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Controller Placement in Software-Defined Satellite Networks

机译:软件定义的卫星网络中的控制器放置

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Software-defined satellite networks (SDSN) move the control logic off the forwarding devices and into the external controller, which achieves network flexibility, programmability, evolvability, and visibility. The controller placement in SDSN, as the foundation of SDSN implementation, has been seldom studied. In this paper, we proposed a three-layer hierarchical controller architecture for software-defined geostationary earth orbit/low earth orbit (GEO/LEO) satellite networks. Specifically, network operations control center (NOCC) is deployed as super controller, GEO satellites are domain controllers, and a part of LEO satellites are slave controllers. Based on this architecture, we further proposed a slave controller selection strategy to facilitate cost reduction and stability enhancement. The feasibility of this controller architecture is validated in terms of the maximum switch to controller and controller to controller delays. Besides, the influences of service request distribution on these two control delays are analyzed.
机译:软件定义的卫星网络(SDSN)将控制逻辑从转发设备移到外部控制器中,从而实现了网络的灵活性,可编程性,可扩展性和可见性。很少研究将SDSN中的控制器放置作为SDSN实施的基础。在本文中,我们为软件定义的地球静止地球轨道/低地球轨道(GEO / LEO)卫星网络提出了一种三层分层控制器架构。具体来说,将网络运营控制中心(NOCC)部署为超级控制器,GEO卫星作为域控制器,而LEO卫星的一部分作为从属控制器。基于此架构,我们进一步提出了一种从控制器选择策略,以促进成本降低和稳定性增强。根据最大切换到控制器和控制器到控制器的延迟,验证了该控制器体系结构的可行性。此外,分析了服务请求分配对这两个控制时延的影响。

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