Title :
The exact transition probability and bit error probability of two-dimensional signaling
Author :
Xiao, Lei ; Dong, Xiaodai
Author_Institution :
Dept. of Electr. Eng., Univ. of Notre Dame, IN, USA
Abstract :
A new signal-space partitioning method is proposed for the calculation of transition probabilities of arbitrary two-dimensional (2-D) signaling with polygonal decision regions. This enables straightforward formulation of exact bit error probability, symbol error probability, mutual information (MI), and error probabilities of individual bits in the constellation. Previously published symbol error rate (SER) results for additive white Gaussian noise (AWGN) and various fading channels, diversity reception, and imperfect channel estimation (ICE) can all be used in conjunction with the new signal-space partitioning method to obtain the desired performance measures. Numerical results of the bit error rates (BERs) of several 8-ary and 16-ary constellations in AWGN and in Rayleigh, Ricean, and Nakagami fading channels with diversity reception are presented. Pilot-symbol-assisted 2-D signaling is also studied. The proposed new approach is both exact and numerically efficient. It provides new insights into the effect of bit mapping, constellation parameter optimizations, unequal error protection (UEP) at different bit positions, and performance comparisons of different constellations.
Keywords :
AWGN channels; Nakagami channels; Rayleigh channels; Rician channels; channel estimation; diversity reception; error statistics; phase shift keying; quadrature amplitude modulation; telecommunication signalling; 16-ary constellations; 8-ary constellations; AWGN; BER; M-PSK; M-QAM; Nakagami fading channel; Rayleigh fading channel; Ricean fading channel; additive white Gaussian noise channel; bit error probability; bit error rate; bit mapping; diversity reception; exact transition probability; imperfect channel estimation; mutual information; parameter optimization; pilot-symbol-assisted 2D signaling; polygonal decision region; signal-space partitioning method; symbol error probability; two-dimensional signal constellations; two-dimensional signaling; unequal error protection; AWGN; Additive white noise; Channel estimation; Diversity reception; Error analysis; Error probability; Fading; Ice; Mutual information; Two dimensional displays; Bit error rate (BER); imperfect channel estimation (ICE); mutual information (MI); symbol error rate (SER); two-dimensional (2-D) signaling; unequal error protection (UEP);
Journal_Title :
Wireless Communications, IEEE Transactions on
DOI :
10.1109/TWC.2005.853821