天线可重构多跳无线网络的吞吐量优化

Yantian Hou, Ming Li, K. Zeng
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引用次数: 6

摘要

在多跳无线网络中,干扰和连通性是影响端到端网络吞吐量的两个关键因素。传统的全向天线和定向天线要么产生明显的干扰,要么网络连通性差。可重构天线(Reconfigurable antenna, RA)是一种新兴的天线技术,它可以在多种不同的天线状态(包括辐射方向图)之间灵活切换,从而在抑制干扰的同时保持高连通性。在这项工作中,我们系统地利用RAs的模式多样性和快速可重构性来提高MWNs的吞吐量。我们首先提出了一种新的链路层模型,该模型捕捉了天线方向图、链路覆盖和干扰之间的动态关系。在此基础上,提出了一个综合考虑模式选择和链路调度的吞吐量优化框架。我们的问题被表述为一个混合整数非线性规划问题。可重构天线相对于传统的全向天线和定向天线的优越性在理论上得到了证明,并通过大量的仿真得到了验证。
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Throughput optimization in multi-hop wireless networks with reconfigurable antennas
In multi-hop wireless networks (MWNs), interference and connectivity are two key factors that affect end-to-end network throughput. Traditional omni-directional antennas and directional antennas either generate significant interference or provide poor network connectivity. Reconfigurable antenna (RA) is an emerging antenna technology that can agilely switch among many different antenna states including radiation patterns, so as to suppress interference and maintain high connectivity at the same time. In this work, we systematically exploit the pattern diversity and fast reconfigurability of RAs to enhance the throughput of MWNs. We first propose a novel link-layer model that captures the dynamic relations between antenna pattern, link coverage and interference. Based on our model, a throughput optimization framework is proposed by jointly considering pattern selection and link scheduling. Our problem is formulated as a mixed integer non-linear programming problem. The superiority of reconfigurable antennas compared with traditional omni-directional and directional antennas is both theoretically proven, and validated through extensive simulations.
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