The Mathematical Theory of Information

The Mathematical Theory of Information

Einband:
Fester Einband
EAN:
9781402070648
Untertitel:
The Springer International Series in Engineering and Computer Science 684
Genre:
Elektrotechnik
Autor:
Jan Kåhre
Herausgeber:
Springer US
Auflage:
2002
Anzahl Seiten:
524
Erscheinungsdatum:
30.06.2002
ISBN:
1402070640

The general concept of information is here, for the first time, defined mathematically by adding one single axiom to the probability theory. This Mathematical Theory of Information is explored in fourteen chapters: 1. Information can be measured in different units, in anything from bits to dollars. We will here argue that any measure is acceptable if it does not violate the Law of Diminishing Information. This law is supported by two independent arguments: one derived from the Bar-Hillel ideal receiver, the other is based on Shannon's noisy channel. The entropy in the 'classical information theory' is one of the measures conforming to the Law of Diminishing Information, but it has, however, properties such as being symmetric, which makes it unsuitable for some applications. The measure reliability is found to be a universal information measure. 2. For discrete and finite signals, the Law of Diminishing Information is defined mathematically, using probability theory and matrix algebra. 3. The Law of Diminishing Information is used as an axiom to derive essential properties of information. Byron's law: there is more information in a lie than in gibberish. Preservation: no information is lost in a reversible channel. Etc. The Mathematical Theory of Information supports colligation, i. e. the property to bind facts together making 'two plus two greater than four'. Colligation is a must when the information carries knowledge, or is a base for decisions. In such cases, reliability is always a useful information measure. Entropy does not allow colligation.

Inhalt
1. About Information.- 2. THE LAW OF DIMINISHING INFORMATION.- 3. GENERAL PROPERTIES OF INFORMATION.- 4. SPECIFIC INFORMATION MEASURES.- 5. SELECTED APPLICATIONS.- 6. INFODYNAMICS.- 7. STATISTICAL INFORMATION.- 8. ALGORITHMIC INFORMATION.- 9. CONTINUOUS SYSTEMS.- 10. CONTINUOUS INFORMATION.- 11. DETERMINISTIC DYNAMICS.- 12. CONTROL AND COMMUNICATION.- 13. INFORMATION PHYSICS.- 14. THE INFORMATION QUANTUM.- REFERENCES.- SYMBOLS.- (Re)Search hints by Jan Hajek, The Netherlands.


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