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Atzeni, C., G. Manes, and L. Masotti. 1975. Programmable Signal Processing by Analog Chirp-Transformation using SAW Devices. Ultrasonics Symposium Proceedings, IEEE, New York. CCIR Report 708 (mod I). 1982. Multiple Access and Modulation Techniques in the Fixed Satellite Service. 14th Plenary Assembly, Geneva. Dixon, R. C. 1984. Spread Spectrum Systems. Wiley, New York.
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Freeman, R. L. 1981. Telecommunications Systems Engineering. Wiley, New York. Gagliardi, R. M. 1991. Satellite Communications, 2d ed. Van Nostrand Reinhold, New York. Ha, T. T. 1990. Digital Satellite Communications, 2d ed. McGraw-Hill, New York. Hays, R. M., W. R. Shreve, D. T. Bell, Jr., L. T. Claiborne, and C. S. Hartmann. 1975. Surface Wave Transform Adaptable Processor System. Ultrasonics Symposium Proceedings, IEEE, New York. Hays, Ronald M., and C. S. Hartmann. 1976. Surface Acoustic Wave Devices for Communications. Proc. IEEE, Vol. 64, No. 5, May, pp. 652 671. IEEE Proceedings. 1976. Special Issue on Surface Acoustic Waves. May INTELSAT. 1980. Interfacing with Digital Terrestrial Facilities. ESS-TDMA-1-8, p. 11. Lewis, J. R. 1982. Satellite Switched TDMA. Colloquium on the Global INTELSAT VI Satellite System. Digest No. 1982/76, IEEE, London. Maines, J. D., and E. G. S. Paige. 1976. Surface Acoustic Wave Devices for Signal Processing Applications. Proc. IEEE, Vol. 64, No. 5, May. Maral, G., and M. Bousquet. 1998. Satellite Communications Systems. Wiley, New York. Martin, J. 1978. Communications Satellite Systems. Prentice-Hall, Englewood Cliffs, NJ. Miya, K. (ed.). 1981. Satellite Communications Technology. KDD Engineering and Consulting, Inc., Japan. Morgan, D. P. 1985. Surface-Wave Devices for Signal Processing. Elsevier, New York. Nudd, G. R., and O. W. Otto. 1975. Chirp Signal Processing Using Acoustic Surface Wave Filters. Ultrasonics Symposium Proceedings, IEEE, New York. Nuspl, P. P., and R. de Buda. 1974. TDMA Synchronization Algorithms. IEEE EASCON Conference Record, Washington, DC. Ore, O. 1988. Number Theory and Its History. Dover Publications, New York. Pratt, T., and C. W. Bostian. 1986. Satellite Communications. Wiley, New York. Rosner, R. D. 1982. Packet Switching. Lifetime Learning Publications, New York. Scarcella, T., and R. V. Abbott. 1983. Orbital Efficiency Through Satellite Digital Switching. IEEE Communications Magazine, Vol. 21, No. 3, May. Sciulli, J. A., and S. J. Campanella. 1973. A Speech Predictive Encoding Communication System for Multichannel Telephony. IEEE Transactions on Communications, Vol. Com-21, No. 7, July. Spilker, J. J. 1977. Digital Communications by Satellite. Prentice-Hall, Englewood Cliffs, NJ. Stevenson, S., W. Poley, L. Lekan, and J. Salzman. 1984. Demand for Satellite-Provided Domestic Communications Services to the Year 2000. NASA Tech. Memo. 86894, November. Watt, N. 1986. Multibeam SS-TDMA Design Considerations Related to the Olympus Specialised Services Payload. IEE Proc., Vol. 133, Part F, No. 4, July. Zaharov, V. F. C., M. Gutierrez, 2001. Smart Antenna Application for Satellite Communications Systems with Space Division Multiple Access. Journal of Radio Electronics N2 2001, at http://jre.cplire.ru/jre/feb01/1/text.html#fig1
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15.1 Introduction The word network has a variety of meanings, for example, in electrical circuits a network is an interconnection of two or more circuit elements such as resistors, inductors, capacitors, amplifiers and oscillators. If the network contains at least one closed path it is called a circuit (Hayt et al., 1978). In telecommunications work, a network is a connection of devices such as telephones, computers, switches, and printers. (And of course people can network together, which gives yet another meaning to the word). Of particular interest to this chapter are broadband networks. The word broadband in the context of telecommunication networks means that the network is designed to carry voice, data, video, and image type signals. The Internet is a broadband network. This mixture of signals can also be carried by a method known as asynchronous transfer mode (ATM). In this chapter the word network will mean a broadband network. A key feature of broadband networks is the way in which information is assembled into packets which can be transmitted on an as needed basis. This differs from previous methods where information was (and still is in many cases) transmitted as a continuous signal. Packet transmission as originally designed for data (such as computer output and email) was found to be unsuited for voice transmission, the packets being too large. With mixed packets of voice and data, the large data packets could introduce unacceptable delays in the reassembly of the voice packets. The ATM, which uses relatively small packets, known as cells, was designed specifically for broadband traffic (voice, data, video, images). The ATM is described in Sec. 15.4.
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