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Decentralized Wireless Networks With Asynchronous Users and Burst Transmissions

机译:具有异步用户和突发传输的分散式无线网络

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This paper studies a decentralized wireless network of asynchronous transmitter–receiver pairs with burst transmissions. Each receiver learns about the number of active users, channel coefficients, and mutual delays based on locally available measurements. The estimates for the mutual delays are not perfect, however, they are reliable enough to guarantee successful decoding. Two signalling schemes are addressed, namely, randomized masking (RM) and reduced cycle transmission (RCT). Under RM, the symbols of a codeword are generated according to a Bernoulli–Gaussian distribution with activity factor . This is in contrast to RCT where each codeword consists of Gaussian symbols followed by zeros. Assuming the transmitters are unaware of the number of users, channel coefficients, and mutual delays, the probability of outage under RM is considerably lower compared with RCT if the signal-to-noise ratio (SNR) is sufficiently large. A generalized RCT scheme is also examined where the zero symbols are not necessarily located at the end of a codeword. In the asymptote of large SNR, the outage probability becomes vanishingly small under RM, however, it is bounded away from zero for generalized RCT regardless of the value of SNR.
机译:本文研究了具有突发传输的异步收发器对的分散无线网络。每个接收器基于本地可用的测量来了解活动用户的数量,信道系数和相互延迟。相互延迟的估计不是完美的,但是它们足够可靠以保证成功解码。解决了两种信令方案,即随机屏蔽(RM)和缩短周期传输(RCT)。在RM下,根据具有活动因子的Bernoulli–Gaussian分布生成代码字的符号。这与RCT相反,在RCT中,每个码字均由高斯符号后跟零组成。假设发射机不知道用户数量,信道系数和相互延迟,则如果信噪比(SNR)足够大,则与RCT相比,RM下的中断概率要低得多。还检查了通用RCT方案,其中零符号不一定位于代码字的末尾。在大SNR的渐近线中,中断概率在RM下变得越来越小,但是,对于广义RCT,不管SNR值如何,中断概率都定为零。

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