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Asymptotically Efficient Multichannel Estimation for Opportunistic Spectrum Access

机译:机会频谱接入的渐近有效多通道估计

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The problem of estimating the parameters of multiple independent continuous-time Markov on-off processes is considered. The objective is to minimize the total mean square error (MSE) under a constraint on the total sensing time. The Fisher information matrix for the primary traffic model and the maximum likelihood estimator are obtained. A sequential estimation strategy is proposed which operates under an epoch structure with growing epoch length. Specifically, the total sensing time in the current epoch is allocated among the on-off processes based on the current estimates of the parameters using observations obtained in previous epochs. It is shown that this sequential estimation strategy is asymptotically efficient as the total sensing time increases. This result finds application in opportunistic spectrum access where secondary users need to estimate the channel occupancy model of the primary system for efficient exploitation of spectrum opportunities.
机译:考虑了估计多个独立的连续时间马尔可夫开关过程的参数的问题。目的是在对总感测时间的约束下使总均方误差(MSE)最小化。获得了主要交通模型的Fisher信息矩阵和最大似然估计器。提出了一种顺序估计策略,该策略在具有增加的历元长度的历元结构下运行。具体地,使用在先前时期中获得的观察,基于参数的当前估计在当前时期中的总感测时间被分配在开-关过程之间。结果表明,随着总检测时间的增加,这种顺序估计策略渐近有效。该结果发现在机会频谱接入中的应用,其中次要用户需要估计主要系统的信道占用模型以有效地利用频谱机会。

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