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Autosophy Image Compression for Packet Network Television

机译:分组网络电视的自动图像压缩

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摘要

Transmitting graphics or live television on the Internet or Information Superhighway will be very slow and expensive unless video compression is used to reduce the transmission bandwidth. There are three basic ways to transmit images and video. Conventional bit stream transmissions depend on very high speed channels, such as fiber optics. Lossy cosine transforms and motion compensation in the JPEG or MPEG-2 standards will reduce the bandwidth but at the expense of the image quality. The more the images are compressed, the worse the distortions become until the image quality becomes unacceptable. A new Autosophy information theory may now provide a third alternative. In the new information theory, "Information" is dependent only on image content or "Novelty" and "Movement" within the images. Information is redefined as something not already known to the receiver. Everything the receiver already knows is redundant and need not be communicated. "Knowledge" is accumulated in tree networks that grow by themselves like data crystals. The result is a new kind of television in which the bandwidth is determined only by the image content or what is to be shown on the screen. Hardware parameters, such as image size, resolution or frame rates become irrelevant. Very high lossless image compression is achieved without sacrificing image quality. The transmission method is especially suitable for packet switching networks and provides optional encryption for network security. It can also be used to transmit still image graphics on the Internet or to store Multimedia moving images in PCs.
机译:除非使用视频压缩来减少传输带宽,否则在Internet或Information Superway上传输图形或实况电视将非常缓慢且昂贵。传输图像和视频有三种基本方法。传统的比特流传输依赖于非常高速的通道,例如光纤。 JPEG或MPEG-2标准中的有损余弦变换和运动补偿将减少带宽,但会降低图像质量。图像压缩得越多,失真就变得越差,直到图像质量变得无法接受为止。一种新的Autosophy信息理论现在可以提供第三种选择。在新的信息理论中,“信息”仅取决于图像内容或图像中的“新颖性”和“运动”。信息被重新定义为接收者还不知道的东西。接收者已经知道的一切都是多余的,不需要进行通信。 “知识”积累在像数据晶体一样自身增长的树形网络中。结果是一种新型电视,其中带宽仅由图像内容或屏幕上显示的内容确定。诸如图像大小,分辨率或帧速率之类的硬件参数变得无关紧要。在不牺牲图像质量的情况下实现了非常高的无损图像压缩。该传输方法特别适合于分组交换网络,并为网络安全提供可选的加密。它也可用于在Internet上传输静止图像图形或在PC中存储多媒体运动图像。

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