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Effective data gathering protocol in WSN-UAV employing priority-based contention window adjustment scheme

机译:采用基于优先级的竞争窗口调整方案的WSN-UAV中有效的数据收集协议

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In this paper, we propose an effective data gathering protocol in an air-to-ground communication network employing priority-based contention window adjustment scheme. The proposed protocol adopts a conventional CSMA/CA. An unmanned aerial vehicle is used as a relay sink to collect data from a ground wireless sensor network. In our scheme, we divide the coverage area of UAV's beacon signal into many frames and each frame is assigned with different transmission priorities. In doing so, we introduce a priority-based optimized frame selection and circularly optimized frame selection scheme. In addition to POFS and COFS, PCWAS is proposed to define a lower contention window range to a higher transmission priority frame and a higher contention window range to a lower transmission priority frame. This approach not only minimizes the number of collisions; but also allows higher priority of data transmission to sensors that need to transmit first, so that the packet loss in communication link is dramatically reduced. Data transmission is handled from a higher to a lower priority frame. The simulation results show that the proposed approach achieves better system throughput, packet delivery ratio, and time delay.
机译:在本文中,我们提出了一种在空对地通信网络中采用基于优先级的竞争窗口调整方案的有效数据收集协议。提议的协议采用常规的CSMA / CA。无人飞行器用作中继站,以从地面无线传感器网络收集数据。在我们的方案中,我们将无人机信标信号的覆盖区域划分为许多帧,并且为每个帧分配不同的传输优先级。为此,我们介绍了基于优先级的优化帧选择和循环优化帧选择方案。除了POFS和COFS,还提出了PCWAS来定义较低的争用窗口范围到较高的传输优先级帧,并定义较高的争用窗口范围到较低的传输优先级帧。这种方法不仅可以最大程度地减少碰撞次数,而且还可以减少碰撞次数。而且还允许将数据传输到需要首先传输的传感器的优先级更高,从而大大减少了通信链路中的数据包丢失。数据传输是从较高优先级帧到较低优先级帧处理的。仿真结果表明,该方法具有较好的系统吞吐率,分组传输率和时延。

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