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Bit Error Rate Analysis of Hybrid Buffer-Based Switch for Optical Data Centers

  • Arunendra Singh EMAIL logo , Amod Kumar Tiwari und Pronaya Bhattacharya
Veröffentlicht/Copyright: 16. Februar 2019
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Abstract

Data centers are very critical elements which store and distribute data over the Internet. current data centers heavily rely on electronics, and thus require vast amount of power and speed is limited. These limitations can be tackled using optical technology. In general optical devices consume lesser amount of power, and support very high data rates. In this paper, a hybrid buffer-based optical packet switch which can be used in data centers as aggregated or core switches is discussed. The physical layer analysis is presented and performance is measured in terms of bit error rate (BER) obtained at various power levels. The analysis is carried out in presence of crosstalk of various components and for acceptable BER≤10–9, minimum power required for all optical, all electronic and hybrid buffer is evaluated. Finally power penalty is also evaluated which is required to overcome the effect of amplified spontaneous noise (ASE) and components crosstalk.

References

1. Kachris C, Kanonakis K, Tomkos I. Optical interconnection networks in data centers: recent trends and future challenges. IEEE Commun Mag. 2013;51:39–45.10.1109/MCOM.2013.6588648Suche in Google Scholar

2. Singh RK, Srivastava R, Singh YN. Wavelength division multiplexed loop buffer memory based optical packet switch. Opt Quantum Electron. 2007 Jan 1;39:15–3.10.1007/s11082-007-9061-0Suche in Google Scholar

3. Srivastava R, Singh YN. Feedback fiber delay lines and AWG based optical packet switch architecture. Opt Switching Networking. 2010 Apr 1;7:75–84.10.1016/j.osn.2010.01.002Suche in Google Scholar

4. Yin Y, Proietti R, Ye X, Nitta CJ, Akella V, Yoo SJ. LIONS: an AWGR-based low-latency optical switch for high-performance computing and data centers. IEEE J Sel Top Quantum Electron. 2013 Mar;19:272–80.10.1109/JSTQE.2012.2209174Suche in Google Scholar

5. Shukla V, Jain A, Srivastava R. Performance evaluation of an AWG based optical router. Opt Quantum Electron. 2016 Jan 1;48:69.10.1007/s11082-015-0348-2Suche in Google Scholar

6. Shukla V, Jain A. Design and analysis of high speed optical routers for next generation data centre network. J Eng Res. 2018;6:122–37.Suche in Google Scholar

7. Rastegarfar H, Leon-Garcia A, LaRochelle S, Rusch LA. Cross-layer performance analysis of recirculation buffers for optical data centers. J Lightwave Technol. 2013 Feb 1;31:432–45.10.1109/JLT.2012.2226865Suche in Google Scholar

8. Srivastava R, Singh RK, Singh YN. WDM-based optical packet switch architectures. J Opt Networking. 2008 Jan 2;7:94–105.10.1364/JON.7.000094Suche in Google Scholar

9. Bhattacharya P, Singh A, Kumar A, Tiwari AK, Srivastava R. Comparative study for proposed algorithm for all-optical network with negative acknowledgement (AO-NACK). In Proceedings of the 7th International Conference on Computer and Communication Technology. ACM, 2017, November. 47–51.10.1145/3154979.3154981Suche in Google Scholar

10. Srivastava R, Singh RK, Singh YN. Design analysis of optical loop memory. J Lightwave Technol. 2009 Nov 1;27:4821–31.10.1109/JLT.2009.2026493Suche in Google Scholar

11. Shukla VA, Jain AR, Srivastava R. Design of an arrayed waveguide gratings based optical packet switch. J Eng Sci Technol. 2016 Dec 1;11:12–20.Suche in Google Scholar

12. Lim H, Park CS. An optical packet switch with hybrid buffer structure for contention resolution of asynchronous variable length packets. Workshop on High Performance Switching and Routing HPSR IEEE. 2004. 162–6.Suche in Google Scholar

13. Samoud W, Ware C, Lourdiane M. Performance analysis of a hybrid optical–electronic packet switch supporting different service classes. J Opt Commun Networking. 2015;7:952–9.10.1364/JOCN.7.000952Suche in Google Scholar

14. Singh A, Tiwari AK, Srivastava R. Design and analysis of hybrid optical and electronic buffer based optical packet switch. Sādhanā. 2018;43:19.10.1007/s12046-018-0786-1Suche in Google Scholar

15. Singh A, Tiwari A. Analysis of hybrid buffer based optical data center switch. J Opt Commun. 2018. Retrieved 1 Jan. 2019 from. DOI:10.1515/joc-2018-0121.Suche in Google Scholar

16. Takahashi H, Oda K, Toba H. Impact of crosstalk in an arrayed-waveguide multiplexer on N×N optical interconnection. J Lightwave Technol. 1996;14:1097–105.10.1109/50.511611Suche in Google Scholar

17. Gillner L, Larsen CP, Gustavsson M. Scalability of optical multiwavelength switching networks: crosstalk analysis. J Lightwave Technol. 1999;17:58–67.10.1109/50.737422Suche in Google Scholar

Received: 2019-01-07
Accepted: 2019-01-30
Published Online: 2019-02-16
Published in Print: 2022-07-26

© 2019 Walter de Gruyter GmbH, Berlin/Boston

Artikel in diesem Heft

  1. Frontmatter
  2. Amplifiers
  3. Analysis of Four Wave Mixing In Ultra Dense WDM-Hybrid Optical Amplifier Systems
  4. Detectors
  5. BER of Underwater Wireless Optical Communication Systems with SIMO Detection over Strong Oceanic Turbulence
  6. Devices
  7. All-Optical XOR, XNOR, NAND and OR Logic Gates Based on Photonic Crystal 3-DB Coupler for BPSK Signals
  8. Transmittivity/Reflectivity, Bandwidth, and Ripple Factor Level Measurement for Different Refractive Index Fiber Grating Shape Profiles
  9. Bit Error Rate Analysis of Hybrid Buffer-Based Switch for Optical Data Centers
  10. Modulators
  11. High-Quality Optical Frequency Comb Generation-Based on Polarization Modulator with RF Frequency Multiplication Circuit and Intensity Modulator
  12. Networks
  13. Performance Enhancement in Colorless WDM–PON Using SSB-SC
  14. Lightbeam Configuration Method and Interference Elimination Resource Scheduling for Indoor Multibeam VLC Networks
  15. An Integrated High-Speed Full Duplex Coherent OFDM-PON and Visible-Light Communication System
  16. Resource Efficient Online Routing Enabled Translucent Space Division Multiplexing Based Elastic Optical Networks
  17. Comparative Analysis of High Speed 20/20 Gbps OTDM-PON, WDM-PON and TWDM-PON for Long-Reach NG-PON2
  18. Systems
  19. Directional Beam Based LED Deployment for a Short Range Indoor LED Light Communication System
  20. Secure Optical QAM Transmission Using Chaos Message Masking
  21. Performance Analysis of Duobinary and AMI Techniques Using LG Modes in Hybrid MDM-WDM-FSO Transmission System
  22. Performance Analysis of Single Side Band Orthogonal Frequency Division Multiplexing in Radio over Fiber System with Direct and External Modulation Schemes
  23. Performance Analysis of FSK-PPM Technique in Visible-Light Communication Systems
  24. Experimental Demonstration of MASH Based Sigma Delta Radio over Fiber System for 5G C-RAN Downlink
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