Paper
16 April 2014 Performance of MIMO-OFDM using convolution codes with QAM modulation
I Gede Puja Astawa, Yoedy Moegiharto, Ahmad Zainudin, Imam Dui Agus Salim, Nur Annisa Anggraeni
Author Affiliations +
Proceedings Volume 9159, Sixth International Conference on Digital Image Processing (ICDIP 2014); 91590F (2014) https://doi.org/10.1117/12.2064073
Event: Sixth International Conference on Digital Image Processing, 2014, Athens, Greece
Abstract
Performance of Orthogonal Frequency Division Multiplexing (OFDM) system can be improved by adding channel coding (error correction code) to detect and correct errors that occur during data transmission. One can use the convolution code. This paper present performance of OFDM using Space Time Block Codes (STBC) diversity technique use QAM modulation with code rate ½. The evaluation is done by analyzing the value of Bit Error Rate (BER) vs Energy per Bit to Noise Power Spectral Density Ratio (Eb/No). This scheme is conducted 256 subcarrier which transmits Rayleigh multipath fading channel in OFDM system. To achieve a BER of 10-3 is required 10dB SNR in SISO-OFDM scheme. For 2×2 MIMO-OFDM scheme requires 10 dB to achieve a BER of 10-3. For 4×4 MIMO-OFDM scheme requires 5 dB while adding convolution in a 4x4 MIMO-OFDM can improve performance up to 0 dB to achieve the same BER. This proves the existence of saving power by 3 dB of 4×4 MIMO-OFDM system without coding, power saving 7 dB of 2×2 MIMO-OFDM and significant power savings from SISO-OFDM system.
© (2014) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
I Gede Puja Astawa, Yoedy Moegiharto, Ahmad Zainudin, Imam Dui Agus Salim, and Nur Annisa Anggraeni "Performance of MIMO-OFDM using convolution codes with QAM modulation", Proc. SPIE 9159, Sixth International Conference on Digital Image Processing (ICDIP 2014), 91590F (16 April 2014); https://doi.org/10.1117/12.2064073
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Cited by 6 scholarly publications.
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KEYWORDS
Antennas

Convolution

Orthogonal frequency division multiplexing

Quadrature amplitude modulation

Modulation

Signal to noise ratio

Forward error correction

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