Satellite network based on distributed-type SDN and construction method thereof

A satellite network and distributed technology, applied in the field of satellite network, can solve problems such as controller system research, poor invulnerability, and excessive delay

CN107294592AActive Publication Date: 2017-10-24DALIAN UNIVERSITY
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Patent Information

Authority / Receiving Office
CN · China
Current Assignee / Owner
Publication Date
2017-10-24

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Abstract

The invention discloses a satellite network based on distributed-type SDN and a construction method thereof, wherein the satellite network adopts a GEO/MEO/LEO three-layer satellite network model. The invention proposes a distributed-type software defined satellite network DSDSN network for the GEO/MEO/LEO three-layer satellite network and proposes a controller system configuration strategy for the same-layer satellite cluster based on the controller clustering technology. The strategy is based on the ideas of an ant colony clustering algorithm and through the selection of appropriate control nodes, the position and number of the controllers can be properly configured; the communication nodes can be deployed according to the formed controller cluster so as to reduce the total delay from the communication nodes to the neighboring controller node. The centralized management of the invention has a global view of all the nodes in the entire network, can grasp the status of satellite nodes and improve the survivability of the network. The invention reduces the routing cost by optimizing three parameters of the link connection duration, the total delay and the satellite resources.
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Description

technical field

[0001] The present invention relates to a satellite network, in particular to a distributed software defined satellite network (Distributed Software Defined Satellite Network, DDSSN for short). Background technique

[0002] The traditional satellite network usually adopts the communication method of bent pipe transparent forwarding, forwarding all the data packets from the sending terminal to an intermediate station, and then from the intermediate station to the receiving end via the relay satellite. This approach simplifies the structure of the payload in satellite communications, but at the same time it also leads to an increase in delay. In recent years, the emergence of some new technologies has greatly promoted the development of satellite networks, such as on-board processing (On-board Processing, OBP), inter-satellite link (Inter-satelliteLink, ISL), etc. The communication time of the satellite network is extended, the load of the ground communication...

Examples

Embodiment Construction

[0078] The present invention will be further described below in conjunction with the accompanying drawings.

[0079] The present invention first builds a satellite constellation network architecture diagram, such as figure 1 As shown, the GEO / MEO / LEO three-layer satellite network model is adopted; then as figure 2 As shown, in view of the characteristics of traditional satellite networks such as long delay, large space-time, and dynamic topology, a fully distributed SDN architecture is applied to satellite networks, and a distributed software-defined satellite network DSDSN is proposed. Based on this architecture, a controller system configuration strategy is proposed for the same-level satellite group, such as image 3 As shown, the controller selection algorithm based on greed and clustering has redesigned the algorithm. The controller selected by this strategy has a smaller delay, which improves the resource utilization of the system and network reliability.

[0080] The...