AER:用于受灾地区飞行机器人监控网络的自适应节能路由协议

T. Abishek, K. Chithra, M. Ramesh
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引用次数: 7

摘要

在像地震这样的大规模灾害中,有必要突然开展灾后减灾活动,以减少损失并尽早进行灾后恢复和重建。本文提出了一种最优控制策略的设计框架,利用飞行机器人网络对大范围受灾地区进行有效的监视,以迅速确定破坏程度。本文的重点是开发一种与传统路由算法相比具有更低功耗和更低延迟的自适应节能路由策略。该协议综合考虑了剩余能量、信号强度和各种环境因素,有效地确定了最佳路由。仿真结果表明,该方案比传统的路由协议具有更高的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
AER: Adaptive energy efficient routing protocol for network of flying robots monitoring over disaster hit area
In large scale disasters like earth quake it is necessary to undertake post disaster mitigation activities abruptly in order to for reduce damage and for early post-disaster rehabilitation and reconstruction. This paper proposes a design framework for an optimal control strategy to efficiently perform surveillance over a wide disaster hit area using a network of flying robots to determine the extent of damage promptly. The main focus of the paper is to develop an adaptive and energy efficient routing strategy with less power dissipation and delay compared to traditional routing algorithms. This protocol efficiently determines the best route by taking account of the residual energy, signal strength and various environmental factors. Simulation results show that the proposed routing scheme achieves much higher performance than the classical routing protocols.
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