多径信道上UWB无线电并发发送和接收的可行性

Ricardo Gandia Sanchez, Xiaojing Huang, Kwan-Wu Chin
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引用次数: 2

摘要

无线网状网络上的多跳传输呈现有限的端到端(E2E)数据速率,因为每一跳在开始重传之前都要等待整个数据包到达。也就是说,端到端数据速率在每一跳存储和转发报文的过程中会下降,因此不适合多媒体应用。在这项工作中,为了提高数据速率,我们提出了一种能够同时发送和接收(cTxRx)数据包的超宽带(UWB)无线电收发器。然而,同时接收和发送的代价是信道模型的干扰水平增加。在此,我们解释了一种新的干扰模型,并提出了一种补偿它的收发器。我们对收发器进行了数学描述,并通过仿真分析了其性能。此外,我们还证明了端到端数据速率超过了当前的多跳传输速率,从而允许多媒体流量在多跳无线网状网络上传输。
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Viability of concurrent transmission and reception for UWB radios over multipath channels
Multihop transmissions over wireless mesh networks present limited end-to-end (E2E) data rates, as every hop waits for an entire packet to arrive before starting retransmission. That is, the E2E data rate drops when every hop stores and then forwards packets, thus making such transmissions unsuitable for multimedia applications. In this work, in order to increase data rates, we present an ultra-wideband (UWB) radio transceiver capable of concurrently transmit and receive (cTxRx) packets. However, concurrently receiving and transmitting comes at the cost of a channel model with increased interference level. Herein, we explain a new interference model and propose a transceiver that compensates for it. We describe the transceiver mathematically and analyze its performance via simulations. Also, we demonstrate that the E2E data rate exceeds that of current multihop transmissions, thus allowing multimedia traffic to be transmitted over a multi-hop wireless mesh network.
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