Course on
ANALOG COMMUNICATIONS
Presented by:
G Sandeep V Padmak
Assistant Professor
Dept. of ECE
RCE
DEPARTMENT OF ELECTRONICS AND COMMUNICATION ENGINEERING
R16
Regulation
II year
II Semester
Frequency division multiplexing
 Multiplexing is a technique in which several message
signals are combined into a composite signal that are to be
transmitted over a common channel.
 During transmission, no interference should occur.
 Two types of techniques:
 frequency division multiplexing
 time division multiplexing
 In FDM, all users use the same common channel at the same
time but they are allotted different frequencies to prevent
signal interference.
 So the bandwidth is divided among users but not time.
 There is a possibility of
cross talk in FDM since all
signals are transmitted
simultaneously.
Advantages:
 No synchronization between
Tx and Rx
 Simpler and easy for
Demodulation
 Used for analog signals
 More number of signals can
be transmitted
simultaneously
tim
e
freq
user 1
user 2
user 3
user 4
Block diagram of fdm
Case 1: same carrier frequency for all carrier signals
 Information containing signals are overlapped
 Results in interference
 Different frequencies are required to avoid interference
fc + 5k
fc – 5k fc
Case 2: Different carrier frequencies fc₁, fc₂, fc₃ are used
 A guard band is the unused part of the radio spectrum
between radio bands to avoid interference.
 Narrow frequency range used to separate two wider
frequency ranges.
fc₂ -5k
fc₁ + 5k fc₃ - 5k
fc₁
fc₁ - 5k
fc₁
fc₂ + 5k
fc₂
fc₂
fc₃ + 5k
fc₃
fc₃
Guard band
Case 3: No guard band used
 Since band pass filters are not ideal, to avoid undesired
frequency components at BPF output guard band has to
be used.
 Hence Case 2 is the most suitable way for multiplexing
more number of signals.
fc₂ = fc₁+10k
fc₃ = fc₂ + 10k
fc₁ fc₂ fc₃
Filter (practical)
Disadvantages:
 Suffers the problem of cross talk
 Inter modulation distortion takes place
 Used only when a few low speed channels are desired
Applications of FDM:
 Used in public telephones and cable TV systems
 Used in AM and FM broadcasting
Questions to prepare from Unit 1
 Explain in detail about Communication systems with a
neat block diagram.
 What is FDM? Mention its advantages and
disadvantages.
 Explain the methods for generation of an AM signal.
 Explain the method of envelope detector to demodulate
an AM signal.
 What is multiplexing? Explain the need for multiplexing.
 Write the time domain description of an Amplitude
Modulation.
 Write about the difficulties faced while performing
FDM.
Post your Questions at
gsandeep4567@gmail.com
THANK YOU

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A Power point presentation on Frequency Division Multiplexing

  • 1. Course on ANALOG COMMUNICATIONS Presented by: G Sandeep V Padmak Assistant Professor Dept. of ECE RCE DEPARTMENT OF ELECTRONICS AND COMMUNICATION ENGINEERING R16 Regulation II year II Semester
  • 2. Frequency division multiplexing  Multiplexing is a technique in which several message signals are combined into a composite signal that are to be transmitted over a common channel.  During transmission, no interference should occur.  Two types of techniques:  frequency division multiplexing  time division multiplexing  In FDM, all users use the same common channel at the same time but they are allotted different frequencies to prevent signal interference.  So the bandwidth is divided among users but not time.
  • 3.  There is a possibility of cross talk in FDM since all signals are transmitted simultaneously. Advantages:  No synchronization between Tx and Rx  Simpler and easy for Demodulation  Used for analog signals  More number of signals can be transmitted simultaneously tim e freq user 1 user 2 user 3 user 4
  • 5. Case 1: same carrier frequency for all carrier signals  Information containing signals are overlapped  Results in interference  Different frequencies are required to avoid interference fc + 5k fc – 5k fc
  • 6. Case 2: Different carrier frequencies fc₁, fc₂, fc₃ are used  A guard band is the unused part of the radio spectrum between radio bands to avoid interference.  Narrow frequency range used to separate two wider frequency ranges. fc₂ -5k fc₁ + 5k fc₃ - 5k fc₁ fc₁ - 5k fc₁ fc₂ + 5k fc₂ fc₂ fc₃ + 5k fc₃ fc₃ Guard band
  • 7. Case 3: No guard band used  Since band pass filters are not ideal, to avoid undesired frequency components at BPF output guard band has to be used.  Hence Case 2 is the most suitable way for multiplexing more number of signals. fc₂ = fc₁+10k fc₃ = fc₂ + 10k fc₁ fc₂ fc₃ Filter (practical)
  • 8. Disadvantages:  Suffers the problem of cross talk  Inter modulation distortion takes place  Used only when a few low speed channels are desired Applications of FDM:  Used in public telephones and cable TV systems  Used in AM and FM broadcasting
  • 9. Questions to prepare from Unit 1  Explain in detail about Communication systems with a neat block diagram.  What is FDM? Mention its advantages and disadvantages.  Explain the methods for generation of an AM signal.  Explain the method of envelope detector to demodulate an AM signal.  What is multiplexing? Explain the need for multiplexing.  Write the time domain description of an Amplitude Modulation.  Write about the difficulties faced while performing FDM.
  • 10. Post your Questions at gsandeep4567@gmail.com THANK YOU