A method of end-to-end qos guarantee in sdn network
A network and network state technology, applied in the network field, can solve the problems of neglecting the impact, lack of self-adaptation, not considering end-to-end QoS guarantee, etc., to achieve the effect of guaranteeing QoS, improving the global control ability, and balancing network resources
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Publication Date
- 2019-01-25
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Abstract
Description
technical field
[0001] The invention relates to a method for end-to-end QoS guarantee in an SDN network, belonging to the field of network technology. Background technique
[0002] With the rapid development of the network and the increasingly rich types of application services, the traditional network model has been difficult to meet the needs of network development. Software Defined Networks (Software Defined Networks, SDN), a new type of network model, has attracted more and more attention. However, the SDN network is still in the early stages of development, and there are many deficiencies, especially in providing end-to-end QoS (Quality of Service) guarantees for services. Adaptability, also ignores the influence of the switch node itself in the transmission path. When the data flow is transmitted, delay, congestion and packet loss will occur at the switch node, especially the delay and congestion of the port queue, which will have a significant impact on the QoS guara...
Examples
Embodiment Construction
[0029] Below in conjunction with accompanying drawing, the present invention is described in further detail:
[0030] 1. System architecture description
[0031] The queue-aware end-to-end QoS guarantee mechanism proposed in this paper is as follows: figure 1 shown in figure 1 Among them, multiple queues with different output rates are set on the switch port of the data plane, and a large number of background streams enter different queues for transmission, such as ftp streams, video streams, etc. When a new data flow arrives on the network, the controller starts the queue-aware QoS guarantee mechanism, and periodically collects network status, including link status and real-time queue status. Based on the collected information, the controller estimates the end-to-end The cost of all optional paths at the end, and find a path with the least cost to transmit the new flow. Finally, the controller encapsulates the forwarding path information into a flow entry, and sends the fl...