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QoS-Aware Power-Efficient Scheduler for LTE Uplink

机译:LTE上行链路的QoS感知节能调度器

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The continuous increase of mobile data traffic has created a substantial demand for high data rate transmission over mobile networks. However, mobile devices are provided with small batteries that can be drained quickly by high data rate transmission. Motivated by the fundamental requirement of extending the battery utilization time per charge of mobile devices, this work presents two power-efficient schedulers for mixed streaming services in LTE uplink systems. Our objective is to minimize the total transmission power for all users. The proposed schedulers are subject to rate, delay, contiguous allocation, and maximum transmission power constraints. We first consider an optimal scheduler that uses binary integer programming (BIP). Then, we propose an iterative scheduler that performs a low-complexity greedy algorithm which solves the BIP problem. We compare the performance of the proposed schedulers to the state-of-the-art schedulers such as the energy-aware resource allocation (EARA) and the proportional fair (PF) in terms of rate, delay, average transmission power and complexity. Simulation results show that the proposed schedulers offer a remarkable transmission power reduction as compared to the PF and the EARA schedulers, and satisfy the QoS requirements.
机译:移动数据流量的持续增长已经产生了对通过移动网络进行高数据速率传输的大量需求。但是,移动设备配备有小型电池,可以通过高数据速率传输快速将其耗尽。出于延长移动设备每次充电的电池利用率时间这一基本要求的推动,这项工作提出了两个用于LTE上行链路系统中混合流服务的高能效调度程序。我们的目标是使所有用户的总传输功率最小。提议的调度器受速率,延迟,连续分配和最大传输功率约束的约束。我们首先考虑使用二进制整数编程(BIP)的最佳调度程序。然后,我们提出了一种迭代调度程序,该程序执行可解决BIP问题的低复杂度贪婪算法。我们在速率,延迟,平均传输功率和复杂性方面,将提议的调度程序的性能与最新的调度程序(例如能源感知资源分配(EARA)和比例公平(PF))进行比较。仿真结果表明,与PF和EARA调度器相比,所提出的调度器可显着降低发射功率,并满足QoS要求。

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