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Pulse-position modulation
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==PPM vs. M-FSK== PPM and M-FSK systems with the same bandwidth, average power, and transmission rate of M/T bits per second have identical performance in an ''additive white Gaussian noise'' (AWGN) channel. However, their performance differs greatly when comparing [[Fading|frequency-selective and frequency-flat fading]] channels. Whereas frequency-selective fading produces echoes that are highly disruptive for any of the M time-shifts used to encode PPM data, it selectively disrupts only some of the M possible frequency-shifts used to encode data for M-FSK. On the other hand, frequency-flat fading is more disruptive for M-FSK than PPM, as all M of the possible frequency-shifts are impaired by fading, while the short duration of the PPM pulse means that only a few of the M time-shifts are heavily impaired by fading. Optical communications systems tend to have weak multipath distortions, and PPM is a viable modulation scheme in many such applications.
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