the Project Funding National Natural Science Foundation of China (NSFC) (61527819);University Natural Science Research Project of Jiangsu Province (19KJB510005);High-Level Training Fund project of Nanjing Xiaozhuang University (2019NXY18)
A novel chaotic optical time-domain reflectometry(OTDR)-based approach was proposed for monitoring long-haul fiber communication systems with multiple fiber segments. The self-phase modulation and group velocity dispe...
supported by NSFC under Grant 61471303;EU FP7 QUICK project under Grant PIRSES-GA-2013-612652
In order to meet the exponentially increasing demand on mobile data traffic, self-backhaul ultra-dense networks(UDNs) combined with millimeter wave(mm Wave) communications are expected to provide high spatial multiple...
5G sets an ambitious goal of increasing the capacity per area of current 4G network by 1000 fold. Due to the high splitting gain of dense small cells, ultra dense network(UDN) is widely considered as a key component i...
supported by the National Natural Science Foundation of China under Grant No. 60932004;the National High Technical Research and Development Program of China (863 Program) under Grants No. 2012AA011301,No. 2012AA011303
The explosive increase in data traffic requires networks to provide higher capacity and long-haul transmission capabilities.This paper introduces new results on high-order modulation and efficient Digital Signal Proce...
supported by NSFC(no60872035);Youthful foundation of UESTC JX0707;Key Youthful foundation of UESTC JX0801
100 G Ethernet is considered to become the next generation Ethernet standard for IP networks.Typical 100 Gb/s transmission systems and their performance are presented.Comparision and analysis for 100 Gb/s transmission...