Position Based Directional Ad-Hoc Routing with Space Time Diversity

Caryn Chan, C. Warty, R. Yu
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引用次数: 1

Abstract

Self organizing mobile Ad-Hoc networks have gained much attention in the last decade particularly due to their ease of deployment in war zones and natural disasters. Because of the fact that the Ad-Hoc network is a virtual network created by the participating nodes, this approach can be applied to remote areas with no fixed networking capability, and is ideal for coordination in remote locations. Considering the sophistication of equipment capable of handling MIMO techniques and inbuilt GPS receivers, a simple two-stage method of forwarding the message is proposed in this paper. A low frequency broadcast containing GPS coordinates of the nodes is used for node discovery which is then followed by a directional narrow beam at higher frequency for data transfer. The knowledge of GPS location combined with directional transmission is expected to increase the performance of the network. The intent of the paper is to propose a simplified location-based Ad-Hoc routing mechanism and to examine its performance when combined with MIMO space time coding technique. The space time codes are evaluated over a Flat Slow Fading channel using various modulation schemes. The basic premise of the proposed scheme is simplicity and robustness.
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基于位置的时空分集定向Ad-Hoc路由
自组织移动Ad-Hoc网络在过去十年中获得了很多关注,特别是由于它们易于在战区和自然灾害中部署。由于Ad-Hoc网络是由参与节点创建的虚拟网络,因此这种方法可以应用于没有固定网络能力的远程区域,并且非常适合远程位置的协调。考虑到能够处理MIMO技术的设备的复杂性和内置GPS接收器,本文提出了一种简单的两阶段转发消息的方法。包含节点的GPS坐标的低频广播用于节点发现,随后在较高频率上的定向窄波束用于数据传输。GPS定位知识与定向传输相结合有望提高网络的性能。本文的目的是提出一种简化的基于位置的Ad-Hoc路由机制,并研究其与MIMO时空编码技术相结合的性能。使用各种调制方案在平坦慢衰落信道上对空时码进行评估。该方案的基本前提是简单性和鲁棒性。
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