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Performance Evaluation of Framed Slotted ALOHA with Reservation Packets for M2M Networks

机译:带有预留数据包的M2M网络成帧时隙ALOHA的性能评估

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In the near future, it is expected that a large number of machine-to-machine (M2M) communication devices will provide with ubiquitous information and services. Random access protocols like ALOHA ans CSMA have been considered for M2M networks for their simplicity of operation. This paper evaluates the performance of a Frame Slotted-ALOHA protocol that deploys reservation and data packets (FSA-RDP), in a scenario where a controller node collect data packets transmitted by a finite number of M2M devices. In FSA-RDP, frames of variable length 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. Two queue disciplines are considered, the First In First Out - Blocking (FIFO-BL) and the Last In First Out - Push-Out (LIFO-PO). We develop a discrete time Markov chain to derive the protocol efficiency. For the FSARDP protocol, we also derive the cumulative distribution function of the delay for data packets that are successfully transmitted, when deploying both queue disciplines. Numerical results show that the protocol efficiency of FSA-RDP is between one and two orders of magnitude larger than the efficiency of the conventional Frame Slotted ALOHA. In addition, we show that the difference between the packet delay for FIFO-BL and LIFO-PO is only significant in scenarios with high load and high collision rate.
机译:在不久的将来,预计大量的机器对机器(M2M)通信设备将提供无处不在的信息和服务。 M2M网络已经考虑到像ALOHA和CSMA这样的随机访问协议,因为它们的操作简单。在控制器节点收集有限数量的M2M设备传输的数据包的情况下,本文评估了部署预留和数据包(FSA-RDP)的帧时隙ALOHA协议的性能。在FSA-RDP中,可变长度的帧分为两部分,预留子帧和数据子帧。在预留子帧期间,活动设备将短预留包发送到控制器。控制器将数据子帧中的预留时隙分配给那些成功进行预留的设备。考虑了两个队列规则,先进先出-阻塞(FIFO-BL)和后进先出-推出(LIFO-PO)。我们开发了离散时间马尔可夫链来得出协议效率。对于FSARDP协议,当部署两个队列规则时,我们还导出成功传输的数据包的延迟的累积分布函数。数值结果表明,FSA-RDP的协议效率比常规帧时隙ALOHA的效率高一到两个数量级。此外,我们表明,FIFO-BL和LIFO-PO的数据包延迟之间的差异仅在高负载和高冲突率的情况下才有意义。

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