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Adaptive Scheduling in MIMO-Based Heterogeneous Ad Hoc Networks

机译:基于MIMO的异构Ad Hoc网络中的自适应调度

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The demands for data rate and transmission reliability constantly increase with the explosive use of wireless devices and the advancement of mobile computing techniques. Multiple-input and multiple-output (MIMO) technique is considered as one of the most promising wireless technologies that can significantly improve transmission capacity and reliability. Many emerging mobile wireless applications require peer-to-peer transmissions over an ad hoc network, where the nodes often have a different number of antennas, and the channel condition and network topology vary over time. It is important and challenging to develop efficient schemes to coordinate transmission resource sharing among a heterogeneous group of nodes over an infrastructure-free mobile ad hoc network. In this work, we propose a holistic scheduling algorithm that can adaptively select different transmission strategies based on the node types and channel conditions to effectively relieve the bottleneck effect caused by nodes with smaller antenna arrays, and avoid the transmission failure due to the violation of lower degree of freedom constraint resulted from the channel dependency. The algorithm also takes advantage of channel information to opportunistically schedule cooperative spatial multiplexed transmissions between nodes and provide special transmission support for higher priority nodes with weak channels, so that the data rate of the network can be maximized while user transmission quality requirement is supported. The performance of our algorithm is studied through extensive simulations and the results demonstrate that our algorithm is very effective in handling node heterogeneity and channel constraint, and can significantly increase the throughput while reducing the transmission delay.
机译:随着无线设备的爆炸性使用和移动计算技术的发展,对数据速率和传输可靠性的要求不断增加。多输入多输出(MIMO)技术被认为是最有前途的无线技术之一,可以显着提高传输容量和可靠性。许多新兴的移动无线应用程序需要通过ad hoc网络进行对等传输,其中节点通常具有不同数量的天线,并且信道条件和网络拓扑会随时间而变化。开发有效的方案来协调无基础设施的移动自组织网络上异构节点之间的传输资源共享是重要且具有挑战性的。在这项工作中,我们提出了一种整体调度算法,该算法可以根据节点类型和信道条件自适应地选择不同的传输策略,以有效缓解天线阵列较小的节点引起的瓶颈效应,并避免由于违反低频段而导致的传输失败。自由度约束是由通道依赖性引起的。该算法还利用信道信息来机会调度节点之间的协作空间复用传输,并为具有弱信道的高优先级节点提供特殊的传输支持,从而可以在满足用户传输质量要求的同时最大化网络的数据速率。通过大量仿真研究了该算法的性能,结果表明,该算法在处理节点异构性和信道约束方面非常有效,可以显着提高吞吐量,同时减少传输延迟。

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