论文标题
使用事件摄像机的异步光学通信的智能视觉信标
Smart Visual Beacons with Asynchronous Optical Communications using Event Cameras
论文作者
论文摘要
事件摄像机是由生物启发的动态视觉传感器,它们以高时间分辨率,高动态范围和低延迟响应图像强度的变化。这些传感器特性非常适合与智能视觉信标的广播视觉通信通道一起启用视觉目标跟踪,并在分布式机器人中应用。视觉信标可以通过光发射二极管(LED)的高频调制(例如车辆前大灯,物联网(IoT)LED,智能建筑灯等)来构建,这些灯光(IoT),智能建筑灯等在许多真实世界中都已经存在。事件摄像机的高时间分辨率特征使他们能够以基于经典的框架相比,以更高的数据速率捕获视觉信号。在本文中,我们提出了一种具有LED调制和事件摄像头解调算法的新型智能视觉信标体系结构。我们定量评估了我们原型的智能视觉信标通信系统的LED传输速率,通信距离和消息传输精度之间的关系。所提出的方法在室内环境中最多可实现4 kbps,并且在100米的距离内,以500 bps的距离达到了无损的传播,在阳光充足的情况下,表明了该技术在室外环境中的潜力。
Event cameras are bio-inspired dynamic vision sensors that respond to changes in image intensity with a high temporal resolution, high dynamic range and low latency. These sensor characteristics are ideally suited to enable visual target tracking in concert with a broadcast visual communication channel for smart visual beacons with applications in distributed robotics. Visual beacons can be constructed by high-frequency modulation of Light Emitting Diodes (LEDs) such as vehicle headlights, Internet of Things (IoT) LEDs, smart building lights, etc., that are already present in many real-world scenarios. The high temporal resolution characteristic of the event cameras allows them to capture visual signals at far higher data rates compared to classical frame-based cameras. In this paper, we propose a novel smart visual beacon architecture with both LED modulation and event camera demodulation algorithms. We quantitatively evaluate the relationship between LED transmission rate, communication distance and the message transmission accuracy for the smart visual beacon communication system that we prototyped. The proposed method achieves up to 4 kbps in an indoor environment and lossless transmission over a distance of 100 meters, at a transmission rate of 500 bps, in full sunlight, demonstrating the potential of the technology in an outdoor environment.