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Design of a Scalable Hybrid MAC Protocol for Heterogeneous M2M Networks

机译:异构M2M网络的可扩展混合MAC协议设计。

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A robust and resilient medium access control (MAC) protocol is crucial for numerous machine-type devices to concurrently access the channel in a machine-to-machine (M2M) network. Simplex (reservation- or contention-based) MAC protocols are studied in most literatures which may not be able to provide a scalable solution for M2M networks with large number of heterogeneous devices. In this paper, a scalable hybrid MAC protocol, which consists of a contention period and a transmission period, is designed for heterogeneous M2M networks. In this protocol, different devices with preset priorities (hierarchical contending probabilities) first contend the transmission opportunities following the convention-based p-persistent carrier sense multiple access (CSMA) mechanism. Only the successful devices will be assigned a time slot for transmission following the reservation-based time-division multiple access (TDMA) mechanism. If the devices failed in contention at previous frame, to ensure the fairness among all devices, their contending priorities will be raised by increasing their contending probabilities at the next frame. To balance the tradeoff between the contention and transmission period in each frame, an optimization problem is formulated to maximize the channel utility by finding the key design parameters: the contention duration, initial contending probability, and the incremental indicator. Analytical and simulation results demonstrate the effectiveness of the proposed hybrid MAC protocol.
机译:健壮且有弹性的媒体访问控制(MAC)协议对于众多机器类型的设备同时访问机器对机器(M2M)网络中的通道至关重要。在大多数文献中都研究了单纯形(基于保留或基于竞争的)MAC协议,这些协议可能无法为具有大量异构设备的M2M网络提供可扩展的解决方案。本文针对异构M2M网络设计了一种由竞争周期和传输周期组成的可扩展混合MAC协议。在此协议中,具有预设优先级(分层竞争概率)的不同设备首先遵循基于约定的p持久载波侦听多路访问(CSMA)机制,争夺传输机会。遵循基于预留的时分多址(TDMA)机制,仅为成功的设备分配一个时隙进行传输。如果设备在前一帧竞争失败,为了确保所有设备之间的公平性,将通过增加下一帧的竞争概率来提高其竞争优先级。为了在每个帧的争用和传输周期之间取得平衡,提出了一个优化问题,通过查找关键设计参数来最大化信道效用:竞争持续时间,初始竞争概率和增量指标。分析和仿真结果证明了所提出的混合MAC协议的有效性。

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