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Coordination of autonomic functionalities in communications networks

机译:通讯网络中自主功能的协调

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摘要

Future communication networks are expected to feature autonomic (or self-organizing) mechanisms to ease deployment, tune parameters automatically and repair the network. Self-organizing mechanisms are designed as stand-alone entities, even though multiple mechanisms run in parallel in operational networks. An efficient coordination mechanism will be the major enabler for large scale deployment of self-organizing networks. We model self-organizing mechanisms as control loops, and study the conditions for stability when running control loops in parallel. Based on control theory, we propose a distributed coordination mechanism to stabilize the system. In certain cases, coordination can be achieved without any exchange of information between control loops. The mechanism remains valid in the presence of noise via stochastic approximation. Instability and coordination in the context of wireless networks are illustrated with two examples. We are essentially concerned with linear systems, and the applicability of our results for non-linear systems is discussed. (1, 2)
机译:预期未来的通信网络将具有自动(或自组织)机制,以简化部署,自动调整参数并修复网络。自组织机制被设计为独立实体,即使多个机制在运营网络中并行运行。有效的协调机制将成为大规模部署自组织网络的主要推动力。我们将自组织机制建模为控制回路,并研究并行运行控制回路时的稳定性条件。基于控制理论,我们提出了一种分布式协调机制来稳定系统。在某些情况下,无需在控制回路之间交换任何信息即可实现协调。该机制在存在随机近似噪声的情况下仍然有效。通过两个示例说明了无线网络中的不稳定性和协调性。我们本质上与线性系统有关,并讨论了我们的结果对非线性系统的适用性。 (1、2)

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