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Performance evaluation of framed slotted ALOHA with reservation packets and succesive interference cancelation for M2M networks

机译:具有预约分组的框架开槽Aloha的性能评估和M2M网络的连续干扰取消

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Random access protocols like ALOHA have been considered for machine-to-machine (M2M) communication in future networks for their simplicity of operation. This paper evaluates the performance of a Frame Slotted-ALOHA protocol that uses reservation and data packets (FSA-RDP), in a scenario where a controller collects data packets transmitted by a finite number of M2M devices. In FSA-RDP, frames of variable duration are divided in two parts, the reservation and data subframes. During the reservation subframe, active devices send short reservation packets to the controller. The controller assigns reserved slots in the data subframe to those devices that succeeded with the reservation. At devices, the FIFO service discipline and two queue management schemes, tail drop and push-out, have been considered. When the queue size is of one packet, we develop a discrete-time Markov chain to evaluate the protocol performance, including the cumulative distribution function of the delay of data packets that are successfully transmitted. Analytical results are validated by extensive simulations. The simulation model is also used to evaluate the system performance when larger queues are used. In addition, we study the impact that implementing Successive Interference Cancellation (SIC) at the controller has on the system performance. We also evaluate the performance of implementing SIC at the controller together with Irregular Repetition Slotted ALOHA (IRSA) to send the reservation packets. Numerical results show that the protocol efficiency of FSA-RDP is between one and two orders of magnitude larger than the efficiency of conventional Frame Slotted ALOHA, when a perfect channel is assumed. In more realistic channel environments, the use of SIC brings an important performance boost. (C) 2019 Published by Elsevier B.V.
机译:随机访问协议如Aloha,以便在未来网络中考虑机器到机器(M2M)通信,以简化操作。本文评估使用预留和数据分组(FSA-RDP)的帧的开槽 - Aloha协议的性能,其中控制器收集由有限数量的M2M设备发送的数据分组。在FSA-RDP中,可变持续时间的帧分为两个部分,预留和数据子帧。在预留子帧期间,活动设备向控制器发送短程预留报文。控制器将数据子帧中的保留插槽分配给成功保留的那些设备。在设备上,已考虑FIFO服务学科和两个队列管理方案,尾部下降和推出。当队列大小为一个数据包时,我们开发一个离散时间马尔可夫链以评估协议性能,包括成功传输的数据包延迟的累积分布函数。通过广泛的模拟验证了分析结果。仿真模型还用于评估使用更大队列时的系统性能。此外,我们研究了在控制器上实施了连续干扰取消(SIC)对系统性能的影响。我们还评估了控制器在控制器上实现SIC以及不规则重复开槽的Aloha(IRSA)以发送预留包。数值结果表明,当假设完美通道时,FSA-RDP的协议效率大于传统帧开槽Aloha的效率的一个和两个数量级。在更现实的渠道环境中,使用SIC带来了一个重要的性能提升。 (c)2019年由elestvier b.v发布。

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