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首页> 外文期刊>Wireless personal communications: An Internaional Journal >A Hybrid MAC Protocol with Multi-slot Reservation for Dense Wireless Ad-Hoc Networks
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A Hybrid MAC Protocol with Multi-slot Reservation for Dense Wireless Ad-Hoc Networks

机译:具有多槽预留的混合MAC协议,用于密集无线ad-hoc网络

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Dense wireless ad-hoc networks (DWAN) is developed with explosive growth of users and traffics, which means that the future network will bear more frequent and intensive communication services under the condition of limited spectrum resource. To meet the requirement of DWAN, an efficient medium access control (MAC) design has been a hot research topic. Towards the current MAC protocols, we mainly focus on addressing two issues in DWAN: (1) serious collisions; (2) low efficiency of spectrum utilization. In this paper, we propose a hybrid MAC with multi-slot reservation for DWAN, called MRPMAC, which is based upon the architecture of the carrier sense multiple access/collision avoidance and time division multiples access. In the proposed MRPMAC protocol, the network collisions are alleviated by using multi-slot reservation (MSR) scheme, and the frequency spectrum efficiency is improved through power control mechanism. Concretely, just with one handshake in the proposed MRPMAC protocol, multiple slots are reserved and multiple concurrent data transmissions are periodically initiated over single channel without collisions. Therefore, spectrum reusing can be achieved, the network throughput is greatly improved as well as quality of service can be ensured in DWAN. Furthermore, the upper bound of slot utilization in MRPMAC is analyzed. Through simulations using ns-2 simulator, we validate that the upper bound of throughput gain brought by power control scheme in MRPMAC is twice as high as pure MSR scheme, and demonstrate that system throughput of MRPMAC outperforms IEEE 802.11 DCF and POWMAC about 150 and , respectively.
机译:密集的无线ad-hoc网络(DWAN)是通过用户和流通的爆炸性增长而开发的,这意味着未来网络将在有限的频谱资源条件下承担更频繁和密集的通信服务。为满足DWAN的要求,有效的中途访问控制(MAC)设计是一个热门的研究主题。对目前的MAC协议,主要关注解决DWAN中的两个问题:(1)严重碰撞; (2)频谱利用率低。在本文中,我们向DWAN提出了一个混合MAC,称为MRPMAC的多时隙预留,其基于载波侦听多次访问/碰撞避免和时分倍数访问的架构。在所提出的MRPMAC协议中,通过使用多插槽预留(MSR)方案来缓解网络冲突,通过功率控制机制改善了频谱效率。具体而言,只需在提出的MRPMAC协议中的一个握手,就保留了多个时隙,并且在没有冲突的情况下通过单个通道定期发起多个并发数据传输。因此,可以实现频谱重用,网络吞吐量大大提高,并且在DWAN中可以确保服务质量。此外,分析了MRPMAC中的插槽利用的上限。通过使用NS-2模拟器的仿真,我们验证了MRPMAC中电源控制方案带来的吞吐量增益的上限是纯MSR方案的两倍,并证明MRPMAC的系统吞吐量IEEE 802.11 DCF和PowMac约150,分别。

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