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FREQUENCY HOPPING SPREAD
       SPECTRUM



      By:- Tanu Jaswal
• Principle of spread spectrum
• Frequency      hopping         spread
  spectrum
• Direct sequence spread spectrum
• Direct sequence CDMA systems
•Spread spectrum techniques are methods by
which electromagnetic energy generated in a
particular bandwidth is deliberately spread in the
frequency domain, resulting in a signal with a wider
bandwidth
•Spread spectrum methods:
  Frequency hopping spread spectrum
  Direct sequence spread spectrum
  Time hopping spread spectrum
•At the transmitter side:
   ─Input is fed into a channel encoder
       •Produces analog signal with narrow bandwidth
   ─ Signal is further modulated using sequence of digits
       • Spreading code or spreading sequence
       • Generated by pseudonoise, or pseudo-random number generator
   • Effect of modulation is to increase bandwidth of signal to be
   transmitted
At the receiving end:
    −digit sequence is used to demodulate the spread spectrum
   signal
   − Signal is fed into a channel decoder to recover data
•Signal is broadcast over seemingly random series
of radio frequencies
  A number of channels allocated for the FH signal
  Width of each channel corresponds to bandwidth of input
  signal
•Signal hops from frequency to frequency at fixed
intervals
  Transmitter operates in one channel at a time
  Bits are transmitted using some encoding scheme
  At each successive interval, a new carrier frequency is
  selected
•The frequency sequence is dictated by the
spreading code
•Receiver should hop synchronously with the
transmitter to be able to recover the message
•Advantages
  Eavesdroppers hear only unintelligible blips
  Attempts to jam signal on one frequency succeed only at
  knocking out a few bits
•Slow-frequency-hop spread spectrum
   The hopping duration is larger or equal to the symbol
   duration of the modulated signal
   Tc >= Ts
•Fast-frequency-hop spread spectrum
   The hopping duration is smaller than the symbol duration
   of the modulated signal
   Tc < Ts
•Large number of frequencies used
•Results in a system that is quite resistant to jamming
   Jammer must jam all frequencies
   With fixed power, this reduces the jamming power in any one
   frequency band
FHSS PMD takes the binary bits of information from
the whitened PLCP service data unit (PSDU) and
transforms them into RF signals
PSDU Data Whitening
   Data    whitening is applied to the PSDU before
   transmission to minimize bias on the data if long strings of
   1’s or 0’s appear in the PSDU
   The PHY stuffs a special symbol every 4 octets of the
   PSDU in a PPDU frame
   A 127-bit sequence generator using the polynomial S(x) =
   x7 + x4 + 1 and 32/33 bias-suppression encoding algorithm
   are used to randomize and whiten the data
Modulation
   IEEE 802.11 version released in 1997 uses two-level GFSK in the
   FHSS PMD to transmit the PSDU at the basic rate of 1 Mbps
   The PLCP preamble and PLCP header are always transmitted at 1
   Mbps
   Four-level GFSK is an optional modulation method defined in the
   standard that enables the whitened PSDU to be transmitted at a
   higher rate
   GFSK is a modulation technique used by the FHSS PMD shifts the
   frequency either side of the carrier hop frequency
   Four-level GFSK is similar to two-level GFSK and modulator
   combines two binary bits into symbol pairs (10, 11, 01, 00)
Channel Hopping
      For use in the 2.4 GHz frequency band
      The channels are evenly spaced across the band over a span 83.5
      MHz
      Hop channels differs from country to country
      Channel hopping is controlled by the FHSS PMD
IR
      IR PHY is one of the three PHY layers supported
      Differs from DSSS and FHSS because IR uses near-visible light as the
      transmission media
      IR communication relies on the light energy, which is by line-of-sight
      or reflected off objects
      Operation is restricted to indoor environments and cannot pass
      through walls
Modulation
  Transmits binary data at 1 and 2 Mbps
  Uses PPM modulation to reduce the optical power
  required
  Specific data rate is dependent upon the type of PPM
  Modulation for 1 Mbps operation is 16-PPM, while it is
  4-PPM for 2 Mbps
  PPM is a modulation technique that keeps the amplitude,
  pulse width constant, and varies the position of the pulse
  in time
4-PPM symbol map for 2 Mbps
     Data bits   4-PPM symbol

        00           0001

        01           0010

        11           0100

        10           1000
•Signal broadcast over seemingly random series
of frequencies
•Receiver hops between frequencies in sync
with transmitter
•Eavesdroppers hear unintelligible blips
Jamming on one frequency affects only a few
bits
f5

                                                                     f4

                                                                f3
                                                           f2

                                                      f1
1   2   3   4   5   6    7     8   9   10   11   12

                        TIME
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Presentation on fhss

  • 1. FREQUENCY HOPPING SPREAD SPECTRUM By:- Tanu Jaswal
  • 2. • Principle of spread spectrum • Frequency hopping spread spectrum • Direct sequence spread spectrum • Direct sequence CDMA systems
  • 3. •Spread spectrum techniques are methods by which electromagnetic energy generated in a particular bandwidth is deliberately spread in the frequency domain, resulting in a signal with a wider bandwidth •Spread spectrum methods: Frequency hopping spread spectrum Direct sequence spread spectrum Time hopping spread spectrum
  • 4. •At the transmitter side: ─Input is fed into a channel encoder •Produces analog signal with narrow bandwidth ─ Signal is further modulated using sequence of digits • Spreading code or spreading sequence • Generated by pseudonoise, or pseudo-random number generator • Effect of modulation is to increase bandwidth of signal to be transmitted
  • 5. At the receiving end: −digit sequence is used to demodulate the spread spectrum signal − Signal is fed into a channel decoder to recover data
  • 6.
  • 7. •Signal is broadcast over seemingly random series of radio frequencies A number of channels allocated for the FH signal Width of each channel corresponds to bandwidth of input signal •Signal hops from frequency to frequency at fixed intervals Transmitter operates in one channel at a time Bits are transmitted using some encoding scheme At each successive interval, a new carrier frequency is selected
  • 8. •The frequency sequence is dictated by the spreading code •Receiver should hop synchronously with the transmitter to be able to recover the message •Advantages Eavesdroppers hear only unintelligible blips Attempts to jam signal on one frequency succeed only at knocking out a few bits
  • 9.
  • 10.
  • 11. •Slow-frequency-hop spread spectrum The hopping duration is larger or equal to the symbol duration of the modulated signal Tc >= Ts •Fast-frequency-hop spread spectrum The hopping duration is smaller than the symbol duration of the modulated signal Tc < Ts
  • 12.
  • 13.
  • 14. •Large number of frequencies used •Results in a system that is quite resistant to jamming Jammer must jam all frequencies With fixed power, this reduces the jamming power in any one frequency band
  • 15. FHSS PMD takes the binary bits of information from the whitened PLCP service data unit (PSDU) and transforms them into RF signals PSDU Data Whitening Data whitening is applied to the PSDU before transmission to minimize bias on the data if long strings of 1’s or 0’s appear in the PSDU The PHY stuffs a special symbol every 4 octets of the PSDU in a PPDU frame A 127-bit sequence generator using the polynomial S(x) = x7 + x4 + 1 and 32/33 bias-suppression encoding algorithm are used to randomize and whiten the data
  • 16. Modulation IEEE 802.11 version released in 1997 uses two-level GFSK in the FHSS PMD to transmit the PSDU at the basic rate of 1 Mbps The PLCP preamble and PLCP header are always transmitted at 1 Mbps Four-level GFSK is an optional modulation method defined in the standard that enables the whitened PSDU to be transmitted at a higher rate GFSK is a modulation technique used by the FHSS PMD shifts the frequency either side of the carrier hop frequency Four-level GFSK is similar to two-level GFSK and modulator combines two binary bits into symbol pairs (10, 11, 01, 00)
  • 17. Channel Hopping For use in the 2.4 GHz frequency band The channels are evenly spaced across the band over a span 83.5 MHz Hop channels differs from country to country Channel hopping is controlled by the FHSS PMD IR IR PHY is one of the three PHY layers supported Differs from DSSS and FHSS because IR uses near-visible light as the transmission media IR communication relies on the light energy, which is by line-of-sight or reflected off objects Operation is restricted to indoor environments and cannot pass through walls
  • 18. Modulation Transmits binary data at 1 and 2 Mbps Uses PPM modulation to reduce the optical power required Specific data rate is dependent upon the type of PPM Modulation for 1 Mbps operation is 16-PPM, while it is 4-PPM for 2 Mbps PPM is a modulation technique that keeps the amplitude, pulse width constant, and varies the position of the pulse in time
  • 19. 4-PPM symbol map for 2 Mbps Data bits 4-PPM symbol 00 0001 01 0010 11 0100 10 1000
  • 20.
  • 21.
  • 22.
  • 23.
  • 24. •Signal broadcast over seemingly random series of frequencies •Receiver hops between frequencies in sync with transmitter •Eavesdroppers hear unintelligible blips Jamming on one frequency affects only a few bits
  • 25. f5 f4 f3 f2 f1 1 2 3 4 5 6 7 8 9 10 11 12 TIME