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Polynomial Method for PLL Controller Optimization

机译:PLL控制器优化的多项式方法

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摘要

The Phase-Locked Loop (PLL) is a key component of modern electronic communication and control systems. PLL is designed to extract signals from transmission channels. It plays an important role in systems where it is required to estimate the phase of a received signal, such as carrier tracking from global positioning system satellites. In order to robustly provide centimeter-level accuracy, it is crucial for the PLL to estimate the instantaneous phase of an incoming signal which is usually buried in random noise or some type of interference. This paper presents an approach that utilizes the recent development in the semi-definite programming and sum-of-squares field. A Lyapunov function will be searched as the certificate of the pull-in range of the PLL system. Moreover, a polynomial design procedure is proposed to further refine the controller parameters for system response away from the equilibrium point. Several simulation results as well as an experiment result are provided to show the effectiveness of this approach.
机译:锁相环(PLL)是现代电子通信和控制系统的关键组件。 PLL旨在从传输通道中提取信号。它在需要估计接收信号相位的系统中起着重要作用,例如从全球定位系统卫星进行的载波跟踪。为了稳健地提供厘米级的精度,至关重要的是,PLL估计输入信号的瞬时相位,该信号通常埋在随机噪声或某种类型的干扰中。本文提出了一种利用半定规划和平方和领域中最新发展的方法。将搜索Lyapunov功能作为PLL系统的插入范围的证书。此外,提出了多项式设计程序来进一步优化控制器参数,以使系统响应远离平衡点。提供了一些仿真结果和实验结果,以证明该方法的有效性。

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