Centralization of the Content Industry

Following the 1980s a sweeping restructuring of commercial media power has happened. While some firms have grown through expansion others extended through mergers and acquisitions. Examples are Time & Warner & Turner & AOL; Viacom & Paramount & Blockbusters or News Corp. & Triangle & 20th Century Fox & Metromedia TV.

In recent years those developments have led to the rise of transnational media giants, resulting in the domination of the global media system by about ten huge conglomerates. These have interests in numerous media industries, ranging from film production, magazines, newspapers, book publishing and recorded music to TV and radio channels and networks, but also include retail stores, amusement parks and digital media products.

Behind these firms are about three or four dozen smaller media companies, which primarily engage in local, national or niche markets. In short, the overwhelming majority of the world's content production facilities and distribution channels lies in the hands of approximately fifty enterprises.

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The plastic card invasion

The plastic card invasion.

The tendency of modern data-driven economies is to structure economic activity in such a way that an increasing amount of data is generated. For example, the fact that only a few years ago few people in continental Europe used a credit card, and that now almost everybody who has a bank account also has a credit card, shows that payment by credit card is preferred to anonymous cash transaction. If somebody pays by credit card, there are computers that register the transaction. They record who paid what amount where, and for what purpose. This is valuable information. It allows businesses to "better know their customers". Credit card companies today belong to the largest data repositories anywhere. However, credit card companies have tried to introduce cash cards, or "electronic purses", plastic cards which can be used in lieu of cash in shops - a type of payment, that is not really catching on. In the small town of Ennis, Ireland's "information age town" a field test carried out by Visa, found that people are extremely reluctant to change their cash into bits. "It is just too modern", was the conclusion of an Ennis shopkeeper.

Credit cards may be the most common, but certainly not the only way in which an economic activity produces a data surplus. In the end, the data surplus generated by a credit card is limited to just a few indicators. The tendency of the data body industry is to collect as much data as possible from each single transaction. Therefore, a range of new plastic card applications is emerging.

Most big retailers or service industries, offer customer cards which reward customers with certain discounts or gifts when used frequently. However, the cost of these discounts is easily set off by the value consumer data that is generated each time a card is pulled through the magnetic reading device. Frequent-flyer cards are among the most common plastic data-collecting devices. Often such frequent-flyer cards are also credit cards, in which case travel and consumption data are already combined at the point of sale, creating further rationalisation of the process.

Electronic networks have created a general tendency to move to move marketing decisions to the point of sale, rather than locating them in central locations. This way, the marketing process becomes cheaper and more efficient for the company.

The ideal situation for the data body industry and for government bureaucracy would be a complete centralised storage and management of people's data, and a collection process the pass unnoticed and ensures that the data in question are always current. Many efforts in this direction have been undertaken. One of the most recent such projects is called the smart card. Also referred to as chip cards (because it operates not just with a magnetic stripe but also an computer chip) smart cards are multi-application "intelligent" plastic cards that carry a lot more than the usual information about its holder. For example, a smart card can carry details about right of access to facilities, credit information, social security, and electoral status all in one. Technically there are no limits to the type of information stored on smart cards. In principle it is possible to store an individual's entire data body on a card. Not surprisingly, smart card technologies have been most readily accepted in places with a lack of a privacy protection culture, such as the US, the UK, Spain, and some Latin American Countries.

The Irish town of Ennis, although striving to become "one of the technologically most advanced towns in the world" may have frustrated the expectations of the plastic card industry. Yet this is only a minute, if embarrassing, setback on the path towards global rationalisation of data collection. The economic benefits which the plastic card data collection technologies promises for retailers, E-commerce, marketing and bureaucracies all over the world have given rise to a wealth of research programmes, field tests, projects and government policies, all aimed at promoting the data body economy and adopting it as the business model of the future.

Links to plastic card trade associations:

Card Europe - Association for Smart Card and Related Industries

AIM - Global Trade Association for Automatic Identification and Data Collection

Card Forum

Smart Card Industry Association

Links to plastic card research programmes:

MIT (Massachusetts Institute of Technology)

Ohio University

Pittsburgh University

Cranfield University

Links to publications:

Card Technology Magazine

Links to EU research programmes

ADEPT2

COCLICO

COST219

DISTINCT

SAMPO

SATURN

SOSCARD

Producers

Schlumberger

Gemplus

Bull

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Leitrim Station

Latitude: 45.33, Longitude: -75.6

At Canadian Forces Station Leitrim collection of foreign signals intelligence is collected. Foreign radio, radar and other electronic emissions are intercepted and analyzed to provide foreign intelligence to the Canadian government. Leitrim contains a wide variety of antennae, including a Pusher HF-DF circularly-disposed antenna array (CDAA), three other large circular arrays, four satellite dishes, and a number of other, small antennae. The targets of Leitrim's dishes are probably Mexican and/or Brazilian communications satellites. Both countries' satellite constellations were established in 1985, at about the same time as Leitrim's new dishes started to be installed. A focus on these satellites would also explain CSE's rumoured increase in Spanish language activities.

Source: http://watserv1.uwaterloo.ca/~brobinso/cse.html

http://watserv1.uwaterloo.ca/~brobinso/cse.ht...
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Fiber-optic cable networks

Fiber-optic cable networks may become the dominant method for high-speed Internet connections. Since the first fiber-optic cable was laid across the Atlantic in 1988, the demand for faster Internet connections is growing, fuelled by the growing network traffic, partly due to increasing implementation of corporate networks spanning the globe and to the use of graphics-heavy contents on the World Wide Web.

Fiber-optic cables have not much more in common with copper wires than the capacity to transmit information. As copper wires, they can be terrestrial and submarine connections, but they allow much higher transmission rates. Copper wires allow 32 telephone calls at the same time, but fiber-optic cable can carry 40,000 calls at the same time. A capacity, Alexander Graham Bell might have not envisioned when he transmitted the first words - "Mr. Watson, come here. I want you" - over a copper wire.

Copper wires will not come out of use in the foreseeable future because of technologies as DSL that speed up access drastically. But with the technology to transmit signals at more than one wavelength on fiber-optic cables, there bandwidth is increasing, too.

For technical information from the Encyclopaedia Britannica on telecommunication cables, click here. For technical information from the Encyclopaedia Britannica focusing on fiber-optic cables, click here.

An entertaining report of the laying of the FLAG submarine cable, up to now the longest fiber-optic cable on earth, including detailed background information on the cable industry and its history, Neal Stephenson has written for Wired: Mother Earth Mother Board. Click here for reading.

Susan Dumett has written a short history of undersea cables for Pretext magazine, Evolution of a Wired World. Click here for reading.

A timeline history of submarine cables and a detailed list of seemingly all submarine cables of the world, operational, planned and out of service, can be found on the Web site of the International Cable Protection Committee.

For maps of fiber-optic cable networks see the website of Kessler Marketing Intelligence, Inc.

http://www.britannica.com/bcom/eb/article/4/0...
http://www.britannica.com/bcom/eb/article/4/0...
http://www.wired.com/wired/archive/4.12/ffgla...
http://www.pretext.com/mar98/features/story3....
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