机器类型通信中基于能量和qos感知的争用介质访问控制

Masoumeh Mokhtari Karchegani, B. S. Ghahfarokhi
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引用次数: 2

摘要

机器类型通信(MTC)的特殊特性给5G移动网络带来了新的挑战,包括介质访问控制(MAC)机制。传统的基于争用的MAC方法无法处理大量的并发请求。另一方面,最近的mtc方法没有充分考虑到机器的能量消耗以及QoS。本文提出了一种基于p-persistent CSMA的基于争用的海量接入协议方法,该方法同时考虑了机器的能量和时延需求,并在每个时间帧开始时利用BS求解一个多目标优化问题,根据机器数量及其与BS的距离找到传输概率的最优值。优化问题的目标是实现最大的能源效率和最小的接入延迟。为了避免求解优化问题的开销,概率值由机器根据其延迟需求和最近访问失败的次数在每个时隙结束时临时更新。仿真结果表明,传输成功次数显著增加,访问时间显著缩短,吞吐量和能耗显著提高。
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Energy and QoS-Aware Contention-Based Medium Access Control in Machine-Type Communications
Special characteristics of Machine-Type Communications (MTC) result in new challenges in 5G mobile networks including Medium Access Control (MAC) mechanisms. The traditional methods for contention-based MAC are unable to manage a massive number of simultaneous requests. On another side, recent methods for MTCs have not adequately attended to energy consumption of machines along with QoS. In this paper, a method for contention-based massive access protocol is presented based on p-persistent CSMA which considers both energy and delay requirement of machines, a multi-objective optimization problem is solved by BS at the beginning of each time frame in order to find the optimum value of transmission probability based on the number of machines and their distances from the BS. The optimization problem aims at achieving maximum energy efficiency and minimum access delay. To avoid the overhead of solving the optimization problem, the value of probability is temporarily updated by the machine at the end of each time slot, based on its delay requirement and the number of its recent access failures. The simulation results show a considerable increase in the number of successful transmissions, a decrease in access time and improvements in throughput and energy consumption.
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