussed.
机译:大量住宅用电量数据的可用性正引起人们对负荷监控,负荷预测,负荷分解和需求响应的极大关注。负载建模是完成上述所有任务的第一步,也是最基本的步骤。即使在文献中提出了许多器具建模方案,但是在电压波动环境下对器具建模仍未进行相当有影响力的工作。基于这一事实,我们提出了基于Volterra的设备建模方案的设计和分析,该方案可在电压波动的环境中使用。讨论了Volterra滤波器的原理,Volterra滤波器系数逼近的最小均方算法以及Volterra滤波器在设备建模中的适用性。此外,还提供了一个案例研究,以使用从真实家庭获得的数据集来验证和识别模型的性能。所得结果表明,Volterra滤波器可以用作在电源电压波动环境中进行设备建模的有效工具。最后,讨论了如何扩展Volterra滤波器建模以实现非侵入式负载监控任务。

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