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Nelder-Mead Based Iterative Algorithm for Optimal Antenna Beam Patterns in Ad Hoc Networks

机译:基于Nelder-Mead基于Ad Hoc网络最优天线波束模式的迭代算法

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Directional antennas shape transmission patterns to provide greater coverage distance and reduced coverage angle. Use of adaptive directional antenna arrays can minimize interference while also being more energy efficient. When used in an ad-hoc network, this reduces interference among transmitting nodes and thereby increases throughput. Such “smart antennas” use digital beamforming based on signal processing algorithms to compute the appropriate weights to form effective antenna patterns. Smart antennas require the knowledge of the signal received at each antenna in the antenna array, thereby increasing the complexity of hardware and cost. Also, conventional smart antennas optimize results for each individual node, while it is preferable to have a global optimal solution. A problem that has not been addressed is how to compute individual beam patterns that maximize some measure of global network performance. Historically, the focus has been on finding node antenna patterns that give locally optimal performance. In this paper, we investigate a low hardware complexity beamforming approach aimed at improving global performance that uses average Noise-to-Signal ratio as the performance measure. Given a multi-hop route from source to destination, beam patterns are shaped to maximize average signal-to-noise ratio across all nodes on the route, which reduces bit-error rates and extends battery and network lifetime. The antenna weights are sequentially adjusted across all nodes in the route to achieve optimization across the network. By using phase-only weights, hardware costs are minimized. The performance of the algorithm using different path loss models is explored.
机译:定向天线形状传输模式以提供更大的覆盖距离和减少的覆盖角度。使用自适应定向天线阵列可以最小化干扰,同时也更节能。当在Ad-hoc网络中使用时,这减少了发送节点之间的干扰,从而提高了吞吐量。这种“智能天线”基于信号处理算法使用数字波束成形来计算适当的权重以形成有效的天线图案。智能天线要求在天线阵列中的每个天线处接收的信号知识,从而提高了硬件和成本的复杂性。此外,传统的智能天线优化每个单独节点的结果,而优选具有全局最优解。尚未解决的问题是如何计算最大化全局网络性能的各个波束模式。从历史上看,焦点一直在寻找提供局部最佳性能的节点天线模式。在本文中,我们调查了旨在提高使用平均噪声到信号比作为性能测量的全局性能的低硬件复杂性波束成形方法。给定从源到目的地的多跳路线,波束图案成形为最大化路线上所有节点的平均信噪比,这减少了比特误差速率并扩展了电池和网络寿命。在路线中的所有节点上依次调整天线权重,以实现跨网络的优化。通过使用相位权重,硬件成本最小化。探讨了使用不同路径损耗模型的算法的性能。

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