多跳无线网络中基于链路调度的MAC设计

Xuan Dong, Yinjia Huo, Chunsheng Zhu, Shaohe Lv, Wenxiang Li, Xiaodong Wang
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引用次数: 2

摘要

由于隐藏终端的冲突,极大地限制了自组织网络的性能。在本文中,我们提出了一种接收机跟踪争用(RTC)方案,该方案通过允许接收机协助信道争用来实现高吞吐量。在RTC中,链路是信道访问争用的基本单位。具体来说,发射器用于争夺信道,接收器用于宣布潜在的碰撞。基于INT报文编码方案,可以很好地协调发送端与接收端之间的通信。在这种机制中,避免隐藏终端,鼓励暴露终端同时传输。基于OFDM调制,RTC将多个子载波分组作为子争用单元,并在多个子争用单元上进行信道争用。此外,每个子争用单元维护一个传输集,允许无冲突链路合并到传输集中,这样就可以在每个争用周期后聚合子争用单元的传输集。当子竞争单元i为非空子竞争单元的最小索引时,第i单元的传输集将赢得信道竞争,第i单元的发射机将在下一个数据传输周期开始传输。分析和仿真结果表明,RTC比Back2f实现了高达190%的吞吐量增益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
RTC: Link schedule based MAC design in multi-hop wireless network
The performance of an ad-hoc network is greatly limited by collisions due to hidden terminals. In this paper, we propose a receiver tracking contention (RTC) scheme, which achieves high throughput by allowing the receivers to assist for channel contention. In RTC, link is the basic unit for channel access contention. Specifically, transmitter is used to contend for the channel and receiver is used to announce the potential collision. Based on INT message coding scheme, transmitter and its corresponding receiver can be well coordinated. In such mechanism, hidden terminals are avoided and exposed terminals are encouraged to transmit simultaneously. Based on OFDM modulation, RTC packets several subcarriers as subcontention unit and operates channel contention over multiple subcontention units. Furthermore, each subcontention unit maintains a transmission set, where collision-free links are allowed to merged into the transmission set In this case, the transmission set of subcontention unit can be aggregated after each contention period. When the subcontention unit i is the smallest index of non-empty subcontention unit, the transmission set of unit i will win the channel contention and transmitters of unit i will start to transmit in the following data transmission period. Analysis and simulation results show that RTC achieves a notable throughput gain over Back2f as high as 190% through simulation.
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