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Energy Efficient Resource Allocation for M2M Devices in LTE/LTE-A

机译:LTE / LTE-A中M2M设备的节能资源分配

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摘要

Machine-to-machine (M2M) communication consists of the communication between intelligent devices without human intervention. Long term evolution (LTE) and Long-term evolution-advanced (LTE-A) cellular networks technologies are excellent candidates to support M2M communication as they offer high data rates, low latencies, high capacities and more flexibility. However, M2M communication over LTE/LTE-A networks faces some challenges. One of these challenges is the management of resource radios especially on the uplink. LTE schedulers should be able to meet the needs of M2M devices, such as power management and the support of large number of devices, in addition to handling both human-to-human (H2H) and M2M communications. Motivated by the fundamental requirement of extending the battery lives of M2M devices and managing an LTE network system, including both M2M devices and H2H users, in this paper, two channel-aware scheduling algorithms on the uplink are proposed. Both of them consider the coexistence of H2H and M2M communications and aim to reduce energy consumption in M2M devices. The first algorithm, called FDPS-carrier-by-carrier modified (CBC-M), takes into account channel quality and power consumption while allocating radio resources. Our second algorithm, recursive maximum expansion modified (RME-M), offers a balance between delay requirement and energy consumption. Depending on the system requirements, RME-M considers both channel quality and system deadlines in an adjustable manner according to M2M devices needs. Simulation results show that the proposed schedulers outperform the round-robin scheduler in terms of energy efficiency and have better cell spectral efficiency.
机译:机器到机器(M2M)通信包括智能设备之间的通信,没有人为干预。长期演进(LTE)和长期演进 - 先进的(LTE-A)蜂窝网络技术是支持M2M通信的优秀候选者,因为它们提供高数据速率,低延迟,高容量以及更大的灵活性。然而,在LTE / LTE-A网络上的M2M通信面临一些挑战。其中一个挑战是尤其是在上行链路上的资源无线电管理。除了处理人对人(H2H)和M2M通信之外,LTE调度仪还应该能够满足M2M设备的需求,例如电源管理和大量设备的支持。通过扩展M2M设备的电池寿命并管理LTE网络系统的基本要求,包括M2M设备和H2H用户,提出了上行链路上的两个通道感知调度算法。两者都考虑H2H和M2M通信的共存,并旨在降低M2M设备中的能耗。在分配无线电资源的同时考虑信道质量和功耗,将第一算法称为FDPS - 乘舰修改(CBC-M)。我们的第二种算法,递归最大扩展修改(RME-M),在延迟要求和能耗之间提供平衡。根据系统要求,RME-M根据M2M设备的需求以可调方式考虑通道质量和系统截止日期。仿真结果表明,该提议的调度仪在能效方面优于循环调度器,具有更好的细胞谱效率。

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