Low-complexity feed-forward carrier phase estimation for M-ary QAM based on phase search acceleration by quadratic approximation

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作者
Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, Wuhan [1 ]
430074, China
不详 [2 ]
430074, China
不详 [3 ]
637553, Singapore
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Opt. Express | / 15卷 / 19142-19153期
关键词
Carrier phase estimation - Computation complexity - Fixed step sizes - Laser line-width - Optimum filters - Performance optimizations - Quadratic approximation - Symbol duration;
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摘要
Blind phase search (BPS) algorithm for M-QAM has excellent tolerance to laser linewidth at the expense of rather high computation complexity (CC). Here, we first theoretically obtain the quadratic relationship between the test angle and corresponding distance matric during the BPS implementation. Afterwards, we propose a carrier phase estimation (CPE) based on a two-stage BPS with quadratic approximation (QA). Instead of searching the phase blindly with fixed step-size for the BPS algorithm, QA can significantly accelerate the speed of phase searching. As a result, a group factor of 2.96/3.05, 4.55/4.67 and 2.27/2.3 (in the form of multipliers/adders) reduction of CC is achieved for 16QAM, 64QAM and 256QAM, respectively, in comparison with the traditional BPS scheme. Meanwhile, a guideline for determining the summing filter block length is put forward during performance optimization. Under the condition of optimum filter block length, our proposed scheme shows similar performance as traditional BPS scheme. At 1 dB required ES/N0 penalty @ BER = 10-2, our proposed CPE scheme can tolerate a times symbol duration product Δf · TS of 1.7 × 10-4, 6 × 10-5 and 1.5 × 10-5 for 16/64/256-QAM, respectively. © 2015 Optical Society of America.
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