The public switched telephone network (PSTN) is the network of the world's public circuit-switched telephone networks, in much the same way that the Internet is the network of the world's public IP-based packet-switched networks. Originally a network of fixed-line analog telephone systems, the PSTN is now almost entirely digital, and now includes mobile as well as fixed telephones.
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Blogs about: Pstn. Featured Blog. BSNL to roll out 3G services by next month ... Find other items tagged with "pstn": Technorati Del.icio.us IceRocket. 24/7 Support ...en.wordpress.com/tag/pstn/Configuring a PSTN dialplan - CCIE Blog
Internetwork Expert's Blog provides free resources to help candidates pass the CCIE lab. ... Using RTP Loopback for PSTN Call Testing ...blog.internetworkexpert.com/2009/01/18/configuring-a-pstn-di...PSTN
PSTN information, news, reviews and analysis on PSTN ... VoIP & Gadgets Blog. VoIP & Gadget blog with the latest news in the VoIP and gadget space, wireless, ...blog.tmcnet.com/blog/tom-keating/tag/PSTNGoogle Talk to offer PSTN phone calls?
Google Talk to offer PSTN phone calls? A Google Apps multimedia training presentation shows Google Talk with " ... TrackBack URL : http://blog.tmcnet.com/mt/mt ...blog.tmcnet.com/blog/tom-keating/google/google-talk-to-offer...pstn Resources | ZDNet
White papers, case studies, technical articles, and blog posts relating to pstn ... Blog posts (9 results) Book chapters (1 results) Case studies (3 results) ...updates.zdnet.com/tags/PSTN.htmlThe public switched telephone network (PSTN) is the network of the world's public circuit-switched telephone networks, in much the same way that the Internet is the network of the world's public IP-based packet-switched networks. Originally a network of fixed-line analog telephone systems, the PSTN is now almost entirely digital, and now includes mobile as well as fixed telephones.
The PSTN is largely governed by technical standards created by the ITU-T, and uses E.163/E.164 addresses (more commonly known as telephone numbers) for addressing.
Architecture and context
The PSTN was the earliest example of traffic engineering to deliver Quality of Service (QoS) guarantees. A.K. Erlang (1878–1929) is credited with establishing the mathematical foundations of methods required to determine the amount and configuration of equipment and the number of personnel required to deliver a specific level of service.
In the 1970s the telecommunications industry conceived that digital services would follow much the same pattern as voice services, and conceived a vision of end-to-end circuit switched services, known as the Broadband Integrated Services Digital Network (B-ISDN). The B-ISDN vision has been overtaken by the disruptive technology of the Internet. Only the oldest parts of the telephone network still use analog technology for anything other than the last mile loop to the end user, and in recent years digital services have been increasingly rolled out to end users using services such as DSL, ISDN, FTTX and cable modem systems.
Many observers believe that the long term future of the PSTN is to be just one application of the Internet - however, the Internet has some way to go before this transition can be made. The QoS guarantee is one aspect that needs to be improved in the Voice over IP (VoIP) technology.
There are a number of large private telephone networks which are not linked to the PSTN, usually for military purposes. There are also private networks run by large companies which are linked to the PSTN only through limited gateways, like a large private branch exchange (PBX).
Early history
The first telephones had no network but were in private use, wired together in pairs. Users who wanted to talk to different people had as many telephones as necessary for the purpose. A user who wished to speak, whistled into the transmitter until the other party heard. Soon, however, a bell was added for signalling, and then a switchhook, and telephones took advantage of the exchange principle already employed in telegraph networks. Each telephone was wired to a local telephone exchange, and the exchanges were wired together with trunks. Networks were connected together in a hierarchical manner until they spanned cities, countries, continents and oceans. This was the beginning of the PSTN, though the term was unknown for many decades.
Automation introduced pulse dialing between the phone and the exchange, and then among exchanges, followed by more sophisticated address signaling including multi-frequency, culminating in the SS7 network that connected most exchanges by the end of the 20th century.
























