异构环境下遥感与控制的QoS提供

Zhiwei Cen, M. Mutka
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引用次数: 2

摘要

在异构无线网络环境中,网络节点同时配备无线局域网(WLAN)和蜂窝接口。我们希望将WLAN的高带宽和蜂窝网络的无所不在的特性结合起来,为要求QoS的应用(如遥感和控制系统)提供传输服务。通用的解决方案利用蜂窝信道的多样性,招募多个WLAN对等点作为需要通过蜂窝网络进行通信的MANET节点的代理。在异构无线网络环境中利用信道分集的一个重要问题是在信道分集增益和MANET对等点竞争之间取得平衡。更多的代理将不可避免地增加MANET争用,并可能降低小区的QoS,而较少的代理可能无法提供足够的分集。本文旨在建立一种动态机制来确定要使用的代理的适当数量。该机制使用MAC层重传速率作为MANET中争用级别的指示器。利用蜂窝信道衰落模型和流行的蜂窝调度策略进行仿真,结果表明该方案通过使用适当数量的代理来实现信道分集,可以提供更好的QoS
本文章由计算机程序翻译,如有差异,请以英文原文为准。
QoS Provision for Remote Sensing and Control in Heterogeneous Environments
In a heterogeneous wireless network environment, the network nodes are equipped with both wireless local area network (WLAN) and cellular interfaces. It is desirable to combine the higher bandwidth of a WLAN and the ubiquitous nature of cellular networks to provide the transport service for QoS demanding applications, such as remote sensing and control systems. Common solutions exploit the diversity of cellular channels by recruiting multiple WLAN peers to work as proxies for a MANET node that needs to communicate through the cellular network. One important problem when utilizing channel diversity in a heterogeneous wireless network environment is to balance the trade-off of channel diversity gains with MANET peer contentions. A greater number of proxies will inevitably increase the MANET contention and possibly QoS degrading of the cell, and fewer proxies may not be able to provide sufficient diversity. This paper aims to build a dynamic mechanism to determine the appropriate number of proxies to use. The mechanism uses the MAC layer retransmission rate as an indicator of the contention level in MANET. Simulation using cellular channel fading models and prevalent cell scheduling policies indicate the scheme can provide better QoS through channel diversity by using the appropriate number of proxies
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