Advanced wearable devices are increasingly incorporating high-resolution multi-camera systems. As state-of-the-art neural networks for processing the resulting image data are computationally demanding, there has been growing interest in leveraging fifth generation (5G) wireless connectivity and mobile edge computing for offloading this processing to the cloud. To assess this possibility, this paper presents a detailed simulation and evaluation of 5G wireless offloading for object detection within a powerful, new smart wearable called VIS4ION, for the Blind-and-Visually Impaired (BVI). The current VIS4ION system is an instrumented book-bag with high-resolution cameras, vision processing and haptic and audio feedback. The paper considers uploading the camera data to a mobile edge cloud to perform real-time object detection and transmitting the detection results back to the wearable. To determine the video requirements, the paper evaluates the impact of video bit rate and resolution on object detection accuracy and range. A new street scene dataset with labeled objects relevant to BVI navigation is leveraged for analysis. The vision evaluation is combined with a detailed full-stack wireless network simulation to determine the distribution of throughputs and delays with real navigation paths and ray-tracing from new high-resolution 3D models in an urban environment. For comparison, the wireless simulation considers both a standard 4G-Long Term Evolution (LTE) carrier and high-rate 5G millimeter-wave (mmWave) carrier. The work thus provides a thorough and realistic assessment of edge computing with mmWave connectivity in an application with both high bandwidth and low latency requirements.
翻译:高级磨损装置正在越来越多地纳入高分辨率多相机系统。随着处理由此产生的图像数据的最新尖端神经神经网络在计算上要求很高,人们越来越有兴趣利用第五代(5G)无线连接和移动边缘计算来将处理器卸载到云层。为了评估这一可能性,本文件对5G无线卸载进行详细模拟和评价,以便在一个强大、新智能的智能磨损状态下,为盲人和视觉受损者(BVI)进行物体探测,称为VIS4ION。目前的VIS4ION系统是一个带有高分辨率相机、视觉处理以及机动和音频反馈的仪式书包。 本文考虑将相机数据上载到移动边缘云中进行实时物体探测,并将检测结果传回到可磨损状态。 为了确定视频要求,本文评估了视频比特率和分辨率对物体探测准确性和距离的影响。 与BVI导航相关的贴标签物体的新的楼面图像数据集用于分析。 愿景评价与一个详细的全端网络应用模型结合,以便从高分辨率摄氏轨道和高分辨率轨道上进行实时网络模拟,从而确定高分辨率导航和高分辨率轨道的轨道的轨道运行。