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Hybrid Random Access and Data Transmission Protocol for Machine-to-Machine Communications in Cellular Networks

机译:蜂窝网络中机器对机器通信的混合随机访问和数据传输协议

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摘要

To address random access channel (RACH) congestion and high signaling overhead problems of machine-to-machine (M2M) communication in cellular networks, we propose a new design of a random access procedure that is exclusively engineered for the M2M communication. Our design has two prominent features. One is a fast signaling process that allows M2M user equipment to transmit data right after preamble transmission on a physical RACH to reduce the signaling overhead. The other is a self-optimization feature that allows the cellular system to produce optimal M2M throughput by adaptively changing resource block (RB) composition and an access barring parameter according to the amount of available RBs and the M2M traffic load. We derive a closed-form analytic formula for the M2M traffic throughput and propose a joint adaptive resource allocation and access barring scheme based on the analytic results. By simulation, we show that the proposed scheme exhibits a near-optimal performance in terms of the capacity.
机译:为了解决蜂窝网络中机器对机器(M2M)通信的随机访问信道(RACH)拥塞和高信令开销问题,我们提出了一种专为M2M通信设计的随机访问过程的新设计。我们的设计有两个突出的特点。一种是快速信令过程,其允许M2M用户设备在物理RACH上的前同步码传输之后立即传输数据,以减少信令开销。另一个是自优化功能,该功能允许蜂窝系统通过根据可用RB的数量和M2M流量负载来自适应地更改资源块(RB)组成和访问限制参数,从而产生最佳的M2M吞吐量。我们推导了M2M流量吞吐量的封闭式解析公式,并基于解析结果提出了一种联合的自适应资源分配和访问限制方案。通过仿真,我们证明了所提出的方案在容量方面表现出接近最佳的性能。

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