基于软件定义无线电的协同传输集群时间同步

Yong Jun Chang, M. A. Ingram, R. Frazier
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引用次数: 49

摘要

摘要:本文考虑了一组协同软件定义无线电(sdr)并发传输的时间同步问题。在这种类型的协同传输(CT)中,每个协作节点从从一个源或另一个集群接收的信号中自主地获得定时。由SDR处理延迟引起的时序错误,会导致目的节点接收到的信号延迟扩展过大。为了减少这些定时错误,我们建议中继使用嵌入的时间戳在发射之前将数据包保存一段固定的时间。该方法已在室内非视距信道中实现,用于两跳网络(源-集群-目的地),使用64 kbps BFSK,非相干解调和基于正交载波的多达四个分集信道。给出了误码率(BER)和测量的RTTSs的累积分布函数(CDF),作为发射功率和合作者数的函数。平均rtts约为50 ns。本文还介绍了一个“乒乓球”实验的结果,在这个实验中,一个数据包在两个集群之间来回传输。给出了RTTS前10跳的CDFs,显示了第二跳之后的稳定统计。
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Cluster Transmission Time Synchronization for Cooperative Transmission Using Software-Defined Radio
Abstract-We consider the time synchronization of concurrent transmissions from a cluster of cooperating software-defined radios (SDRs). In this type of cooperative transmission (CT), each cooperating node derives its timing autonomously from a signal received from a source or another cluster. Timing errors, caused by SDR processing delays, cause excessively high delay spreads of the signal received at the destination node. To reduce these timing errors, we propose that relays use embedded time stamps to hold the packet for a fixed period before firing. The method has been implemented in an indoor non-line-of-sight channel, for a twohop network (source-cluster-destination), using 64 kbps BFSK, non-coherent demodulation, and up to four diversity channels based on orthogonal carriers. The bit error rate (BER) and the measured cumulative distribution function (CDF) for the rms transmit time spreads (RTTSs) are presented, as functions of transmit power and number of cooperators. Mean RTTSs on the order of 50 ns are achieved. Also presented are the results of a “ping pong” experiment, in which a packet is transmitted back and forth between two clusters. CDFs of the RTTS for the first 10 hops are given, showing stable statistics after the second hop.
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