提高航段信息通信系统传输效率的视频数据视频图像重构方法

I.M. Tupytsia, S. Kibitkin, V.M. Sukhoteplyi, D.M. Nepokrytov, D.V. Konov
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引用次数: 2

摘要

今天,在地方、区域和州一级进行有效管理的主要工具是获得适当的信息支持。这尤其适用于安全和国防部门,在该部门,获得必要的信息支持是部门机构(有关执法机构)对社会和整个国家出现的危机局势作出有效反应的主要要求。在这方面,视像资料支助作为迅速决策手段的作用大大增加。这是因为实施视频信息提供的关键原则是及时性(可操作性)和可靠性。为此目的,固定式和移动式照片和视频监控系统得到了相当积极的使用。后者的使用与航空部分- -无人驾驶飞行器和综合体密切相关,其作用因其规模和机动性等特性的存在而增加。然而,与此同时,与使用无线通信技术向最终收件人传送数据有关的下列问题因素出现了:不断增加的数据量与数据传输通道的带宽之间的不平衡;视频数据传输过程中产生的障碍物对重构视频图像可靠性水平的影响。需要注意的是,使用现有的抗干扰编码方法来解决上述问题会导致视频数据量的显著增加,这在使用无线通信技术的条件下是至关重要的——视频是一种具有显著时间延迟的信息资源。为此目的,正在开发一种视频数据重建方法,其基础是使用不均匀代码结构的标识符(标记),这些标识符分配给由于按结构特征重组信息空间而形成的簇的元素。该方法的一个显著特点是根据结构特征对单个代码子集进行独立的分解统计解码。这就保证了视频信息资源在数据重构过程中由于使用了附加的业务信息而对错误进行定位。该方法的一个显著特点是根据结构特征对单个代码子集进行独立的分解统计解码。这就保证了视频信息资源在数据重构过程中由于使用了附加的业务信息而对错误进行定位。该方法的一个显著特点是根据结构特征对单个代码子集进行独立的分解统计解码。这就保证了视频信息资源在数据重构过程中由于使用了附加的业务信息而对错误进行定位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Video Data Video Image Reconstruction Method for Increasing Delivery Efficiency in Air Segment Infocommunication Systems
Today, the main tool of effective management at both the local, regional, and state levels is the availability of appropriate information support. This especially applies to the security and defense sector, where the availability of the necessary information support is the main requirement for the effective response of departmental bodies (relevant law enforcement agencies) to crisis situations arising both in society and the state as a whole. In connection with this, the role of video information support as a means for prompt decision-making is significantly increased. This is due to the fact that the key principles of the implementation of video information provision are timeliness (operational) and reliability. For this purpose, stationary and mobile photo and video surveillance systems are quite actively used. The use of the latter is closely related to the aviation segment — unmanned aerial vehicles and complexes, the role of which is increased by the presence of such properties as scale and mobility. However, at the same time, the following problematic factors arise related to the use of wireless communication technologies for data delivery to the final addressee: an imbalance between the ever-increasing volumes of data and the bandwidth of data transmission channels; the influence of obstacles arising in the process of video data delivery on the level of reliability of the reconstructed video image. It should be noted that the use of existing methods of interference-resistant coding to solve the above-mentioned problems leads to a significant increase in the volume of video data, which is critical in the conditions of using wireless communication technologies — video is an information resource transmitted with significant time delays. For this purpose, a method of video data reconstruction is being developed based on the use of identifiers (markers) of uneven code structures assigned to the elements of clusters formed as a result of the restructuring of the information space by structural feature. A distinctive feature of the developed method is the independent decompositional statistical decoding of individual code subsets according to structural features. This ensures, due to the use of additional service information, the localization of errors in the process of data reconstruction of the video information resource. A distinctive feature of the developed method is the independent decompositional statistical decoding of individual code subsets according to structural features. This ensures, due to the use of additional service information, the localization of errors in the process of data reconstruction of the video information resource. A distinctive feature of the developed method is the independent decompositional statistical decoding of individual code subsets according to structural features. This ensures, due to the use of additional service information, the localization of errors in the process of data reconstruction of the video information resource.
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