论文标题
带有COAP的随机图像传输,用于极端环境
Stochastic Image Transmission with CoAP for Extreme Environments
论文作者
论文摘要
对于各种用例,包括环境监测,在极端环境中进行沟通是一个重要的研究主题。一个典型的例子是6G移动网络的水下声通信。在这种环境中的主要挑战是极高的延期和高率率。他们使用现有的通信协议使实时图像传输变得困难。这部分是因为嘈杂网络中频繁的重新传播会增加潜伏期,并导致实质性严重恶化。为了解决此问题,本文提出了一个随机图像传输,该图像传输具有限制的应用程序协议(COAP),以实现极端环境。提出的想法的目的是在不使用UDP上的COAP重新启动的情况下实现近似的实时图像传输。为此,将图像分为块,并根据要求为每个块分配值。通过随机传输的块,即使在网络中丢失数据包时,也可以保证无需重新传播的接收概率。我们使用Raspberry Pi 4实施了建议的方案,以证明可行性。从实验结果确认了提出的图像传输的性能。
Communication in extreme environments is an important research topic for various use cases including environmental monitoring. A typical example is underwater acoustic communication for 6G mobile networks. The major challenges in such environments are extremely high-latency and high-error rate. They make real-time image transmission difficult using existing communication protocols. This is partly because frequent retransmission in noisy networks increases latency and leads to serious deterioration of real-timeness. To address this problem, this paper proposes a stochastic image transmission with Constrained Application Protocol (CoAP) for extreme environments. The goal of the proposed idea is to achieve approximate real-time image transmission without retransmission using CoAP over UDP. To this end, an image is divided into blocks, and value is assigned for each block based on the requirement. By the stochastic transmission of blocks, the reception probability is guaranteed without retransmission even when packets are lost in networks. We implemented the proposed scheme using Raspberry Pi 4 to demonstrate the feasibility. The performance of the proposed image transmission was confirmed from the experimental results.