Title :
Performance analysis of MIMO link under fading channels
Author :
Hashem, Tahsina ; Islam, Md Imdadul
Author_Institution :
Dept. of Comput. Sci. & Eng., Jahangirnagar Univ., Dhaka, Bangladesh
Abstract :
In modern wireless communication, multiple-input multiple-output (MIMO) system plays an important role as it improves channel capacity, range and reliability without requiring any additional bandwidth or transmit power. This research presents a detailed analysis of capacity performance of MIMO systems under four fading cases i.e. Gaussian, Weibull, Rayleigh and Nakagami-m fading in the low signal-to-noise ratio (SNR) regime. We first derive analytical expressions for the expectation of the trace of the complex channel matrix. Then we measure the low-SNR performance of MIMO system under four fading conditions with respect to minimum normalized energy per information bit and wideband slope. Also a comparative analysis has been performed between the channel capacity of spatial-multiplexing (SM) MIMO and Orthogonal Space Time block coded (OSTBC) MIMO system. Simulation results show that performance of the system depends on different criteria of MIMO fading channels. According to the capacity performance of MIMO system, four fading channels can be ordered as Gaussian, Nakagami-m, Rayleigh and Weibull fading channels respectively.
Keywords :
Gaussian channels; MIMO communication; Nakagami channels; Rayleigh channels; channel capacity; channel coding; orthogonal codes; radio links; space division multiplexing; space-time block codes; telecommunication network reliability; Gaussian fading channel; MIMO link performance analysis; Nakagami-m fading channel; OSTBC MIMO system; Rayleigh fading channel; SM multiple input multiple output system reliability; Weibull fading channel; complex channel matrix; fading channel capacity improvement; low SNR performance; low signal-to-noise ratio; orthogonal space time block coded MIMO system; spatial multiplexing MIMO system; Channel capacity; MIMO; Rayleigh channels; Shape; Signal to noise ratio; Weibull fading channels; Fading; Multiple Input Multiple Output; OSTBC; low-SNR;
Conference_Titel :
Computer and Information Technology (ICCIT), 2014 17th International Conference on
DOI :
10.1109/ICCITechn.2014.7073080