Regular higher education Eleventh Five-Year national planning materials Universities of the 21st century information and communication engineering planning textbook: Radio and lightwave transmission technology(Chinese Edition)
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LU CHUN LAN . YANG TAO . YU TONG BIN . DENG

Regular higher education Eleventh Five-Year national planning materials Universities of the 21st century information and communication engineering planning textbook: Radio and lightwave transmission technology(Chinese Edition) (2013)

Lieferung erfolgt aus/von: China, Volksrepublik NW

ISBN: 9787115262936 bzw. 7115262934, Sprache unbekannt, neu.

71,02 ($ 80,65)¹ + Versand: 8,81 ($ 10,00)¹ = 79,83 ($ 90,65)¹
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Lieferung aus: China, Volksrepublik, Versandkosten nach: DEU.
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paperback. New. Ship out in 2 business day, And Fast shipping, Free Tracking number will be provided after the shipment.Paperback. Pub Date: 2013 Pages: 384 in Publisher: People's Posts and Telecommunications Press regular higher education Eleventh Five-Year national planning materials Universities of the 21st century information and communication engineering planning textbook: Radio and lightwave transmission technology on the basis of the electromagnetic field theory. from the point of view of the transmission channel system complete exposition of the law of the transmission of radio waves and light waves channel. The book is divided into seven chapters. including: transmission line theory. metal waveguide and microstrip lines. dielectric waveguides and optical waveguide antenna basics. wire antennas. aperture antennas. radio wave propagation Introduction. The book introduces the guide Propagation of electromagnetic waves. as well as fiber-optic light waves. and also describes the basic law of the antenna to convert the basic principles of radiation of electromagnetic waves. and the freedom of electromagnetic wave propagation. In view of the rapid development of wireless optical communication technology in recent years. the regular higher education Eleventh Five-Year national planning textbook Universities of the 21st century information and communication engineering planning textbook: Radio and lightwave transmission technology also relates to wireless optical communication knowledge. The book is well organized. focused visualize abstract concepts. the field distribution of the icon image intuitive. rigorous mathematical derivation. The book arrangements more examples. with the right amount of exercises at the end of each chapter. Regular higher education Eleventh Five-Year national planning textbook Universities of the 21st century information and communication engineering planning textbook: Radio and lightwave transmission technology can be used as electronic information and communication class undergraduate textbook. as the electromagnetic field reference and the microwave technical disciplines Graduate Record Examination. the appropriate deletion of content for different professional teaching level teaching needs. Contents: Introduction Chapter 1 transmission line theory 1.1 microwave transmission line guided wave classification 1.1.2 1.1.1 distribution parameters of the transmission line and equivalent circuit 1.2 uniform transmission line equation and its solution 1.2.1 uniform transmission line equation 1.2.2-uniform transmission line equations 1.3 transmit power and efficiency of the three important parameters of the transmission characteristics and features of uniform transmission line parameters 1.3.1 uniform transmission line traveling wave transmission characteristics 1.3.2 uniform transmission line 1.4 transmission line transmission of power. efficiency and loss 1.4.1 1.4.2 transmission line loss 1.5 1.5.1 traveling wave state lines 1.5.3. 1.5.2 standing wave state standing wave state 1.6 Smith (SMITH) round Figure 1.6.1 impedance circle Figure 1.6.2 admittance circle diagram 1.7 lossless no Lossy Transmission Lines 3 state 1.7.1 of the impedance matching of the transmission line impedance matching concepts 1.7.2 quarter wavelength impedance converter 1.7.3 single branch section deployment 1.7.4 dual support section deployment exercises Chapter 2 metal waveguide and microstrip line 2.1 Analysis Rules 2.1.1 TE 2.1.4 cavities metal waveguide mode 2.1.3 2.1.2 TM mode longitudinal field analysis steps. there is no the TEM mode 2.2 waveguide electromagnetic wave transmission characteristics 2.2.1 waveguide cutoff phenomenon metallic waveguide longitudinal field method and cutoff wavelength 2.2.2 TE mode and TM mode phase velocity. group velocity. the waveguide wavelength 2.3 rectangular waveguide 2.3.1 rectangular waveguide in the TE and TM modes 2.3.2 rectangular waveguide transmission characteristics of electromagnetic waves 2.3.3 rectangular waveguide the TE10 mode in the main die 2.3.4 2.4.3 2.3.5 TE10 mode excitation method of the attenuation of the waveguide transmission characteristics of the 2.4 circular waveguide 2.4.1 circular waveguide in the TE mode and the TM mode 2.4.2 circular waveguide electromagnetic circle The high-order mode 2.5.2 2.5.1 coaxial three common wave waveguide 2.5 coaxial higher order mode and single-mode transmission conditions coaxial single-mode transmission conditions 2.6 2.6.1 stripline microstrip line 2.6.2 microstrip line 2.7 new microwave and millimeter wave transmission line Exercises Chapter 3 dielectric waveguides and waveguide 3.1 dielectric waveguides 3.1.1 circular dielectric waveguide 3.1.2 media mirror line 3.2 thin-film optical waveguide 3.2.1 thin-film optical waveguide geometry optical analysis 3.2.2 thin-film optical waveguide mode theory of the propagation of light in fiber 3.3 3.3.1 a step the 3.3.2 step fiber optical fiber optical fiber and gradient light propagation in the fiber light propagation 3.3.3 gradient 3.4 fiber transmission mode 3.4 electromagnetic field solutions 3.4.2 .1 fiber characteristic equation 3.4.3 mode propagation conditions and the cutoff parameter of 3.4.4 LPmn mode field distribution and power distribution 3.4.5 ideal fiber mode orthogonality and completeness 3.5 singlemode 3.6.2 Other types of transmission conditions and the cutoff wavelength of the optical fiber 3.5.1 singlemode 3.5.2 working models 3.5.3 singlemode fiber birefringence of 3.6 optical fiber transmission loss 3.6.1 silica glass fiber loss optical fiber loss 3.6. 3.7.4 dispersive communication 3.7.5 singlemode fiber dispersion single mode fiber bending loss of 3.7 fiber dispersion 3.7.1 the dispersion concept of dispersion classification 3.7.2 the wavelength dispersive 3.7.3 mode dispersion classified 3.8 Fibre 3.8.3 Preparation 3.8.2 Fibre drawn preform fabrication and fiber optic cable 3.8.1 optic cable exercises Chapter 4 antenna basics. 4.1 Overview 4.2 Basic electric vibrator 4.2.1 near field 4.2.2 far field 4.3 the magnetic Basic oscillator 4.3.1 The direction function of the duality principle method 4.3.2 Direct integration method 4.4 antenna directional 4.4.1 4.4.2 direction Figure 4.4.3 direction coefficient 4.5 antenna the electrical parameters 4.5.2 4.5.1 directional characteristics impedance characteristics 4.5.3 4.5.4 The polarization characteristics of the bandwidth characteristics 4.5.5 best reception conditions 4.6 the receiving antenna theory 4.6.1 effective area and effective length 4.6.2 the Fleece transmission formula the 4.7 short oscillator with half-wave dipole 4.7.1 and up sub 4.7.2 half-wave oscillator 4.8 directional characteristics of the antenna array 4.8.1 pattern product theorem 4.8.2 4.8.3 two yuan array 4.8.4 uniform linear array 4.8.5 Non-uniform linear array 4.9 antenna array Broadside radiation impedance of the far zone conditions 4.9 .1 4 end of two yuan array induced electromotive force method network model 4.9.2 Introduction 4.9.3 half-wave dipole interaction between the impedance curve 4.9.4 mutual impedance applications of the theory and its curve 4.10 ideal conductive antenna 4.10.1 mirror theory 4.10.2 monopole antenna Exercises Chapter 5 5.1 dipole antenna wire antenna 5.1.1 symmetrical dipole antenna 5.1.2 perfectly conducting plane earth symmetric equivalent to 5.3 line oscillator antenna feed oscillator 5.2 5.4 5.5 of Yagi - Uda antenna line wave wire antennas 5.6 biconical antenna 5.6.1 infinite biconical antenna 5.6.2 finite biconical antenna 5.7 Non-frequency change antenna theory 5.8 planar spiral antenna 5.8.1 equiangular spiral antenna 5.8.2 Archimedean spiral antenna 5.9 log-periodic antenna Exercises Chapter 6 of the basic principle of the 6.1 aperture antenna aperture antenna radiation 6.1.1 Huygens 6.1.2 plane caliber the radiation integral formula 6.1.3 radiation characteristics of rectangular. circular aperture 6.1.4 gain calculated 6.2 horn antenna 6.2.1 H surface sector horn antenna 6.2.2 E face fan-shaped horn antenna 6.2.3 pyramidal horn antenna 6.2.4 Optimal horn antenna reflector antenna design 6.3 6.3.1 parabolic antenna jammed 6.3.2 Glenn antenna 6.3.3 reflector antennas feed 6.4 optical antenna 6.4.1 Optical antenna gain the optical antenna exercises 6.4.2 inter-satellite laser communication in Chapter 7 Introduction to radio wave propagation 7.1 basics 7.1.2 transmission medium of radio wave propagation the impact 7.1.3 interference and noise 7.2 ground wave propagation 7.2.2 7.2.1 the electrical characteristics of the surface of the Earth ground wave propagation characteristics 7.3 skywave propagation 7.3.2 7.3.1 ionospheric radio wave propagation in the ionosphere 7.3.3 shortwave sky wave propagation 7.4 line-of-sight propagation 7.4.1 free space radio wave propagation 7.4.2 Fresnel zone face the impact of radio wave propagation 7.4.3 lower atmosphere on radio wave propagation 7.5 mobile communication radio wave propagation 7.5.1 smooth ground on the ground of the bright-field 7.5.2 smooth spherical waves diffraction the diffracted 7.5.4 7.5.3 peaks ground mobile communication radio propagation characteristics 7.6 satellite communication system in a radio wave propagation 7.6.1 transmission loss 7.6.2 depolarization phenomenon 7.6.3 atmospheric refraction and tropospheric scintillation 7.6.4 ionospheric scintillation 7.7 laser atmospheric laser beam propagation in the atmospheric channel transmission 7.7.1 7.7.2 atmospheric channel model 7.8 laser transmission channel in seawater 7.8.1 the composition and characteristics of the transmission spectrum of the seawater characteristics 7.8.2 seawater to affect 7.8.3 seawater channel characteristics of the laser beam propagation the 7.9 complex electromagnetic environment exercises References Satisfaction guaranteed,or money back.
Daten vom 19.10.2015 07:35h
ISBN (andere Schreibweisen): 7-115-26293-4, 978-7-115-26293-6
Zuerst gefunden: 19.10.2015 07:35:18
Zuletzt gefunden: 29.03.2023 20:02:39
Kleinster Preis: 15,56 (vom 02.04.2019 11:04:49)
Höchster Preis: 308,92 (vom 14.11.2019 09:44:21)
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LU CHUN LAN . YANG TAO . YU TONG BIN . DENG: Regular higher education Eleventh Five-Year national planning materials Universities of the 21st century information and communication engineering planning textbook: Radio and lightwave transmission technology(Chinese Edition)
ISBN: 9787115262936

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