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[ "印永嘉(1978-),男,中兴通讯股份有限公司高级工程师、预研系统工程师,主要从事光通信技术的研究工作。" ]
[ "郭勇(1976-),男,博士,中兴通讯股份有限公司高级工程师、预研系统工程师,主要从事通信技术的研究工作。" ]
[ "马壮(1970-),男,博士,中兴通讯股份有限公司高级工程师、预研总工程师,主要从事通信技术的研究工作。" ]
网络出版日期:2018-02,
纸质出版日期:2018-02-20
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印永嘉, 郭勇, 马壮. 基于10Gbit/s-PON接收机25 Gbit/s双二进制检测传输性能[J]. 电信科学, 2018,34(2):139-144.
Yongjia YIN, Yong GUO, Zhuang MA. 25 Gbit/s transmission performance using duo-binary detection with 10 Gbit/s-PON receiver[J]. Telecommunications science, 2018, 34(2): 139-144.
印永嘉, 郭勇, 马壮. 基于10Gbit/s-PON接收机25 Gbit/s双二进制检测传输性能[J]. 电信科学, 2018,34(2):139-144. DOI: 10.11959/j.issn.1000-0801.2018048.
Yongjia YIN, Yong GUO, Zhuang MA. 25 Gbit/s transmission performance using duo-binary detection with 10 Gbit/s-PON receiver[J]. Telecommunications science, 2018, 34(2): 139-144. DOI: 10.11959/j.issn.1000-0801.2018048.
IEEE已经成立了100 Gbit/s以太无源光网络(100 Gbit/s-EPON)任务组研究下一代100 Gbit/s PON标准,双二进制检测技术是基带技术选择之一。对基于10 Gbit/s-PON接收机的25 Gbit/s双二进制(DB)检测传输性能进行了实验验证。由于10 Gbit/s-PON接收机带宽受限明显,10 Gbit/s-PON接收机输出的25 Gbit/s双二进制信号会受到码间干扰(ISI)影响。实验结果表明,基于直接判决法的系统接收灵敏度只有-22 dBm,采用最简最大似然序列估计(MLSE)软判决法的系统接收灵敏度能提升到-24.5 dBm。
IEEE has formed the 100 Gbit/s-EPON Task Force to develop next 100 Gbit/s-PON standards,and the duo-binary(DB) detection is one of the baseband technology options.25 Gbit/s DB detection transmission performance with 10 Gbit/s-PON receiver was been experimentally demonstrated.Because the bandwidth of 10 Gbit/s- PON receiver is obviously limited
the 25 Gbit/s DB output signal from 10 Gbit/s-PON receiver will be affected by the inter-symbol interference(ISI).The experiment results show that the system receiving sensitivity based on direct decision method is only -22 dBm.However
the system receiving sensitivity can be up to -24.5 dBm by using the most simplified maximum likelihood sequence estimation(MLSE) soft decision method.
张成良 , 王庆 , 余景文 , 等 . 10/40/100 Gbit/s PON技术的发展和应用展望 [J ] . 电信科学 , 2017 , 33 ( 11 ): 1 - 8 .
ZHANG C L , WANG Q , YU J W , et al . Development and forecast of 10/40/100 Gbit/s PON technology [J ] . Telecommunications Science , 2017 , 33 ( 11 ): 1 - 8 .
耿丹 , 郭勇 , 印永嘉 , 等 . 25 Gbit/s 无源光网络技术进展和实验研究 [J ] . 电信科学 , 2017 , 33 ( 2 ): 128 - 132 .
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GUO Y , YIN Y J , SONG Y X , et al . Demonstration of 25 Gbit/s per channel NRZ transmission with 35 dB power budget using 25 Gbit/s Ge/Si APD for next generation 100 Gbit/sPON [C ] // 2017 Optical Fiber Communication Conf.and the Nat.Fiber Optic Engineers Conf.,Mar 19-23,2017,Los Angeles,CA,USA . Piscataway:IEEE Press , 2017 : 1 - 3 .
DOUTJE V V , V HOUTSMA , CHOW H , et al . Demonstration of symmetrical 25 Gbit/s quaternary PAM /duobinary TDM-PON with multilevel interleaving of users [C ] // 2015 ECOC,Sept 27-Oct 1,2015,Valencia,Spain . Piscataway:IEEE Press , 2015 : 1 - 3 .
DOUTJE V V , HOUTSMA V , WINZER P , et al . 26-Gbits/sPON transmission over 40-km using duobinary detection with a low cost 7-GHz APD-based receiver [C ] // 2012 ECOC,Sept 16-20,2012,Amsterdam,Netherlands . Piscataway:IEEE Press , 2012 : 1 - 3 .
MAN J W , FU S M , ZHANG H G , et al . Downstream transmission of pre-distorted 25-Gb/s faster-than-Nyquist PON with 10 Gbit/s-class optics achieving over 31 dB link budget without optical amplification [C ] // 2016 OFC,Mar 20-24,2016,Anaheim,CA,USA . Piscataway:IEEE Press , 2016 : 1 - 3 .
XIA J , XU T , LI Z , et al . Investigation on adaptive equalization techniques for 10 Gbit/s-class optics based 100 Gbit/s-PON system [C ] // 2017 Proceedings of OptoElectronics and Communications Conference (OECC),Jun 31-Aug 4,2017 , Singapore .[S.l.:s.n ] 2017 .
FEC Proposal for NGEPON-update(rev1a) [EB/OL ] .(2017-10-01)[2017-10-10 ] . http://www.ieee802.org/3/ca/public/meeting_archive/2017/11/laubach_3ca_1a_1117.pdf http://www.ieee802.org/3/ca/public/meeting_archive/2017/11/laubach_3ca_1a_1117.pdf .
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