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Two-Way Transmission Capacity of Wireless Ad-hoc Networks

机译:无线自组网的双向传输能力

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摘要

The transmission capacity of an ad-hoc network is the maximum density of active transmitters per unit area, given an outage constraint at each receiver for a fixed rate of transmission. Most prior work on finding the transmission capacity of ad-hoc networks has focused only on one-way communication where a source communicates with a destination and no data is sent from the destination to the source. In practice, however, two-way or bidirectional data transmission is required to support control functions like packet acknowledgements and channel feedback. This paper extends the concept of transmission capacity to two-way wireless ad-hoc networks by incorporating the concept of a two-way outage with different rate requirements in both directions. Tight upper and lower bounds on the two-way transmission capacity are derived for frequency division duplexing. The obtained bounds are used to derive the optimal solution for bidirectional bandwidth allocation that maximizes the two-way transmission capacity, which is shown to perform better than allocating bandwidth proportional to the desired rate in both directions. Using the proposed two-way transmission capacity framework, a lower bound on the two-way transmission capacity with transmit beamforming using limited feedback is derived as a function of bandwidth and the number of bits allocated for feedback.
机译:在给定固定传输速率的情况下,每个接收器都受到中断的限制,自组织网络的传输容量是每单位面积活动发送器的最大密度。寻找ad-hoc网络的传输容量的大多数现有工作仅集中于单向通信,其中源与目标进行通信,并且没有数据从目标发送到源。然而,实际上,需要双向或双向数据传输来支持控制功能,如数据包确认和信道反馈。本文通过将双向中断的概念与双向速率不同的需求相结合,将传输容量的概念扩展到双向无线ad-hoc网络。对于频分双工,推导了双向传输容量上的上下限。所获得的边界用于导出双向带宽分配的最佳解决方案,该方案最大程度地提高了双向传输容量,这显示出比双向分配与所需速率成比例的带宽更好的性能。使用提出的双向传输容量框架,可以得出带宽受限和分配给反馈的位数的函数,即使用有限反馈的发送波束成形的双向传输容量的下限。

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