[1] Zhong Kangping, Zhou Xian, Gui Gao, et al. Experimental study of PAM-4, CAP-16, and DMT for 100 Gb/s short reach optical transmission systems[J]. Opt Express, 2015, 23(2):227026.
[2] Wang Zhixin, Tao Li, Huang Xingxing, et al. Application of advanced modulation formats in short-range optical communication systems[J]. Study on Optical Communication, 2014, 183(3):11-15. (in Chinese)王智鑫, 陶理, 黄星星, 等.用于短距离光通信系统中的先进调制格式研究[J]. 光通信研究, 2014, 183(3):11-15.
[3] Wei J L, Geng L, Penty R V, et al. 100 Gigabit Ethernet transmission enabled by carrierless amplitude and phase modulation using QAM receivers[C]//Optical Fiber Conference(OFC), 2013, OW4A.5:1-3.
[4] Burton R Saltzberg. Comparison of single-carrier and multitone digital modulation for ADSL applications[J]. IEEE Communications Magazine, 2002, 36(11):114-121.
[5] Ingham J D, Penty R V, White I H. Carrierless amplitude and phase modulation for low-cost high spectral-efficiency optical data communication links[C]//Optical Fiber Conference(OFC), 2010, CThC5:1-3.
[6] Ingham J D, Penty R V, White I H. 40 Gb/s carrierless amplitude and phase modulation for low-cost optical data communication links[C]//Optical Fiber Conference(OFC),2011, OThZ3:1-3.
[7] Wei J L, Ingham J D, Cunningham D G, et al. Performance and power dissipation comparisons between 28 Gb/s NRZ, PAM, CAP and optical OFDM systems for datacommunication applications[J]. Journal of Lightwave Technology, 2012, 30(20):3273-3280.
[8] Wei J L, Cunningham D G, Penty R V, et al. Study of 100 Gigabit ethernet using carrierless amplitude/phase modulation and optical OFDM[J]. Journal of Lightwave Technology,2013, 31(9):1367-1373.
[9] Olmedo M I, Zuo Tianjian, Jensen B, et al. Towards 400 GBASE 4-lane solution using direct detection of multiCAP signal in 14 GHz bandwidth per lane[C]//Optical Fiber Conference(OFC), 2013, PDP5P.10:1-3.
[10] Wei Jinlong, Cheng Qixiang, Cunningham D G, et al. 100 Gb/s hybrid multiband CAP/QAM signal transmission over a single wavelength[J]. Journal of Lightwave Technology, 2015, 35(2):415-423.
[11] Ke Xizheng, Yin Zhiyun. Coding Theory of the Wireless Laser Communication System[M]. Beijing:Science Press, 2009:1-3. (in Chinese)柯熙政, 殷致云. 无线激光通信系统中的编码理论[M]. 北京:科学出版社, 2009:1-3.
[12] Olmedo M I, Zuo Tianjian, Jensen J B, et al. Multiband carrierless amplitude phase modulation for high capacity optical datalinks[J]. Journal of Lightwave Technology, 2014, 32(4):798-804.
[13] Chen Mu, Ke Xizheng. Effect of atmospheric turbulence on the performance of laser communication system[J]. Infrared and Laser Engineering, 2016, 45(8):115-121. (in Chinese)陈牧,柯熙政. 大气湍流对激光通信系统性能的影响研究[J]. 红外与激光工程, 2016, 45(8):115-121.
[14] Zhang Jiaqi, Ge Ning. Joint CMA+DDLMS blind equalization algorithm[J]. Journal of Tsinghua University,2009, 49(10):1681-1684. (in Chinese)张家琦, 葛宁. 联合CMA+DDLMS盲均衡算法[J]. 清华大学学报, 2009, 49(10):1681-1684.
[15] Tao Li, Wang Yiguang, Gao Yuliang, et al. 40 Gb/s CAP32 system with DD-LMS equalizer for short reach optical transmissions[J]. IEEE Photonics Technology Letters, 2013, 25(23):2346-2349.