• Optical Communication Technology
  • Vol. 44, Issue 7, 47 (2020)
ZHANG Shengfeng, WANG Peng, YUAN Qiang, and HUANG Sheng
Author Affiliations
  • [in Chinese]
  • show less
    DOI: 10.13921/j.cnki.issn1002-5561.2020.07.011 Cite this Article
    ZHANG Shengfeng, WANG Peng, YUAN Qiang, HUANG Sheng. Odd-even partition spectrum assignment algorithm based on holding time for elastic optical networks[J]. Optical Communication Technology, 2020, 44(7): 47 Copy Citation Text show less
    References

    [1] ZHOU H, MAO S, AGRAWAL P. Optical power allocation for adaptive transmissions in wavelength-division multiplexing free space optical networks[J]. Digital Communications and Networks, 2015, 1(3): 171-180.

         ZHOU H, MAO S, AGRAWAL P. Optical power allocation for adaptive transmissions in wavelength-division multiplexing free space optical networks[J]. Digital Communications and Networks, 2015, 1(3): 171-180.

    [2] SANO A, YAMADA E, MASUDA H, et al. No-guard-interval coherent optical OFDM for 100Gb/s long-haul WDM transmission[J]. Journal of Lightwave Technology, 2009, 27(16): 3705-3713.

         SANO A, YAMADA E, MASUDA H, et al. No-guard-interval coherent optical OFDM for 100Gb/s long-haul WDM transmission[J]. Journal of Lightwave Technology, 2009, 27(16): 3705-3713.

    [3] BEHERA S, DEB A, DAS G, et al. Impairment Aware Routing, Bit Loading, and Spectrum Allocation in Elastic Optical Network[J]. IEEE Communications Magazine, 2019, 48(8): 3009-3020.

         BEHERA S, DEB A, DAS G, et al. Impairment Aware Routing, Bit Loading, and Spectrum Allocation in Elastic Optical Network[J]. IEEE Communications Magazine, 2019, 48(8): 3009-3020.

    [4] RODRIGO S T, BART P, DIDIER C, et al. Zone based spectrum assign-

         RODRIGO S T, BART P, DIDIER C, et al. Zone based spectrum assign-

         ment in elastic optical networks:a fairness approach[C]// Opto-Electronics and Communications Conference, June 28-July 2, 2015, Shanghai, China. New York: IEEE, 2015: 1-3.

         ment in elastic optical networks:a fairness approach[C]// Opto-Electronics and Communications Conference, June 28-July 2, 2015, Shanghai, China. New York: IEEE, 2015: 1-3.

    [5] ing-time awareness in elastic optical networks[J]. Optical Communications and Networking, 2017, 9(3): B78-B89.

         JUKAN A, SINGH S K. Efficient spectrum defragmentation with hold-

         ing-time awareness in elastic optical networks[J]. Optical Communications and Networking, 2017, 9(3): B78-B89.

         JUKAN A, SINGH S K. Efficient spectrum defragmentation with hold-

    [6] YANG F, WANG L,WANG L, et al. Holding-time-aware spectrum allocation algorithm for elastic optical networks[J]. Optical Fiber Technology, 2018, 41: 155-162.

         YANG F, WANG L,WANG L, et al. Holding-time-aware spectrum allocation algorithm for elastic optical networks[J]. Optical Fiber Technology, 2018, 41: 155-162.

    [7] LIU H L, LV L, CHEN Y, et al. Fragmentation-avoiding spectrum assignment strategy based on spectrum partition for elastic optical networks[J]. IEEE Photonics Journal, 2017, 9(5): 1-13.

         LIU H L, LV L, CHEN Y, et al. Fragmentation-avoiding spectrum assignment strategy based on spectrum partition for elastic optical networks[J]. IEEE Photonics Journal, 2017, 9(5): 1-13.

    [8] JING Y, CHAO Z, HAIYING P, et al. Adaptive energy saving mecha-

         nism with QoS aware in ethernet passive optical network[J]. Chongqing University of Posts & Telecommunications, 2017, 29(2): 216-222.

         nism with QoS aware in ethernet passive optical network[J]. Chongqing University of Posts & Telecommunications, 2017, 29(2): 216-222.

         JING Y, CHAO Z, HAIYING P, et al. Adaptive energy saving mecha-

    [9] CHATTERJEE B C, FADINI W, OKI E. A spectrum allocation scheme based on first-last-exact fit policy for elastic optical networks[J]. Network and Computer Applications, 2016, 68: 164-172.

         CHATTERJEE B C, FADINI W, OKI E. A spectrum allocation scheme based on first-last-exact fit policy for elastic optical networks[J]. Network and Computer Applications, 2016, 68: 164-172.

    [10] tion for seamless migration[J]. Optical Communications and Networking, 2019, 37(17): 4382-4393.

         tion for seamless migration[J]. Optical Communications and Networking, 2019, 37(17): 4382-4393.

         JAUMARD B, POUYA H, COUDERT D. Wavelength defragmenta-

         JAUMARD B, POUYA H, COUDERT D. Wavelength defragmenta-

    [11] XU Z, HUANG J, ZHOU Z, et al. A novel grooming algorithm with the adaptive weight and load balancing for dynamic holding-time-aware traffic in optical networks[J]. Optical Fiber Technology, 2013, 19(5): 392-399.

         XU Z, HUANG J, ZHOU Z, et al. A novel grooming algorithm with the adaptive weight and load balancing for dynamic holding-time-aware traffic in optical networks[J]. Optical Fiber Technology, 2013, 19(5): 392-399.

    CLP Journals

    [1] XU Lingmin, SHANG Ya′na, CHEN Zhenyi. Optical amplifier based on PbS doped ring core fiber[J]. Optical Communication Technology, 2020, 44(11): 35

    ZHANG Shengfeng, WANG Peng, YUAN Qiang, HUANG Sheng. Odd-even partition spectrum assignment algorithm based on holding time for elastic optical networks[J]. Optical Communication Technology, 2020, 44(7): 47
    Download Citation