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Data-Driven Modeling of Wireless Power Transfer Systems With Multiple Transmitters

机译:多发射机无线电力传输系统的数据驱动建模

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This article develops a new method of data-driven modeling for a class of multiple-transmitter single-receiver wireless power transfer (WPT) systems. A continuous-time multiple-input single-output (MISO) model with pure time delays is used to characterize the input-output behavior of the system, where the transfer functions associated with each input channel are not constrained to have the same denominator. Moreover, the time delays are allowed to be a fraction of the sampling interval in order to account for the delay effects that stem from circuit components and wireless communication, which are, by nature, often a fraction of the sampling interval. An optimal refined instrumental variable method is proposed to estimate the parameters and time delays of the MISO model based on sampled input-output data. In contrast to the conventional circuit-theory-based modeling methods that rely on circuit parameters and result in models which are often complex, the proposed data-based method yields parsimonious models, whose parameters are directly estimated from input-output data. Due to the easy availability of sampled data in control engineering applications, the proposed method is clearly more user-friendly, having a broad prospect for efficient operation of WPT systems, such as prediction, optimization, and control. Numerical and experimental results are presented to validate the effectiveness and merit of the proposed method.
机译:本文开发了一类多变送器单接收器无线电力传输(WPT)系统的数据驱动建模的新方法。具有纯度延迟的连续多输入单输出(MISO)模型用于表征系统的输入 - 输出行为,其中与每个输入通道相关联的传输功能不约束以具有相同的分母。此外,允许时间延迟是采样间隔的一部分,以便考虑源于电路元件和无线通信的延迟效应,这通常是采样间隔的分数。建议基于采样输入输出数据估计MISO模型的参数和时间延迟的最佳精细仪器变量方法。与依赖电路参数的传统电路理论的建模方法相比,依赖于电路参数的模型,并且通常复杂的模型,所提出的基于数据的方法产生了解析模型,其参数从输入输出数据直接估计。由于对控制工程应用中的采样数据的简单可用性,所提出的方法显然是用户友好的,具有广泛的应用WPT系统,例如预测,优化和控制。提出了数值和实验结果,以验证所提出的方法的有效性和优点。

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