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An Enhanced Distributed Congestion Control Method for Classical 6LowPAN Protocols Using Fuzzy Decision System

机译:模糊决策系统的古典6LowPAN协议的增强分布式拥塞控制方法

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The classical Internet of things routing and wireless sensor networks can provide more precise monitoring of the covered area due to the higher number of utilized nodes. Because of the limitations in shared transfer media, many nodes in the network are prone to the collision in simultaneous transmissions. Medium access control protocols are usually more practical in networks with low traffic, which are not subjected to external noise from adjacent frequencies. There are preventive, detection and control solutions to congestion management in the network which are all the focus of this study. In the congestion prevention phase, the proposed method chooses the next step of the path using the Fuzzy decision-making system to distribute network traffic via optimal paths. In the congestion detection phase, a dynamic approach to queue management was designed to detect congestion in the least amount of time and prevent the collision. In the congestion control phase, the back-pressure method was used based on the quality of the queue to decrease the probability of linking in the pathway from the pre-congested node. The main goals of this study are to balance energy consumption in network nodes, reducing the rate of lost packets and increasing quality of service in routing. Simulation results proved the proposed Congestion Control Fuzzy Decision Making (CCFDM) method was more capable in improving routing parameters as compared to recent algorithms.
机译:由于利用节点数量越多,传输路由和无线传感器网络的古典物质路由和无线传感器网络可以提供更精确的监控覆盖区域。由于共享传输介质中的限制,网络中的许多节点容易出现同时传输中的碰撞。媒体访问控制协议通常在具有低流量的网络中更实用,其不受来自相邻频率的外部噪声。网络中的拥塞管理有预防,检测和控制解决方案,这是本研究的所有重点。在拥塞预防阶段,所提出的方法选择使用模糊决策系统通过最佳路径分配网络流量的路径的下一步。在拥塞检测阶段,队列管理的动态方法被设计为检测最少时间的拥塞并防止碰撞。在拥塞控制阶段,基于队列的质量来使用后压方法,以降低来自预先拥挤的节点的路径中链接的概率。本研究的主要目标是平衡网络节点中的能耗,降低丢失数据包的速率以及在路由中提高服务质量。仿真结果证明,与最近的算法相比,所提出的拥塞控制模糊决策(CCFDM)方法更加能够改善路由参数。

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