Maximum Shannon Information Delivered in a Lecture

IF 0.5 Q4 PHYSICS, APPLIED
L. Alksne, A. Ozols
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引用次数: 1

Abstract

Abstract The aim of our paper is to evaluate the maximum Shannon (syntactic) information carried through a video lecture. To achieve the aim, we have considered a natural lecture delivered by a lecturer as a signal transmitted over the physical communication channel consisting of a sound sub-channel and light sub-channel. Receivers are eyes and ears of listeners whose physical characteristics are taken into account. The physiological, neurological and cognitive aspects of the problem are neglected in calculations. The method has been developed to calculate the absolute maximum values of Shannon information characteristics of a natural lecture basing on the capacity formula of continuous communication channel and physical considerations taken into account for the first time, to our knowledge. Maximum Shannon information characteristics (entropies of sound and light frames, amounts of total acoustical and optical information, capacities of sound and light sub-channels, total amount of information and total capacity) of a natural lecture perceived by the audience have been calculated. These values are the upper bounds of a video lecture. The obtained results are discussed in the paper. After some modification, the proposed method can be practically applied for the optimization of both natural and video lectures because there is some correlation between syntactic and semantic information characteristics.
在一次演讲中提供最多的香农信息
摘要本文的目的是评估视频讲座中所携带的最大香农(句法)信息。为了实现这一目标,我们将讲师的自然演讲视为通过由声音子通道和光子通道组成的物理通信通道传输的信号。接受者是听众的眼睛和耳朵,他们的身体特征被考虑在内。在计算中忽略了问题的生理、神经和认知方面。据我们所知,首次在连续通信信道容量公式的基础上,考虑物理因素,提出了计算自然讲座香农信息特征绝对最大值的方法。计算了听众感知到的自然讲座的最大香农信息特征(声光帧熵、总声光信息量、声光子通道容量、总信息量和总容量)。这些值是视频讲座的上界。本文对所得结果进行了讨论。经过一定的修改,该方法可以实际应用于自然讲座和视频讲座的优化,因为语法和语义信息特征之间存在一定的相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.50
自引率
16.70%
发文量
41
审稿时长
5 weeks
期刊介绍: Latvian Journal of Physics and Technical Sciences (Latvijas Fizikas un Tehnisko Zinātņu Žurnāls) publishes experimental and theoretical papers containing results not published previously and review articles. Its scope includes Energy and Power, Energy Engineering, Energy Policy and Economics, Physical Sciences, Physics and Applied Physics in Engineering, Astronomy and Spectroscopy.
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