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13.19. Explain what is meant by protection ratio. A TV/FM carrier operates at a modulation index of 2.619, the top modulating frequency being 4.2 MHz. Calculate the protection ratio required for quality factors of (a) 4.2 and (b) 4.5. How do these values compare with the specified interference objective of [C/I ]pb 22 dB 13.20. Explain what is meant by energy dispersal and how this may be achieved. 13.21. Explain what is meant by coordination in connection with interference assessment in satellite circuits.
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CCIR Recommendation 523. 1978. Maximum Permissible Levels of Interference in a Geostationary Satellite Network in the Fixed Satellite Service Using 8-bit PCM Encoded Telephony Caused by Other Networks of This Service. 14th Plenary Assembly, Vol. IV, Kyoto. CCIR Report 391-3. 1978. Radiation Diagrams of Antennae for Earth Stations in the Fixed Satellite Service for Use in Interference Studies and for the Determination of a Design Objective. 14th Plenary Assembly, Vol. IV, Kyoto. CCIR Report 454-3. 1982. Method of Calculation to Determine Whether Two GeostationarySatellite Systems Require Coordination. 15th Plenary Assembly, Vol. IX, Part 1, Geneva. CCIR Report 634-2. 1982. Maximum Interference Protection Ratio for Planning Television Broadcast Systems. Broadcast Satellite Service (Sound and Television), Vols. X and IX, Part 2, Geneva. Chouinard, G. 1984. The Implications of Satellite Spacing on TVRO Antennas and DBS Systems. Canadian Satellite User Conference, Ottawa. ITU. 1985. Handbook on Satellite Communications (FSS). Geneva. ITU. 1986. Radio Regulations. Geneva. Jeruchim, M. C., and D. A. Kane. 1970. Orbit/ Spectrum Utilization Study, Vol. IV. General Electric Doc. No. 70SD4293, December 31. Microwave Filter Company, Inc. 1984. TI and TVROs: A Brief Troubleshooting Guide to Suppressing Terrestrial Interference at 3.7 4.2 GHz TVRO Earth Stations. Sharp, G. L. 1983. Reduced Domestic Satellite Orbital Spacings at 4/6 GHz. FCC/OST R83-2, May. Sharp, G. L. 1984a. Reduced Domestic Satellite Orbit Spacing. AIAA Communications Satellite Systems Conference, Orlando, FL, March 18 22.
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14.1 Introduction A transponder channel aboard a satellite may be fully loaded by a single transmission from an earth station. This is referred to as a single access mode of operation. It is also possible, and more common, for a transponder to be loaded by a number of carriers. These may originate from a number of earth stations geographically separate, and each earth station may transmit one or more of the carriers. This mode of operation is termed multiple access. The need for multiple access arises because more than two earth stations, in general, will be within the service area of a satellite. Even so-called spot beams from satellite antennas cover areas several hundred miles across. The two most commonly used methods of multiple access are frequencydivision multiple access (FDMA) and time-division multiple access (TDMA). These are analogous to frequency-division multiplexing (FDM) and time-division multiplexing (TDM) described in Chaps. 9 and 10. However, multiple access and multiplexing are different concepts, and as pointed out in CCIR Report 708 (1982), modulation (and hence multiplexing) is essentially a transmission feature, whereas multiple access is essentially a traffic feature. A third category of multiple access is code-division multiple access (CDMA). In this method each signal is associated with a particular code that is used to spread the signal in frequency and/or time. All such signals will be received simultaneously at an earth station, but by using the key to the code, the station can recover the desired signal by means of correlation. The other signals occupying the transponder channel appear very much like random noise to the correlation decoder. Multiple access also may be classified by the way in which circuits are assigned to users (circuits in this context implies one communication
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