Design and test of a carrier interferometry OFDM system in underwater acoustic channels
Fang Xu, Xu Ru, Yonghuai Zhang, Haixin Sun, Deqing Wang
Abstract
Fang Xu, Xu Ru, Yonghuai Zhang, Haixin Sun, Deqing Wang
Abstract
Based on our previous work, a novel design of a carrier interferometry (CI) orthogonal frequency division multiplexing (OFDM) system had been tested in a real underwater acoustic channel - the experimental pool in Xiamen University. Since the CI/OFDM system is very sensitive to phase offsets, a simplified 2D estimator is used to reconstruct the channel response at the receiver. The performance of the CI/OFDM and OFDM underwater acoustic communication systems had been compared based on Peak-to-average power ratio (PAPR) and BER characteristics. Experiment results showed that the CI/OFDM underwater acoustic communication system could achieve excellent performance.
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Based on our previous work, a novel design of a carrier interferometry (CI) orthogonal frequency division multiplexing (OFDM) system had been tested in a real underwater acoustic channel - the experimental pool in Xiamen University. Since the CI/OFDM system is very sensitive to phase offsets, a simplified 2D estimator is used to reconstruct the channel response at the receiver. The performance of the CI/OFDM and OFDM underwater acoustic communication systems had been compared based on Peak-to-average power ratio (PAPR) and BER characteristics. Experiment results showed that the CI/OFDM underwater acoustic communication system could achieve excellent performance.
Key concepts: Orthogonal frequency-division multiplexing, Underwater acoustic communication, Underwater, Channel (broadcasting), Electronic engineering, Estimator, Computer science, Interferometry