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User Based Resource Scheduling for Heterogeneous Traffic in the Downlink of OFDM Systems

机译:OFDM系统下行链路中基于用户的异构业务资源调度

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Besides avoiding inter-symbol interference and leading to high capacity, wireless orthogonal frequency division multiplexing (OFDM) provide fine granularity for resource allocation since they are capable of dynamically assigning sub-carriers to multiple users and adaptively allocating transmit power. The current dominate layered networking architecture, in which each layer is designed and operated independently, results in inefficient and inflexible resource use in wireless networks due to the nature of the wireless medium, such as time-varying channel fading. Thus, we need an integrated adaptive design across different layers. In this paper, we focus on resource allocation and scheduling in wireless multiuser OFDM networks based on joint physical and medium access control (MAC) layer optimization. An adaptive cross-layer design for the downlink multiuser OFDM systems, to maximize the weighted sum capacity of all users, where each user has multiple heterogeneous traffic queues simultaneously is proposed. A packet dependent (PD) scheduling scheme is employed at the MAC layer, which determines the packet transmission order by assigning different weights to different packets, and is shown by simulations more efficient than the previous methods where all packets in a queue have the same weight. The weight design in PD scheduling considers the delay, size and quality of service (QoS) priority level of packets. Each user weight employed in resource allocation at the physical (PHY) layer is obtained by summing up the weights of selected packets for the user. We also deeply investigate the various resource scheduling schemes for comparisons.
机译:除了避免符号间干扰并导致大容量,无线正交频分复用(OFDM)还为资源分配提供了精细的粒度,因为它们能够动态地将子载波分配给多个用户并自适应地分配发射功率。当前占主导地位的分层网络体系结构(其中每个层都是独立设计和操作的)由于无线介质的性质(例如随时间变化的信道衰落)而导致无线网络中的资源使用效率低下和不灵活。因此,我们需要跨不同层的集成自适应设计。在本文中,我们集中在基于联合物理和介质访问控制(MAC)层优化的无线多用户OFDM网络中的资源分配和调度。提出了一种用于下行链路多用户OFDM系统的自适应跨层设计,以最大化所有用户的加权和容量,其中每个用户同时具有多个异构业务队列。在MAC层采用基于数据包的(PD)调度方案,该方案通过为不同的数据包分配不同的权重来确定数据包的传输顺序,并且通过仿真显示,其效率比以前的方法更为有效,在先前的方法中,队列中的所有数据包都具有相同的权重。 PD调度中的权重设计考虑了数据包的延迟,大小和服务质量(QoS)优先级。物理(PHY)层在资源分配中采用的每个用户权重是通过对用户选择的数据包的权重求和而获得的。我们还深入研究了各种资源调度方案以进行比较。

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