One of the biggest challenges is to determine the deployment and navigation of the drones to benefit the most for different applications. Many research questions have been raised about this topic. For example, drone-enabled wildlife monitoring has received much attention in recent years. Unfortunately, this approach results in significant disturbance to different species of wild animals. Moreover, with the capability of rapidly moving communication supply towards demand when required, the drone equipped with a base station, i.e., drone-cell, is becoming a promising solution for providing cellular networks to victims and rescue teams in disaster-affected areas. However, few studies have investigated the optimal deployments of multiple drone-cells with limited backhaul communication distances. In addition, the use of autonomous drones as flying interactors for many real-life applications has not been sufficiently discussed. With superior maneuverability, drone-enabled autonomous aerial interacting can potentially be used on shark attack prevention and animal herding. Nevertheless, previous studies of autonomous drones have not dealt with such applications in much detail. This report explores the solutions to all the mentioned research questions, with a particular focus on the deployment and navigation of the drones. Simulations have been conducted to verify the effectiveness of the proposed approaches. We believe that our findings in this report shed new light on the fundamental benefits of autonomous civilian drones.
翻译:最大的挑战之一是确定无人驾驶飞机的部署和导航,以使不同应用最有利于无人驾驶飞机。许多研究问题都针对这个专题提出了许多研究问题。例如,近年来无人驾驶的野生生物监测受到了很多关注。不幸的是,这一方法导致不同野生动物物种受到重大干扰。此外,由于能够在需要时迅速将通信供应转向需求,配备有基地站,即无人驾驶机的无人驾驶飞机正在成为向灾区受害者和救援小组提供蜂窝网络的有希望的解决办法。然而,很少有研究调查过多个无人驾驶飞机细胞的最佳部署情况,其背航通信距离有限。此外,没有充分讨论使用自主无人驾驶飞机作为飞行互动器用于许多实际应用的问题。随着机动性增强,无人驾驶飞机的自主空中互动可能被用于预防鲨鱼攻击和动物放牧。然而,以前对自主无人驾驶飞机的研究并未十分详细地涉及此类应用。本报告探讨了所有上述研究问题的解决办法,特别侧重于无人驾驶飞机的部署和导航。我们还充分讨论了使用自主无人驾驶飞机作为飞行互动器用于许多实际应用的问题。由于可操作性很强,因此,无人驾驶无人驾驶飞机的自动驾驶飞机的自主飞行相互作用可能被用于防止鲨鱼攻击和动物放牧。但我们认为,因此相信,因此可以进行新的研究。