Copyright Management and Control Systems: Metering

Metering systems allow copyright owners to ensure payment to or at the time of a consumer's use of the work. Those technologies include:

Hardware Devices

Those have to be acquired and installed by the user. For example under a debit card approach, the user purchases a debit card that is pre-loaded with a certain amount of value. After installation, the debit card is debited automatically as the user consumes copyrighted works.

Digital Certificates

Hereby a certification authority issues to a user an electronic file that identifies the user as the owner of a public key. Those digital certificates, besides information on the identity of the holder can also include rights associated with a particular person. Vendors can so control access system resources, including copyrighted files, by making them available only to users who can provide a digital certificate with specified rights (e.g. access, use, downloading).

Centralized Computing

Under this approach all of the executables remain at the server. Each time the executable is used, the user's computer must establish contact with the server, allowing the central computer to meter access.

Access Codes

Access code devices permit users to "unlock" protective mechanisms (e.g. date bombs or functional limitations) embedded in copyrighted works. Copyright owners can meter the usage of their works, either by unlocking the intellectual property for a one-time license fee or by requiring periodic procurement of access codes.

Copyright Clearinghouses

Under this approach copyright owners would commission "clearinghouses" with the ability to license the use of their works. A user would pay a license fee to obtain rights concerning the intellectual property.


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Recent "Digital Copyright" Legislation: European Union

Directive on Copyright and Related Rights in the Information Society

In November 1996 the European Commission adopted a communication concerning the follow-up to the Green Paper on copyright and related rights in the information society. The proposed Directive aims at transposing into Community law the main international obligations arising from the two treaties on copyright and related rights adopted within the framework of the WIPO in December 1996 (WIPO Performances and Phonogram Treaty and WIPO Copyright Treaty). It applies to provisions relating to:

- the legal protection of computer programs

- rental right, lending right and certain rights related to copyright in the field of intellectual property

- copyright and related rights applicable to broadcasting of programs by satellite and cable retransmission

- the term of protection of copyright and certain related rights

- the legal protection of databases

The proposal was first presented by the Commission in January 1998, amended in May 1999 and currently is at second reading before the Parliament. Final adoption of the Directive could take place at the end of 2000 or the beginning of 2001 respectively.

A full-text version for download (pdf file) of the amended proposal for a Directive on copyright and related rights in the Information Society is available on the website of the European Commission (DG Internal Market): http://www.europa.eu.int/comm/internal_market/en/intprop/intprop/docs/index.htm

General critique concerning the proposed EU Directive includes:

- Open networks
The new law could require (technological) surveillance of communications to ensure enforcement. Also because Service Providers might be legally liable for transmitting unauthorized copies, the might in turn have to deny access to anybody who could not provide them with financial guaranties or insurance.

- Interoperable systems
The draft could negate the already established right in EU law for software firms to make their systems interoperable with the dominant copyright protected systems. This would be a threat to the democratic and economic rights of users.

- Publicly available information
It is yet unclear whether new legal protections against the bypassing of conditional access technology apply only for content with an exclusive right. If the content is already in the public domain, then there can be no possible violation of copyright law just from gaining access to it.

Comments from the library, archives and documentation community on the amended Directive embrace:

The Library Association
http://www.la-hq.org.uk/directory/prof_issues/dcrris2.html

EBLIDA (European Bureau of Library, Information and Documentation Associations)
http://www.eblida.org/lobby/position/ampos2fi.htm

Society of Archivists (U.K.) and Public Record Office (U.K.)
http://www.pro.gov.uk/about/copyright/copyrightdraft.htm

EFPICC (European Fair Practices In Copyright Campaign) http://www.eblida.org/efpicc/comments.htm

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UNIVAC

Built by Remington Rand in 1951 the UNIVAC I (Universal Automatic Computer) was one of the first commercially available computers to take advantage of the development of the central processing unit (CPU). Both the U.S. Census bureau and General Electric owned UNIVACs. Speed: 1,905 operations per second; input/output: magnetic tape, unityper, printer; memory size: 1,000 12-digit words in delay line; technology: serial vacuum tubes, delay lines, magnetic tape; floor space: 943 cubic feet; cost: F.O.B. factory U.S.$ 750,000 plus U.S.$ 185,000 for a high speed printer.

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John von Neumann

b. December 3, 1903, Budapest, Hungary
d. February 8, 1957, Washington, D.C., U.S.

Mathematician who made important contributions in quantum physics, logic, meteorology, and computer science. His theory of games had a significant influence upon economics. In computer theory, von Neumann did much of the pioneering work in logical design, in the problem of obtaining reliable answers from a machine with unreliable components, the function of "memory," machine imitation of "randomness," and the problem of constructing automata that can reproduce their own kind.

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Alan Turing

b. June 23, 1912, London, England
d. June 7, 1954, Wilmslow, Cheshire

English mathematician and logician who pioneered in the field of computer theory and who contributed important logical analyses of computer processes. Many mathematicians in the first decades of the 20th century had attempted to eliminate all possible error from mathematics by establishing a formal, or purely algorithmic, procedure for establishing truth. The mathematician Kurt Gödel threw up an obstacle to this effort with his incompleteness theorem. Turing was motivated by Gödel's work to seek an algorithmic method of determining whether any given propositions were undecidable, with the ultimate goal of eliminating them from mathematics. Instead, he proved in his seminal paper "On Computable Numbers, with an Application to the Entscheidungsproblem [Decision Problem]" (1936) that there cannot exist any such universal method of determination and, hence, that mathematics will always contain undecidable propositions. During World War II he served with the Government Code and Cypher School, at Bletchley, Buckinghamshire, where he played a significant role in breaking the codes of the German "Enigma Machine". He also championed the theory that computers eventually could be constructed that would be capable of human thought, and he proposed the Turing test, to assess this capability. Turing's papers on the subject are widely acknowledged as the foundation of research in artificial intelligence. In 1952 Alan M. Turing committed suicide, probably because of the depressing medical treatment that he had been forced to undergo (in lieu of prison) to "cure" him of homosexuality.

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