Analysis of Computer Hardware Affecting Video Transmission via IEEE\n 1394a connection
Т. М. Мирзоев
Abstract
Open-access reader
Т. М. Мирзоев
Abstract
Open-access reader
When 60 de-interlaced fields per second digital uncompressed video is\nstreamed to a computer, some video fields are lost and not able to be stored on\na computer s hard drive successfully. Additionally, this problem amplifies once\nmultiple video sources are deployed. If it is possible to stream digital\nuncompressed video without dropped video fields, then a sophisticated computer\nanalysis of the transmitted via IEEE 1394a connection video is possible. Such\nprocess is used in biomechanics when it is important to analyze athletes\nperformance via streaming digital uncompressed video to a computer and then\nanalyzing it. If a loss of video fields occurs, then a quality analysis of\nvideo is not possible.\n
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When 60 de-interlaced fields per second digital uncompressed video is\nstreamed to a computer, some video fields are lost and not able to be stored on\na computer s hard drive successfully. Additionally, this problem amplifies once\nmultiple video sources are deployed. If it is possible to stream digital\nuncompressed video without dropped video fields, then a sophisticated computer\nanalysis of the transmitted via IEEE 1394a connection video is possible. Such\nprocess is used in biomechanics when it is important to analyze athletes\nperformance via streaming digital uncompressed video to a computer and then\nanalyzing it. If a loss of video fields occurs, then a quality analysis of\nvideo is not possible.\n
Key concepts: Uncompressed video, Computer science, Video processing, Video capture, Digital video, Video quality, Smacker video, Video compression picture types