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Switch processor matched with core node of hybrid optical switching network

A switching network and core node technology, applied in the field of optical network communication, can solve problems such as limited load capacity, low resource utilization, poor switching flexibility, etc., and achieve the effect of improving flexibility

Inactive Publication Date: 2012-04-25
UNIV OF ELECTRONICS SCI & TECH OF CHINA
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, due to the fixed connection configuration of the low-speed optical switching unit module and the high-speed optical switching unit module in this switching technology, once the port used for optical burst switching in the input port is selected, it can no longer be controlled by the node during the communication process. command to reconfigure it, that is, only selected ports can be used for optical burst switching
Therefore, there are defects such as poor switching flexibility, low resource utilization, and limited optical circuit switching (OCS) load capacity in the network.

Method used

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  • Switch processor matched with core node of hybrid optical switching network
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  • Switch processor matched with core node of hybrid optical switching network

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Embodiment Construction

[0013] This embodiment adopts one low-speed optical switching unit module with a connection interface to the switching control unit in the control module, one high-speed optical switching unit module with a connection interface to the switching control unit in the control module, two multiplexers, The 2×2 (with 2 input ports and 2 input ports) hybrid optical switching core node composed of 2 splitters and 14 tunable wavelength converters (TWC) is used as a switch processor. The structure of the core node of the hybrid optical switch composed of the switching processor and the control module in this embodiment is as follows: image 3 Shown: In the switching processor part, the low-speed optical switching unit module is composed of optical switches using MEMS technology, and the size is (input port × output port) 14×14; the high-speed optical switching unit module is composed of optical switches using SOA technology, The size is (input port × output port) 4×4; the splitter adopts...

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Abstract

The invention relates to a switch processor matched with a core node of a hybrid optical switching network in an optical network communication technology. The switch processor comprises a wave separator set, a wave combiner set, a low-speed optical switch unit module, a high-speed optical switch unit module and tunable wavelength converters, wherein the wave separator set and the wave combiner set are provided with an input port and an output port; the low-speed optical switch unit module and the high-speed optical switch unit module are sequentially arranged between the wave separator set and the wave combiner set in series and respectively provided with an interface connected with a switching control unit in a node; and the tunable wavelength converters are arranged between a high-speedoptical switch unit module output port and wave combiners and a low-speed optical switch unit module output port and the wave combiners. The low-speed optical switch unit module in the switch processor is used for supporting optical circuit switching, and the high-speed optical switch unit module simultaneously supports optical burst switching and the optical circuit switching; therefore the switch processor has the characteristics of flexibly, conveniently, reliably and automatically deploying hybrid optical switching modes, improving the flexibility of the optical burst switching / the optical circuit switching, the utilization rate of wavelength resources, the bearing capacity of the optical circuit switching in a network, and the like.

Description

Technical field [0001] The invention belongs to the technical field of optical network communication, in particular to a switching processor for a core node of a hybrid optical switching network. Background technique [0002] With the continuous development of communication technology and the continuous emergence of various new services, people's requirements for network bandwidth and service quality are getting higher and higher, and the requirements for the processing capacity and processing speed of network switching equipment are also getting higher and higher. . The emergence of Wavelength Division Multiplexing (WDM) technology enables multiple wavelength channels to be multiplexed in a single optical fiber, which greatly improves the transmission capacity of the optical fiber and largely meets the increasing demand for bandwidth , And on this basis, three basic optical switching technologies-optical circuit switching (Optical Circuit Switching, OCS, also called wavelength ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H04Q11/00H04B10/20H04B10/27
Inventor 徐世中王晟欧华富王雄
Owner UNIV OF ELECTRONICS SCI & TECH OF CHINA
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