Title :
Diversity analysis of peaky FSK signaling in fading channels
Author :
Gursoy, Mustafa Cenk ; Wang, Qingyun
Author_Institution :
Dept. of Electr. Eng., Univ. of Nebraska-Lincoln, Lincoln, NE, USA
fDate :
8/1/2009 12:00:00 AM
Abstract :
Error performance of noncoherent detection of on-off frequency shift keying (OOFSK) modulation over fading channels is analyzed when the receiver is equipped with multiple antennas. The analysis is conducted for two cases: 1) the case in which the receiver has the channel distribution knowledge only; and 2) the case in which the receiver perfectly knows the fading magnitudes. For both cases, the maximum a posteriori probability (MAP) detection rule is derived and analytical probability of error expressions are obtained. Numerical and simulation results indicate that for sufficiently low duty cycle values, lower error probabilities with respect to FSK signaling are achieved. Equivalently, when compared to FSK modulation, OOFSK with low duty cycle requires less energy to achieve the same probability of error, which renders this modulation a more energy efficient transmission technique. Also, through numerical results, the impact of number of antennas, antenna correlation, duty cycle values, and unknown channel fading on the performance are investigated.
Keywords :
diversity reception; error statistics; fading channels; frequency shift keying; maximum likelihood detection; receivers; telecommunication signalling; FSK signaling; OOFSK; diversity analysis; duty cycle; error probability; fading channels; maximum a posteriori probability; multiple antennas; on-off frequency shift keying; Energy efficiency; Error analysis; Error probability; Fading; Frequency shift keying; Pulse modulation; Receiving antennas; Rician channels; Signal analysis; Wireless communication; Diversity, duty factor, fading channels, frequency-shift keying, MAP detection, multiple antennas, on-off keying, probability of error;
Journal_Title :
Wireless Communications, IEEE Transactions on
DOI :
10.1109/TWC.2009.071407