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Prokhorov Academy of Engineering (Siberian Branch)"}]}},{"245":{"ind1":"0","ind2":"0","subfields":[{"$a":"THE FOUNDATIONS OF THE THEORY OF CONSTRUCTION OF NEW-GENERATION MODEMS"},{"$c":"\u00d0\u009c\u00d0\u00be\u00d0\u00bd\u00d0\u00be\u00d0\u00b3\u00d1\u0080\u00d0\u00b0\u00d1\u0084\u00d0\u00b8\u00d1\u008f"}]}},{"260":{"ind1":"1","ind2":"#","subfields":[{"$a":"\u00d0\u009c\u00d0\u00b5\u00d0\u00bb\u00d1\u008c\u00d0\u00b1\u00d1\u0083\u00d1\u0080\u00d0\u00bd"},{"$b":"AUS PUBLISHERS"},{"$c":"2022"}]}},{"300":{"ind1":"#","ind2":"#","subfields":[{"$a":"164 p."}]}},{"500":{"ind1":"#","ind2":"#","subfields":[{"$a":"The monography presents the fundamentals of the theory of construction\r\nnew-generation modems. Modems are built on the principles of statistical\r\ncommunication theory, based on the use of a random signal (chaos) as a carrier\r\nof information. In such a signal, a characteristic function is modulated, which\r\nis a fundamental characteristic of a random process. The signal modulation and\r\ndemodulation method is patented and allows you to create modems with efficiency\r\nand noise immunity indicators several orders of magnitude higher than those\r\nof the known devices of the same name. New-generation modems immediately\r\nimprove the technical characteristics of digital IT equipment by several orders\r\nof magnitude, since they work without errors in wired and radio channels when\r\nreceiving one hundred duodecillion of binary symbols.\r\nThe book is recommended for scientists and specialists in the field of digital\r\ncommunication systems, statistical radio engineering and instrumentation, and\r\nmay be useful for graduate students, masters and students of relevant specialties."},{"$a":"new-generation modems, information, signal, signal modulation and demodulation method, IT equipment, digital communication, radio engineering"},{"$a":"10.26526\/monography_628a8925151ca0.71125494"}]}},{"510":{"ind1":"0","ind2":"#","subfields":[{"$a":"Lukach E. Characteristic functions \/ trans. from English; under. ed. by V.M. Zolotarev. \u00e2\u0080\u0093 Moscow: Nauka, 1979. \u00e2\u0080\u0093 424 p."}]}},{"510":{"ind1":"0","ind2":"#","subfields":[{"$a":"Veshkurtsev Yu.M. Applied analysis of the characteristic function of random processes. \u00e2\u0080\u0093 Moscow: Radio and communication, 2003. \u00e2\u0080\u0093 204 p."}]}},{"510":{"ind1":"0","ind2":"#","subfields":[{"$a":"Veshkurtsev Yu.M., Veshkurtsev N.D., Titov D.A. Instrumentation based on the characteristic function of random processes. \u00e2\u0080\u0093 Novosibirsk: publishing house ANS \"SibAK\", 2018. \u00e2\u0080\u0093 182"}]}},{"510":{"ind1":"0","ind2":"#","subfields":[{"$a":"Levin B.R. Theoretical Foundations of Statistical Radio Engineering. \u00e2\u0080\u0093 Moscow: Sov. radio, 1966. \u00e2\u0080\u0093728 p."}]}},{"510":{"ind1":"0","ind2":"#","subfields":[{"$a":"Goryainov V.T., Zhuravlev A.G., Tikhonov V.I. Statistical radio engineering. Examples and tasks: textbook for universities \/ under. ed. by V.I. 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Physical, 1950. \u00e2\u0080\u0093 V. 14. \u00e2\u0080\u0093 No. 2. \u00e2\u0080\u0093 P. 146 - 173."}]}},{"510":{"ind1":"0","ind2":"#","subfields":[{"$a":"Veshkurtsev Yu.M., Veshkurtsev N.D. Statistical control of substances. \u00e2\u0080\u0093 Novosibirsk: publishing house ANS \"SibAK\", 2016. \u00e2\u0080\u0093 64 p."}]}},{"510":{"ind1":"0","ind2":"#","subfields":[{"$a":"Veshkurtsev Yu.M. Noise immunity and efficiency of the new modulation method \/\/ international scientific journal \"Science and World\", 2019. \u00e2\u0080\u0093 No. 3 (67). Volume 2. \u00e2\u0080\u0093 P. 8 - 16."}]}},{"510":{"ind1":"0","ind2":"#","subfields":[{"$a":"Gradshtein I.S., Ryzhik I.M. Tables of integrals, series and products. Under ed. by A. Jeffrey, D. Zwillinger. \u00e2\u0080\u0093 7th edition: Trans. from eng. under ed. by V.V. Maksimov. \u00e2\u0080\u0093 St. Petersburg: publishing house \"BHV-Petersburg\", 2011. \u00e2\u0080\u0093 1232 p."}]}},{"510":{"ind1":"0","ind2":"#","subfields":[{"$a":"Veshkurtsev Yu.M. Noise immunity of a modem based on dynamic chaos according to the Veshkurtsev law in a channel with Gaussian noise \/\/ Digital Signal Processing, 2019. \u00e2\u0080\u0093 No. 4. \u00e2\u0080\u0093 P. 42 \u00e2\u0080\u0093 45."}]}},{"510":{"ind1":"0","ind2":"#","subfields":[{"$a":"Veshkurtsev Yu.M. Signal modulation and demodulation method \/\/ Electrosvyaz, 2019. \u00e2\u0080\u0093 No. 5. \u00e2\u0080\u0093 P. 66 \u00e2\u0080\u0093 69."}]}},{"510":{"ind1":"0","ind2":"#","subfields":[{"$a":"Veshkurtsev Yu.M. Theoretical foundations of statistical modulation of a quasi-random signal \/\/ international scientific journal \"Science and World\", 2019. \u00e2\u0080\u0093 No. 4 (68). V. 1. \u00e2\u0080\u0093 P. 36 \u00e2\u0080\u0093 46."}]}},{"510":{"ind1":"0","ind2":"#","subfields":[{"$a":"Tikhonov V.I. 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No. 22."}]}},{"510":{"ind1":"0","ind2":"#","subfields":[{"$a":"Lyapunov A.M. On a theorem of the theory of probability. One general proposition of probability theory. A new form of the theorem on the limit of probabilities \/\/ Collect. edit.: In 6 volumes. \u00e2\u0080\u0093 Moscow, 1954. \u00e2\u0080\u0093 V.1. \u00e2\u0080\u0093 P. 125-176."}]}},{"510":{"ind1":"0","ind2":"#","subfields":[{"$a":"Veshkurtsev Yu.M. Formation of a reference oscillation in the statistical analysis of phase fluctuations \/\/ Instruments and Experimental Technique, 1977. \u00e2\u0080\u0093 No. 3. \u00e2\u0080\u0093 P. 7 -13."}]}},{"510":{"ind1":"0","ind2":"#","subfields":[{"$a":"Baskakov S.I. Radio engineering circuits and signals. Textb. for universities. \u00e2\u0080\u0093 2nd ed., Rev. and add. \u00e2\u0080\u0093 M.: Higher School, 1988. \u00e2\u0080\u0093 448 p."}]}},{"510":{"ind1":"0","ind2":"#","subfields":[{"$a":"Sudakov Yu.I. 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