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首页> 外文期刊>IEEE Transactions on Parallel and Distributed Systems >Attached-RTS: Eliminating an Exposed Terminal Problem in Wireless Networks
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Attached-RTS: Eliminating an Exposed Terminal Problem in Wireless Networks

机译:Attached-RTS:消除无线网络中暴露的终端问题

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Leveraging concurrent transmission is a promising way to improve throughput in wireless networks. Existing media access control (MAC) protocols like carrier sense multiple access always try to minimize the number of concurrent transmissions to avoid collision, although collisions at sender sides are harmless to the overall performance. The reason for such conservative strategy is that those protocols cannot obtain accurate channel status (who is transmitting and receiving) with low cost. They can only avoid potential collisions through rough channel status (idle or busy). To obtain additional information in a cost-efficient way, we propose a novel coding scheme, Attachment Coding, to allow control information to be “attached” on data packet. Nodes then transmit two kinds of signals simultaneously, without degrading the effective throughput of the original data traffic. Based on Attachment Coding, we propose an Attached-RTS MAC (AR-MAC) to exploit exposed terminals for concurrent transmissions. The attached control information provides accurate channel status for nodes in real time. Therefore, nodes can identify exposed terminals and utilize them for concurrent transmission. We theoretically analyze the feasibility of Attachment Coding, and implement it on the GNU Radio testbed to further verify it. We also conduct extensive simulations to evaluate the performance of Attached-RTS. The experimental results show that by leveraging Attachment Coding, AR-MAC achieves up to 180 percent in dense deployed ad hoc networks.
机译:利用并发传输是提高无线网络吞吐量的一种有前途的方法。现有的媒体访问控制(MAC)协议(例如,载波侦听多路访问)始终尝试尽量减少并发传输的数量,以避免冲突,尽管发送方的冲突对整体性能无害。采用这种保守策略的原因是那些协议无法以低成本获得准确的信道状态(正在发送和接收的信道状态)。它们只能通过粗糙的信道状态(空闲或忙碌)来避免潜在的冲突。为了以经济高效的方式获取其他信息,我们提出了一种新颖的编码方案,即附件编码,以允许将控制信息“附加”在数据包上。节点然后同时传输两种信号,而不会降低原始数据流量的有效吞吐量。基于附件编码,我们提出了一个附件RTS MAC(AR-MAC),以利用裸露的终端进行并发传输。随附的控制信息可实时为节点提供准确的信道状态。因此,节点可以识别暴露的终端并将其用于并发传输。我们从理论上分析了附件编码的可行性,并在GNU Radio测试平台上对其进行了进一步的验证。我们还进行了广泛的仿真,以评估Attached-RTS的性能。实验结果表明,通过利用附件编码,AR-MAC在密集部署的自组织网络中可实现高达180%的性能。

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