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Non-linear minimum variance state-space-based estimation for discrete-time multi-channel systems

机译:离散多通道系统基于非线性最小方差状态空间的估计

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摘要

A new state equation and non-linear operator-based approach to estimation is introduced for discrete-time multichannel systems. This is a type of deconvolution or inferential estimation problem, where a signal enters a communications channel involving both non-linearities and transport delays. The measurements are corrupted by a coloured noise signal, which is correlated with the signal to be estimated both at the inputs and outputs of the channel. The communications channel may include either static or dynamic non-linearities represented in a general non-linear operator form. The optimal non-linear estimator is derived in terms of the state equations and non-linear operators that describe the system. The algorithm is relatively simple to derive and to implement in the form of a recursive algorithm. The main advantage of the approach is the simplicity of the non-linear estimator theory and the straightforward structure of the resulting solution. The results may be applied to the solution of channel equalisation problems in communications or fault detection problems in control applications.
机译:针对离散时间多通道系统,引入了一种新的状态方程和基于非线性算子的估计方法。这是一种反卷积或推论估计问题,其中信号进入一个涉及非线性和传输延迟的通信信道。测量结果被有色噪声信号破坏,该噪声信号与通道的输入和输出处要估计的信号相关。通信信道可以包括以一般非线性算子形式表示的静态或动态非线性。最佳非线性估计器是根据描述系统的状态方程和非线性算子得出的。该算法相对容易以递归算法的形式导出和实现。该方法的主要优点是非线性估计器理论的简单性和所得解决方案的直接结构。该结果可用于解决通信中的信道均衡问题或控制应用中的故障检测问题。

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  • 来源
    《Signal Processing, IET》 |2011年第4期|p.365-378|共14页
  • 作者

    Grimble M.J.;

  • 作者单位

    Industrial Control Centre, University of Strathclyde, Graham Hills Building, 50 George Street, Glasgow G1 1QE, UK;

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  • 正文语种 eng
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