Title :
On the Error Probability of Spatial Modulation over Keyhole MIMO Channels
Author :
Jiliang Zhang ; Yang Wang ; Liqin Ding ; Juyin Gao ; Naitong Zhang
Author_Institution :
Sch. of Electron. & Inf. Eng., Harbin Inst. of Technol., Harbin, China
Abstract :
The keyhole effect causes a dramatic performance degradation to Multiple-Input Multiple-Output (MIMO) systems. The main contribution of this letter is the analytical performance evaluation of Spatial Modulation MIMO (SM-MIMO) systems over the keyhole channel. The closed-form Pairwise Error Probability (PEP) is derived with accuracy verified by simulations. Based on the PEP, the achievable diversity gain is extracted and shown to be no more than 1 under any configuration. In addition, a tight Average Bit Error Probability (ABEP) upper bound is given. Numerical results demonstrate that compared to independent fading scenarios, the keyhole channel causes a significant performance degradation to the SM-MIMO system. It is shown that SM-MIMO schemes outperforms Space-Time Block Code (STBC) and V-BLAST schemes over the keyhole channel. Therefore, among multiple antenna transmission schemes, SM-MIMO schemes are better choices for systems that may experience the keyhole effect. However, owing to the inherent unfitness of the keyhole channel for multiple antenna transmission, SM-MIMO schemes are still inferior to SISO/SIMO schemes.
Keywords :
MIMO communication; antenna arrays; error statistics; modulation; space-time block codes; telecommunication channels; ABEP; MIMO systems; PEP; SISO-SIMO schemes; SM-MIMO system; V-blast schemes; average bit error probability; closed-form pairwise error probability; dramatic performance degradation; error probability; keyhole MIMO channels; multiple antenna transmission; multiple antenna transmission schemes; multiple-input multiple-output systems; performance degradation; space-time block code; spatial modulation; spatial modulation MIMO; Antennas; Diversity methods; Error probability; Fading; MIMO; Modulation; Wireless communication; Spatial modulation; average bit error rate; diversity gain; keyhole channel; pairwise error probability;
Journal_Title :
Communications Letters, IEEE
DOI :
10.1109/LCOMM.2013.110613.131590