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An Autosophy Image Content-Based Television System

机译:基于自体图像内容的电视系统

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摘要

A first television system based on the Autosophy information theory is now being tested. The new television marks a major theoretical break from conventional television based on the Shannon information theory. In conventional television bit rates are determined entirely by hardware parameters, such as screen size, resolution, and scanning rates. The images shown on the screen are irrelevant, such that random noise video requires the same bit rate as any other video, whether blank or rich in content. In the new Autosophy-based television, in contrast, bit rates are determined entirely by video content, essentially motion and complexity within the images. It is the imaging hardware that becomes virtually irrelevant. A very high degree of visually lossless video compression is possible because only moving parts of the video are transmitted. Transmitted codes represent multi-pixel image clusters in a pre-grown hyperspace library. The system can dynamically and seamlessly reduce resolution of fast-moving objects when necessary to accommodate bandwidth restrictions. Ideally suited to the Internet environment, the new television features high resistance to delayed or dropped packets, a universal hardware-independent communication format, and optional "codebook" encryption for secure communications.
机译:现在正在测试基于Autosophy信息理论的第一个电视系统。新电视标志着与基于香农信息论的传统电视的重大理论突破。在常规电视中,比特率完全由硬件参数确定,例如屏幕尺寸,分辨率和扫描速率。屏幕上显示的图像无关紧要,因此随机噪声视频与空白或内容丰富的任何其他视频都需要相同的比特率。相反,在新的基于Autosophy的电视中,比特率完全由视频内容,图像的运动和复杂性决定。成像硬件实际上变得无关紧要。高度视觉上无损的视频压缩是可能的,因为仅传输视频的运动部分。传输的代码表示预生成的超空间库中的多像素图像簇。该系统可以在必要时动态无缝地降低快速移动物体的分辨率,以适应带宽限制。新电视非常适合Internet环境,具有对延迟或丢失数据包的高抵抗力,通用的硬件独立通信格式以及用于安全通信的可选“密码本”加密。

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