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Analog Communications

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Presentation on theme: "Analog Communications"— Presentation transcript:

1 Analog Communications
Dr. M. Venu Gopala Rao A.M.I.E.T.E, M.Tech, Ph.D(Engg) Cert. in R.S.T ( City & Guild’s London Institute, London) F.I.E.T.E, L.M.I.S.T.E, I.S.O.I., S.S.I., M.I.A.E. Professor, Dept. of ECE, K L University

2 Lectrure - 2 AMPLITUDE MODULATION

3 Amplitude Modulation (or simply AM)
Introduction Single Tone, Multi tone and Baseband signals Time domain description Frequency domain description Power and Current Relations 2. Modulators Switching Modulator Square Law Modulator 3. Demodulators Square Law Demodulator Detector Demodulator Envelope Detector 4. Virtues and Limitations of AM

4 2. AM Generation (AM Modulators)

5 1. Square-Law Modulator The diode-resistor equation is given by
Where and are constants.

6 Square-Law Modulator …
. The output of the non-linear device (diode) where The first term is the desired AM wave with amplitude sensitivity Remaining unwanted three terms are removed by appropriate filtering.

7 2. Switching Modulator The input voltage to the diode , where Then

8 The desired components

9 3. AM Detectors / Demodulators

10 1. Square-Law Detector

11

12 2. Envelope detector

13

14 Diode detector advantages
Simplicity:   (a) The diode detector is very simple and is easy to construct. (b) The circuit is very straight forward, consisting of a very few components. 2. Low cost:   Requiring few components, and the fact that the components are not specialized, this form of detector is very cheap. Accordingly it is widely used in AM domestic radios. 3. Asynchronous detector: This detector does not depends on the frequency and the phase of the carrier at the receiver.

15 Limitations The input to the detector must be band-pass filtered around the desired signal, or else the detector will simultaneously demodulate several signals. filtering can be done with a tunable filter or, more practically, a superheterodyne receiver If the signal is overmodulated, distortion will occur Most of these drawbacks are relatively minor and are usually acceptable tradeoffs for the simplicity and low cost of using an envelope detector.

16 4. Virtues and Limitations of AM
Amplitude modulation is wasteful of transmitted power. The transmission of the carrier wave represents a waste of power. Amplitude modulation is wasteful of channel bandwidth As far as the transmission of information is concerned, only one sideband is necessary, and the communication channel therefore needs to provide only the same bandwidth as the message signal. But AM requires a transmission bandwidth equal to twice the message signal bandwidth.

17 Modifications of AM 2. Single sideband (SSB) modulation.
Double sideband-suppressed carrier (DSB-SC) modulation The transmitted wave consists of only the upper and lower sidebands. But the channel bandwidth requirement is the same as before. 2. Single sideband (SSB) modulation. The modulation wave consists only of the upper sideband or the lower sideband. To translate the spectrum of the modulating signal to a new location in the frequency domain. 3. Vestigial sideband (VSB) modulation One sideband is passed almost completely and just a trace of the other sideband is retained. The required channel bandwidth is slightly in excess of the message bandwidth by an amount equal to the width of the vestigial sideband.

18 Main Points of AM

19 Main Points of AM 6. The efficiency of AM wave depends on modulation index only and does not depend on either frequencies of modulating signal or carrier. 7. The maximum efficiency of AM occurs when and Maximum efficiency is 33.33%. 8. The main disadvantage of AM is wastage of carrier power. 9. Another major disadvantage of AM is wastage of bandwidth which is twice of message signal bandwidth. 10. The main advantage of AM is that, since a coherent reference is not needed for demodulation as long as , the demodulator becomes simple and inexpensive. 11. In many applications, such as commercial broadcast, AM is sufficient to justify its use.

20 End


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