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首页> 外文期刊>Journal of intelligent & fuzzy systems: Applications in Engineering and Technology >Ecological environment fuzzy networking system protection based on optical fiber intelligent network
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Ecological environment fuzzy networking system protection based on optical fiber intelligent network

机译:基于光纤智能网络的生态环境模糊网络系统保护

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The optical fiber network has the characteristics of providing users with wider bandwidth and supporting the changing needs of more users. At the same time, the optical fiber network can also reduce the network infrastructure investment. The traditional Ad Hoc On-demand Distance Vector (AODV) algorithm does not consider the impact of node movement on the network, and the link disconnection frequently occurs during the routing process. The ant colony algorithm based on swarm intelligence only considers the unique factor of pheromone concentration to find the optimal path through multiple iterations, which will increase the complexity of the algorithm and affect the route establishment delay. In response to the above problems, this paper proposes a routing algorithm based on fuzzy logic. The algorithm can comprehensively consider the three factors of node location, mobility and signal strength, and greatly reduces the complexity of the algorithm. This paper gives a detailed definition of profust reliability of the Ethernet Passive Optical Network (EPON) system for distribution network communication and obtains the profust reliability parameters based on Monte Carlo simulation. After that, the reliability of profust under different networking modes was simulated, and the influence of network scale, component failure rate, component repair time and other parameters on the reliability of EPON networking profust was analyzed. The fuzzy probist reliability analysis method uses analytical methods, which are commonly used to deal with end-to-end reliability analysis problems and has certain limitations. Profust reliability analysis treats the system as a whole, which is more suitable for the reliability of complex end-to-multi-end systems.
机译:光纤网络具有为用户提供更宽带宽和支持更多用户不断变化的需求的特点。同时,光纤网络也可以减少网络基础设施的投资。传统的Ad Hoc按需距离矢量(AODV)算法不考虑节点运动对网络的影响,在路由过程中频繁出现链路断开。基于群体智能的蚁群算法只考虑信息素浓度的唯一性因素,通过多次迭代寻找最优路径,这会增加算法的复杂度,影响路由建立的延迟。针对上述问题,本文提出了一种基于模糊逻辑的路由算法。该算法能综合考虑节点位置、移动性和信号强度三个因素,大大降低了算法的复杂度。本文对配电网通信用以太网无源光网络(EPON)系统的可靠性进行了详细的定义,并基于蒙特卡罗仿真得到了系统的可靠性参数。然后,对不同组网模式下的可靠性进行了仿真,分析了网络规模、组件故障率、组件修复时间等参数对EPON组网可靠性的影响。模糊probist可靠性分析方法使用分析方法,这些方法通常用于处理端到端的可靠性分析问题,并且具有一定的局限性。Profust可靠性分析将系统视为一个整体,更适用于复杂端到多端系统的可靠性。

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