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Investigation on performance of all optical buffer with large dynamical delay time based on cascaded double loop optical buffers

Investigation on performance of all optical buffer with large dynamical delay time based on cascaded double loop optical buffers
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摘要 Optical buffers are critical for optical signal processing in future optical packet-switched networks. In this paper, a theoretical study as well as an experimental demonstration on a new optical buffer with large dynamical delay time is carried out based on cascaded double loop optical buffers (I:)LOBs). It is found that pulse distortion can be restrained by a negative optical control mode when the optical packet is in the loop. Noise analysis indicates that it is feasible to realise a large variable delay range by cascaded DLOBs. These conclusions are validated by the experiment system with 4-stage cascaded DLOBs. Both the theoretical simulations and the experimental results indicate that a large delay range of 1-9999 times the basic delay unit and a fine granularity of 25 ns can be achieved by the cascaded DLOBs. The performance of the cascaded DLOBs is suitable for the all optical networks. Optical buffers are critical for optical signal processing in future optical packet-switched networks. In this paper, a theoretical study as well as an experimental demonstration on a new optical buffer with large dynamical delay time is carried out based on cascaded double loop optical buffers (I:)LOBs). It is found that pulse distortion can be restrained by a negative optical control mode when the optical packet is in the loop. Noise analysis indicates that it is feasible to realise a large variable delay range by cascaded DLOBs. These conclusions are validated by the experiment system with 4-stage cascaded DLOBs. Both the theoretical simulations and the experimental results indicate that a large delay range of 1-9999 times the basic delay unit and a fine granularity of 25 ns can be achieved by the cascaded DLOBs. The performance of the cascaded DLOBs is suitable for the all optical networks.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第9期420-427,共8页 中国物理B(英文版)
基金 supported by the State Key Development Program for Basic Research of China (Grant No.2010CB328300) the National Natural Science Foundation of China (Grant Nos.60677004 and 60702049) the Program for the New Century Excellent Talents in University of China (Grant No.NECT-07-0111) the Innovation Plan for Youth of Beijing University of Posts and Telecommunications
关键词 all optical packets switching optical buffer with large delay range signals impairment noise analysis of semiconductor optical amplifier all optical packets switching, optical buffer with large delay range, signals impairment, noise analysis of semiconductor optical amplifier
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