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Power-rate adaptation in high-mobility distributed ad-hoc wireless networks

机译:高迁移率分布式Ad-Hoc无线网络中的功率适应

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In this work we address the power-rate adaptation issue for wireless ad-hoc networks under the assumption of high mobility. First, we describe our concept based on the trade off between power-modulation used and interference generated. Our simple, yet significant, analytical investigation suggests to us to consider the packet length in the adaptation algorithm. The power-rate control algorithm we implement is based on the number of neighbors possibly interfered (retrieved by beaconing messages) and on the size of the transmitted packet. A pricing function, that weights the interference generated both in the time and space domain by the transmitting node, is used to establish power and modulation to use on a per-packet basis. We test the algorithm with an 802.11a-based simulator: our inter-vehicle communication scenario provides the high mobility condition. The results show substantial improvements on the packet delivery ratio when compared to the most robust transmission mode offered by the protocol (lowest data rate and maximum power).
机译:在这项工作中,我们在高移动性下解决无线ad-hoc网络的功率适应问题。首先,我们根据所使用的电源调制和干扰之间的贸易来描述我们的概念。我们简单,但重要的分析调查表明我们在适应算法中考虑数据包长度。我们实现的功率控制算法基于可能干扰的邻居数量(通过信标消息检索)和发送的分组的大小。定价函数,其在发送节点中的时间和空间域中产生的干扰,用于建立以每分组使用的功率和调制。我们使用基于802.11A的模拟器测试算法:我们的车间通信场景提供了高移动性状态。与由协议提供的最强大的传输模式(最低数据速率和最大功率)相比,结果显示了对分组输送比的显着提高。

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