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A Dynamic Access Probability Adjustment Strategy for Coded Random Access Schemes

机译:编码随机访问方案的动态访问概率调整策略

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摘要

In this paper, a dynamic access probability adjustment strategy for coded random access schemes based on successive interference cancellation (SIC) is proposed. The developed protocol consists of judiciously tuning the access probability, therefore controlling the number of transmitting users, in order to resolve medium access control (MAC) layer congestion states in high load conditions. The protocol is comprised of two steps: Estimation of the number of transmitting users during the current MAC frame and adjustment of the access probability to the subsequent MAC frame, based on the performed estimation. The estimation algorithm exploits a posteriori information, i.e., available information at the end of the SIC process, in particular it relies on both the frame configuration (residual number of collision slots) and the recovered users configuration (vector of recovered users) to effectively reduce (MSE). During the access probability adjustment phase, a target load threshold is employed, tailored to the packet loss rate in the finite frame length case. Simulation results revealed that the developed estimator was able to achieve remarkable performance owing to the information gathered from the SIC procedure. It also illustrated how the proposed dynamic access probability strategy can resolve congestion states efficiently.
机译:提出了一种基于连续干扰消除(SIC)的编码随机接入方案动态接入概率调整策略。所开发的协议包括明智地调整访问概率,因此控制传输用户的数量,以便解决高负载条件下的媒体访问控制(MAC)层拥塞状态。该协议包括两个步骤:基于执行的估计,估计当前MAC帧期间的发送用户数量,并调整对后续MAC帧的访问概率。估计算法利用后验信息,即SIC过程结束时的可用信息,尤其是它依赖于帧配置(冲突时隙的剩余数量)和恢复的用户配置(恢复的用户的向量)两者,以有效地减少(MSE)。在访问概率调整阶段,采用目标负载阈值,以适应有限帧长情况下的丢包率。仿真结果表明,由于从SIC程序中收集的信息,开发的估计器能够实现出色的性能。它还说明了所提出的动态访问概率策略如何有效地解决拥塞状态。

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