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Type Based Estimation Over Multiaccess Channels

机译:多路访问信道上基于类型的估计

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摘要

We study the problem of communicating sensor readings over a Gaussian multiaccess channel. We focus on the scenario that each sensor observes a single random variable and transmits it using certain signaling in a shared channel. The objective is the design of channel waveforms (i.e., the signal constellation) to facilitate the estimation of field parameters from the channel output. We propose a communication scheme in which sensors transmit according to the type of their observations--type-based multiple access (TBMA)--and show that the TBMA is asymptotically optimal in the limit of large number of sensors if the sensor channel-gains are identical. In particular, we show that TBMA together with a variant of the maximum-likelihood estimator achieves the Cramer-Rao bound asymptotically. We then extend the asymptotic analysis of TBMA to fading channels and compare the performance of TBMA with other orthogonal allocation methods such as time-division multiple access.
机译:我们研究了通过高斯多路访问通道传送传感器读数的问题。我们关注于每个传感器观察到一个随机变量并在共享信道中使用某些信令传输它的情况。目的是设计信道波形(即,信号星座图),以便于从信道输出估计场参数。我们提出了一种通信方案,其中传感器根据其观察的类型进行传输-基于类型的多路访问(TBMA)-并且表明如果传感器通道增益,则TBMA在大量传感器的极限中是渐近最优的都是一样的特别是,我们表明TBMA与最大似然估计量的变体一起渐近地实现了Cramer-Rao界。然后,我们将TBMA的渐近分析扩展到衰落信道,并将TBMA的性能与其他正交分配方法(例如时分多址)进行比较。

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