Please use this identifier to cite or link to this item: http://hdl.handle.net/10603/230343
Title: Performance evaluation of concatenated channel codes and space time codes under fading channels
Researcher: Sharma, Surbhi
Guide(s): Khanna, Rajesh
Keywords: Engineering and Technology,Engineering,Engineering Electrical and Electronic
Fading Channel
Low Density Parity Check Codes
MIMO System
University: Thapar Institute of Engineering and Technology
Completed Date: 2011
Abstract: The use of multiple antennas at the transmitter and/or the receiver provides high data rate and diversity in many different forms. This can be useful to meet the ever growing demand of high data rate wireless services, provided we concatenate the multiple antenna systems with channels codes to efficiently exploit the advantages of the these system. Low density parity check (LDPC) codes are linear block codes constructed by sparse parity check matrices. These codes are powerful in terms of error performance and, especially, have low decoding complexity. LDPC codes when employed with multiple antenna system yields astonishing performance close to the Shannon theoretical limits. In the first part of the thesis, LDPC coded systems that employ single transmit and multiple receive antennas, i.e., single-input multiple-output (SIMO) systems are studied. In particular Low Density parity check codes are combined with optimum diversity combining (LDPC-OC) scheme that works efficiently in the presence of interferer for both additive white Gaussian noise (AWGN) and frequency-flat Rayleigh fading channels. The analytical bounds on the bit error rate (BER) performance are derived for the under loaded case (when the number of interferers are less than or equal to number of antenna array elements) and over loaded case (when the number of interferers are greater than antenna array elements. In particular, the analytical bounds are derived for the special case of single interferer (under loaded case) and for large number of interferers (overloaded case). For the proposed systems, the results obtained with analytical bounds are verified with the help of simulation results. It is demonstrated that these bounds can be efficiently used to evaluate the error performance. The second part of the thesis studies LDPC coded systems that employ multiple transmit and multiple receive antennas, i.e., multiple-input multiple-output (MIMO) systems.
Pagination: xxi, 121p.
URI: http://hdl.handle.net/10603/230343
Appears in Departments:Department of Electronics and Communication Engineering

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