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QoS Aware Multi-Channel Scheduling for IEEE 802.15.3 Networks

机译:适用于IEEE 802.15.3网络的QoS感知多通道调度

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摘要

From a multimedia applications perspective, there is an ever increasing demand for wireless devices with higher bandwidth to support high data rate flows. One possible solution to support the demand for higher bandwidth is to utilize the full spectrum by simultaneously using multiple channels for transmission. Recent approval by the Federal Communications Commission (FCC) has led to considerable interest in exploiting Ultra Wideband (UWB) access on an unlicensed basis in the 3.1-10.6 GHz band. Currently, the IEEE TG802.15.3a standards group is in the process of developing an alternative high-speed link layer design conformable with the IEEE 802.15.3 Wireless Personal Area Network (WPAN) multiple access (MAC) protocol. One of the proposals, based on the concept of Orthogonal Frequency Division Multiplexing (OFDM), divides the spectrum into multiple bands and achieves channelization through the use of different time-frequency codes. These multiple channels can help satisfy the increasing demand for higher bandwidth in order to support high data rate multimedia applications. In this paper, we present a QoS-aware, multi-channel scheduling algorithm that simultaneously utilizes the various channels available in the UWB network.
机译:从多媒体应用的角度来看,对具有更高带宽以支持高数据速率流的无线设备的需求与日俱增。支持更高带宽需求的一种可能解决方案是通过同时使用多个信道进行传输来利用整个频谱。联邦通信委员会(FCC)最近的批准引起了人们极大的兴趣,在3.1-10.6 GHz频带内无许可证地利用超宽带(UWB)接入。当前,IEEE TG802.15.3a标准小组正在开发一种符合IEEE 802.15.3无线个人区域网(WPAN)多址(MAC)协议的替代高速链路层设计。其中一项提案基于正交频分复用(OFDM)概念,将频谱划分为多个频段,并通过使用不同的时频代码实现了信道化。这些多通道可以帮助满足对更高带宽的不断增长的需求,以支持高数据速率的多媒体应用。在本文中,我们提出了一种QoS感知的多通道调度算法,该算法同时利用了UWB网络中可用的各种通道。

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