Improved ACE and ICF low complexity joint algorithm to reduce PAPR of CO-OFDM system
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Engineering Research Center of Optoelectronic Devices and Communication Technology, Ministry of Education, Tianjin Key Laboratory of Film Electronic and Communication Devices, School of Electrical and Electronic Engi-neering, Tianjin University of Technology, Tianjin 300384, China

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    Abstract:

    Active constellation expansion (ACE) and iterative clipping and filtering (ICF) are simple and effective techniques for reducing the peak-to-average ratio (PAPR) in coherent optical orthogonal frequency division multiplexing (CO-OFDM) systems, but effective PAPR suppression requires a lot of iterations. To overcome this shortcoming, a joint algorithm based on improved active constellation expansion (IACE) and ICF (IACE-ICF) is proposed. The simulation results show that at the complementary cumulative distribution function (CCDF) of 10-4, the PAPR of IACE-ICF (G=4, iter=4) algorithm is optimized by 1.507 dB, 1.13 dB and 0.204 dB compared with that of the IACE, ICF (iter=4) and ICF-IACE (G=4, iter=4) algorithms, respectively. Meanwhile, when the bit error rate (BER) is 10-3, the optical signal to noise ratio (OSNR) of the proposed scheme is optimized by 2.04 dB, 1.75 dB and 1.4 dB compared with that of clipping, ICF (iter=4) and ICF-IACE (G=4, iter=4) algorithms, respectively. On the other hand, the proposed scheme can reduce the number of complex multiplications by 14.29% and complex additions by 28.57% compared with the ICF (iter=14) scheme.

    Reference
    [1] Giacoumidis E, Aldaya I, Jarajreh MA and Tsokanos A, IEEE Photonics Technology Letters 26, 1383 (2014).
    [2] Sarowa S, Singh H, Agrawal S and Sohi BS, Digital Communications and Networks 4, 258 (2018).
    [3] Le Goff SY, Al-Samahi SS, Khoo BK, Tsimenidis CC and Sharif BS, IEEE Transactions on Wireless Communications 8, 3320 (2009).
    [4] Lin Shu-ping, Chen Yung-fang and Tseng Shu-ming, Communications Iet 13, 802 (2019).
    [5] Ghassemi A and Gulliver TA, IEEE Transactions on Signal Processing 56, 1161 (2008).
    [6] Chakrapani A and Palanisamy V, Proceedings of the National Academy of Sciences India 84, 467 (2014).
    [7] Tang Bo, Qin Kai-yu and Mei Hai-bo, IEEE Access 8, 18984 (2020).
    [8] Sharifi Abbasali, Optoelectronics Letters 15, 302 (2019).
    [9] Liu Bo, Xin Xiang-jun, Zhang Li-jia and Yu Jjiang-jun, Optics Communications 285, 5397 (2012).
    [10] Wu Ya-ting, He Cong-cong, Zhang Qian-wu, Sun Yan-zan and Wang Tao, Optics Express 26, 3223 (2018).
    [11] Luo Ren-ze, Li Rui, Dang Yu-pu, Yang Jiao and Liu Wei-hong, Optical Fiber Technology 21, 26 (2015).
    [12] Tong Zheng-rong, Hu Ya-nong and Zhang Wei-hua, Optoelectronics Letters 14, 209 (2018).
    [13] Kanthi Kumar, Adimulam Yesu and Battula, Cluster Computing 22, 10897 (2019).
    [14] Li Hao, Wei Ji-dong and Jin Ning-de, IEEE Communications Letters 23, 1586 (2019).
    [15] Mata T, Boonsrimuang P and Boontra P, The 15th International Conference on Electrical Engineering/Electronics, Computer, Telecommunications and Information Technology (ECTICON2018), 2018.
    [16] Liu Jian-fei, Wang Shao-ying, Zeng Xiang-ye, Lu Jia and Wang Meng-jun, Acta Optica Sinica 37, 100 (2017). (in Chinese)
    [17] Zhong Ju, Yang Xue-lin and Hu Wei-sheng, IEEE Photonics Technology Letters 27, 991 (2017).
    [18] Li Guang and Li Tian-yuan, KSII Transactions on Internet and Information Systems 13, 2908 (2019).
    [19] Ren Guang-liang, Zhang Hui and Chang Yi-lin, IEEE Transaction on Consumer Electronics 49, 922 (2003).
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LI Ting-ting, TONG Zheng-rong, ZHANG Wei-hua, LIU-Ye. Improved ACE and ICF low complexity joint algorithm to reduce PAPR of CO-OFDM system[J]. Optoelectronics Letters,2021,17(4):209-214

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History
  • Received:June 10,2020
  • Revised:June 30,2020
  • Online: May 14,2021
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