Fiber-optic hydrophone (FOH) is a significant type of acoustic sensor, which can be used in both military and civilian fields such as underwater target detection, oil and natural gas prospecting, and earthquake inspec...Fiber-optic hydrophone (FOH) is a significant type of acoustic sensor, which can be used in both military and civilian fields such as underwater target detection, oil and natural gas prospecting, and earthquake inspection. The recent progress of FOH is introduced from five aspects, including large-scale FOH array, very-low-frequency detection, fiber-optic vector hydrophone (FOVH), towed linear array, and deep-sea and long-haul transmission. The above five aspects indicate the future development trends in the FOH research field, and they also provide a guideline for the practical applications of FOH as well as its array.展开更多
Ultra-high-speed, ultra-large-capacity and ultra-long-haul (3U) are the forever pursuit of optical communication. As a new mode of optical communication, 3U transmission can greatly promote next generation optical i...Ultra-high-speed, ultra-large-capacity and ultra-long-haul (3U) are the forever pursuit of optical communication. As a new mode of optical communication, 3U transmission can greatly promote next generation optical internet and broadband mobile communication network development and technological progress, therefore it has become the focus of international high-tech intellectual property competition ground. This paper introduces the scientific problems, key technologies and important achievements in 3U transmission research.展开更多
Here we summarize multi-terabit long-haul transmission experiment and distributed Raman amplification (DRA) technologies. As well, we investigate the configuration of dispersion-managed fibers for the DRA-based system...Here we summarize multi-terabit long-haul transmission experiment and distributed Raman amplification (DRA) technologies. As well, we investigate the configuration of dispersion-managed fibers for the DRA-based system from the viewpoint of the fiber non-linear effect and required pumping power.展开更多
This paper reviews the recent advances in multi-terabit long-haul transmission technologies for terrestrial optical networks. The use of high performance new fibres, low-noise Raman amplification, optimised modulation...This paper reviews the recent advances in multi-terabit long-haul transmission technologies for terrestrial optical networks. The use of high performance new fibres, low-noise Raman amplification, optimised modulation formats, and forward error correction is shown to be effective for capacity and distance expansion.展开更多
对相干光正交频分复用(orthogonal frequency division multiplexing,OFDM)在大容量和超长距离光传输中的应用进行了综合性的阐述.首先,简单地描述了OFDM信号的原理,并对OFDM在光通信中的优势及劣势作了全面的分析.其次,对兆兆比特每秒(...对相干光正交频分复用(orthogonal frequency division multiplexing,OFDM)在大容量和超长距离光传输中的应用进行了综合性的阐述.首先,简单地描述了OFDM信号的原理,并对OFDM在光通信中的优势及劣势作了全面的分析.其次,对兆兆比特每秒(Tb/s)级OFDM的发射机、链路及接收机的设计进行了详细的描述,并介绍了迄今为止世界范围内已完成的具有里程碑意义的OFDM超大容量、超长距离光传输实验.最后,对Tb/s级光传输的发展进行了展望.展开更多
基金The authors would like to acknowledge the support of the National Natural Science Foundation of China(Grant Nos.61775238,61705263,and 61705262).
文摘Fiber-optic hydrophone (FOH) is a significant type of acoustic sensor, which can be used in both military and civilian fields such as underwater target detection, oil and natural gas prospecting, and earthquake inspection. The recent progress of FOH is introduced from five aspects, including large-scale FOH array, very-low-frequency detection, fiber-optic vector hydrophone (FOVH), towed linear array, and deep-sea and long-haul transmission. The above five aspects indicate the future development trends in the FOH research field, and they also provide a guideline for the practical applications of FOH as well as its array.
文摘Ultra-high-speed, ultra-large-capacity and ultra-long-haul (3U) are the forever pursuit of optical communication. As a new mode of optical communication, 3U transmission can greatly promote next generation optical internet and broadband mobile communication network development and technological progress, therefore it has become the focus of international high-tech intellectual property competition ground. This paper introduces the scientific problems, key technologies and important achievements in 3U transmission research.
基金the National Natural Science Foundation of China(61047033)the Natural Science Foundation of Shandong Province in China(ZR2010FM043)State Key Laboratory of Advanced Optical Communication Systems and Networks (2011GZKF031109)
文摘Here we summarize multi-terabit long-haul transmission experiment and distributed Raman amplification (DRA) technologies. As well, we investigate the configuration of dispersion-managed fibers for the DRA-based system from the viewpoint of the fiber non-linear effect and required pumping power.
文摘This paper reviews the recent advances in multi-terabit long-haul transmission technologies for terrestrial optical networks. The use of high performance new fibres, low-noise Raman amplification, optimised modulation formats, and forward error correction is shown to be effective for capacity and distance expansion.
文摘对相干光正交频分复用(orthogonal frequency division multiplexing,OFDM)在大容量和超长距离光传输中的应用进行了综合性的阐述.首先,简单地描述了OFDM信号的原理,并对OFDM在光通信中的优势及劣势作了全面的分析.其次,对兆兆比特每秒(Tb/s)级OFDM的发射机、链路及接收机的设计进行了详细的描述,并介绍了迄今为止世界范围内已完成的具有里程碑意义的OFDM超大容量、超长距离光传输实验.最后,对Tb/s级光传输的发展进行了展望.