期刊文献+

Scalable and Practical Nonblocking Switching Networks

Scalable and Practical Nonblocking Switching Networks
原文传递
导出
摘要 Large-scale strictly nonblocking (SNB) and wide-sense nonblocking (WSNB) networks may be infeasible due to their high cost. In contrast, rearrangeable nonblocking (RNB) networks are more scalable because of their much lower cost. However, RNB networks are not suitable for circuit switching. In this paper, the concept of virtual nonblockingness is introduced. It is shown that a virtual nonblocking (VNB) network functions like an SNB or WSNB network, but it is constructed with the cost of an RNB network. The results indicate that for large-scale circuit switching applications, it is only needed to build VNB networks. Large-scale strictly nonblocking (SNB) and wide-sense nonblocking (WSNB) networks may be infeasible due to their high cost. In contrast, rearrangeable nonblocking (RNB) networks are more scalable because of their much lower cost. However, RNB networks are not suitable for circuit switching. In this paper, the concept of virtual nonblockingness is introduced. It is shown that a virtual nonblocking (VNB) network functions like an SNB or WSNB network, but it is constructed with the cost of an RNB network. The results indicate that for large-scale circuit switching applications, it is only needed to build VNB networks.
出处 《Journal of Computer Science & Technology》 SCIE EI CSCD 2006年第4期466-475,共10页 计算机科学技术学报(英文版)
关键词 switching network rearrangeable nonblocking network wide-sense nonblocking network strictly nonblockingnetwork circuit switching optical switching switching network, rearrangeable nonblocking network, wide-sense nonblocking network, strictly nonblockingnetwork, circuit switching, optical switching
  • 相关文献

参考文献24

  • 1Benes V E. Mathematical Theory of Connecting Networks and Telephone Traffic. Academic Press, New York, 1965.
  • 2Hwang F K. The Mathematical Theory of Nonblocking Switching Networks. World Scientific, 1998.
  • 3Shannon C E. Memory requirements in a telephone exchange. The Bell System Technical Journal, 1950, 29: 343-349.
  • 4Bassalygo L A, Pinsker M C. Complexity of an optimum nonblocking switching network without reconnections. Probl. Inform. Transm., 1974, 9(1): 64-66.
  • 5Hinton H. A non-blocking optical interconnection network using directional couplers. In Proc. IEEE Global Telecommunications Conference (GLOBECOM), Atlanta, 1984, pp.885- 889.
  • 6Hunter D K, Legg P J, Andonovic I. Architecture for large dilated optical TDM switching networks. In IEE Proc. Optoelectronics, 1993, 140(5): 337-343.
  • 7Song G H, Goodman M. Asymmetrically-dilated crossconnect switches for low-crosstalk WDM optical networks. In Proc. IEEE 8th Annual Meeting Conference on Lasers and Electro-Optics Society Annual Meeting, 1995, 1: 212-213.
  • 8Gumaste A, Antony T. DWDM Network Designs and Engineering Solutions. Pearson Education Press, 2002.
  • 9Leighton F T. Introduction to Parallel Algorithms and Architectures: Arrays . Trees . Hypercubes. Morgan Kaufmann Publishers, 1992.
  • 10Agrawal D P. Graph theoretical analysis and design of multistage interconnection networks. IEEE Transactions on Computers, July 1983, C-32(7): 637-648.

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部