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The Model of the Drone System Design for a Multi-recording of the 360-degree Video and Real-time Merging Technique

机译:360度视频和实时融合技术多记录的无人机系统设计模型

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Background/ Objectives: Various attempts have been made to utilize drones to increase information utilization based on the 4th industrial revolution. As the availability of these drone increases, the demand for real time image information at various angles is increasing. So we need to make a research like it. Methods/ Statistical analysis: We propose a drone design model for 360-degree simultaneous multi-recording videos and a real-time video merging technique to provide efficient real-time video service in order to reduce blind spots that can occur in drone adjustment and to provide surveillance efficiency. In order to collect videos at various angles at the same time by using multiple cameras, we analyze the angle of the camera with respect to the split plane of the drones, and provide real-time video information service through efficient 360-degress videos construction and videos merging. It can be make an effective coordination and monitoring of a drone. Findings: The drones typically include one or two cameras for situational and video recording purposes, but this camera approach creates a blind spot in drone surveillance area. And also VR and 3D approach with first-person equipment of drone is lacking the real-time monitoring function at various angles in that it provides only one viewpoint at a time. In addition, it is required to recognize and utilize information more efficiently in the reality that the drones are being extended from the visibility flight to the non-visibility area. The simultaneous 360-degree video recording method using multiple cameras will improve the monitoring and operation ability of the drones and increase the utilization. To do this, we analyze multiple camera angles and construct the physical environment of the drone system for the collection and processing of effective video information. We also propose a video merging technique to provide efficient service of collected video information. Improvements/ Applications: Based on the relation between various elements constituting the drone, it can be used in various application environments by providing an efficient access and communication environment for monitoring and information required in the operation of the drone through the camera environment, real-time information collection and merging technique.
机译:背景/目标:在第四次工业革命的基础上,人们进行了各种尝试来利用无人机来提高信息利用率。随着这些无人机的可用性的增加,对各种角度的实时图像信息的需求也在增加。因此,我们需要进行类似的研究。方法/统计分析:我们提出了一种用于360度同时多路录制视频的无人机设计模型和一种实时视频合并技术,以提供有效的实时视频服务,以减少在调整无人机时可能出现的盲点,并提供监视效率。为了使用多个摄像头同时收集各种角度的视频,我们分析了摄像头相对于无人机分离平面的角度,并通过高效的360度视频构建和实时提供视频信息服务。视频合并。可以对无人机进行有效的协调和监视。调查结果:无人机通常包括一到两个摄像头,用于态势和视频记录,但是这种摄像头方法会在无人机监视区域造成盲点。而且,采用无人机第一人称装备的VR和3D方法在各个角度都缺乏实时监控功能,因为它一次只能提供一个视角。另外,在无人驾驶飞机正从可见性飞行扩展到非可见性区域的现实中,需要更有效地识别和利用信息。使用多个摄像机的同时360度视频录制方法将提高无人机的监视和操作能力,并提高利用率。为此,我们分析了多个摄像机角度并构建了无人机系统的物理环境,以收集和处理有效的视频信息。我们还提出了一种视频合并技术,以提供所收集视频信息的高效服务。改进/应用程序:基于构成无人机的各个元素之间的关系,通过提供有效的访问和通信环境,以通过摄像头环境实时监控无人机操作所需的信息,可以将其用于各种应用程序环境信息收集和合并技术。

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