ssrs barcode image Direct Broadcast Satellite (DBS) Television in Software

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Direct Broadcast Satellite (DBS) Television
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16.15. Following the procedure given in Example 16.2, calculate the rain attenuation for 0.01 percent of time and the corresponding [Eb/N0] for the system in Prob. 16.14. The ground station may be assumed to be at mean sea level. State if satisfactory reception occurs under these conditions. 16.16. A DBS home receiver is being installed at a location 60 N, 155 W to receive from a satellite cluster at 157 . Calculate the look angles for the antenna. It is hoped to use an 18-in. antenna, the antenna efficiency being 0.55, and the effect of surface irregularities may be ignored. The system noise temperature is 200 K. The downlink frequency may be taken as 12.5 GHz, the [EIRP] as 55 dBW, and the transponder bit rate as 40 Mb/s. Miscellaneous transmission losses may be ignored. Calculate the received clear sky [Eb/N0], and state whether this will make for satisfactory reception. 16.17. Following the procedure given in Example 16.2, calculate the rain attenuation for the 0.01 percent of time, and the corresponding [Eb/N0] for the system in Prob. 16.16. The ground station may be assumed to be at mean sea level. State if satisfactory reception occurs under these conditions. 16.18. A DBS home receiver is being installed at a location 15 S, 50 W to receive from a satellite cluster at 61.5 . Calculate the look angles for the antenna. Calculate also the diameter of antenna needed to provide a 5-dB margin approximately on the received [Eb/N0] under clear-sky conditions. An antenna efficiency of 0.55 may be assumed, and the effect of surface irregularities may be ignored. The antenna noise temperature is 70 K, the equivalent noise temperature at the input of the LNA is 120 K, and miscellaneous transmission losses are 2 dB. The downlink frequency may be taken as 12.5 GHz, the [EIRP] as 55 dBW, and the transponder bit rate as 40 Mb/s. 16.19. For the system described in Prob. 16.18, determine the rainfall conditions that will just cause loss of signal. The ground station may be assumed to be at mean sea level. 16.20. For HDTV the R, G, and B colors in Eq. (16.6) are restored by the matrix multiplication
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where the 3 3 matrix is M [the inverse of M in Eq. (16.6)]. Verify that this matrix multiplication is correct. 16.21. Using the data from Table 16.4 calculate the highest video frequency for formats Nos. 12 and 15. Use a Kell factor of 0.7 for No. 12 and 0.9 for No. 15.
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References
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Baylin, F., and B. Gale. 1991. Ku-Band Satellite TV. Baylin Publications, Boulder, Colorado. Bhatt, B., David B., and D. Hermreck. 1997. Digital Television: Making It Work. IEEE Spectrum, Vol. 34, No. 10, October, pp. 19 28. Booth, S. A. 1999. Digital TV in the U.S. IEEE Spectrum, Vol. 36, No. 3, March, pp. 39 46. Breynaert, D., 2005. Analysis of the bandwidth efficiency of DVB-S2 in a typical data distribution network. CCBN, Beijing, March, at www.newtec.com.sg/news/articles/ Beijing2005%20DVBS2%20whitepaper%202feb05%20MDOWaylon.pdf-29 Chaplin, J. 1992. Development of Satellite TV Distribution and Broadcasting. Electron. Commun., Vol. 4, No. 1, February, pp. 33 41. Dishnetwork Web page, at http://www.dishnetwork.com/ Koenen, R. 1999. MPEG-4, Multimedia for Our Time. IEEE Spectrum, Vol. 36, No. 2, pp. 26 33. February, at http://www.chiariglione.org/mpeg/tutorials/papers/koenen/ mpeg-4.htm Kuhn, K. J. 1995. HDTV An Introduction, at http://www.ee.washington.edu/conselec/ CE/kuhn/hdtv Mark, S. 2005. HDTV Pushes Telcos Toward MPEG-4 Light Reading. June 24, at http://www.lightreading.com/document.asp doc_id 76252 Maxim/Dallas. 2001. Application Note 750, Bandwidth Versus Video Resolution, at http://www.maxim-ic.com/appnotes.cfm/appnote_number/750 Mead, D. C. 2000. Direct Broadcast Satellite Communications. Addison-Wesley, Reading, MA. MPEG Web page, at http://www.mpeg.org/ Netravali, A., and A. Lippman. 1995. Digital Television: A Perspective. Proc. IEEE, Vol. 83, No. 6, June, pp. 834 842. Prichard, W. L., and M. Ogata. 1990. Satellite Direct Broadcast. Proc. IEEE, Vol. 78, No. 7, July, pp. 1116 1140. Reinhart, E. E. 1990. Satellite Broadcasting and Distribution in the United States. Telcommun. J., Vol. 57, No. V1, June, pp. 407 418. Roddy, D., and J. Coolen. 1995. Electronic Communications, 4th ed. Prentice-Hall, Englewood Cliffs, NJ. Sullivan, G. J., P. Topiwala, and Ajay Luthra, 2004. The H.264/AVC Advanced Video Coding Standard: Overview and Introduction to the Fidelity Range Extensions. SPIE Conference on Applications of Digital Image Processing XXVII, Special Session on Advances in the New Emerging Standard H.264/AVC, August. Denver, Colorado. Sweet, W. 1997. Chiariglione and the Birth of MPEG. IEEE Spectrum, Vol. 34, No. 9, pp. 70 77. talk Satellite. 2004. Spectra Licensing Group Announces Gilat s Entrance into the Turbo Code Licensing Program for DVB-RCS Satellite Applications. December 15, at www.talksatellite.com/EMEAdoc Timefordvd.com. 2004. Digital TV & HDTV Tutorial. (Last update on 3.9.2004). Wipro. 2004. MPEG-4 AVC/H.264 Video Coding. White paper. September, at http://www.wipro.com/insights/embedded.htm Yoshida, J. 2003. Hughes goes retro in digital satellite TV coding. EETimesUK, November, at www.eetuk.com/tech/news/OEG20031110S0081
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