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A State Oriented Buffer Control Mechanism for the Priority-Based Congestion Control Algorithm in WSNs

机译:WSN中基于优先级的拥塞控制算法的面向状态的缓冲区控制机制

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In the multiple-event WSNs, each event has different importance and most of the congestions are caused by the burst events with high importance. Therefore, the priority-based congestion control algorithm is required to WSNs. Most of the existing algorithms to control the congestions of the WSNs do not consider the priorities of the events. In addition, the existing algorithms rely on the rate control of source nodes using the backpressure mechanism but it is not efficient for the dynamic applications (ex. Tracking application). Therefore, we proposed a new algorithm that uses the queue state management and duty-cycle adjustment. This new algorithm tries to prevent the congestion previously and adjusts the duty-cycle to guarantee the reliability of the important events. The simulation results show that the proposed algorithm performs better than the existing algorithm in both of the static case and dynamic case.
机译:在多事件WSN中,每个事件具有不同的重要性,并且大多数拥塞是由具有高重要性的突发事件引起的。因此,WSN需要基于优先级的拥塞控制算法。现有的大多数控制WSN拥塞的算法都没有考虑事件的优先级。另外,现有算法依赖于使用反压机制对源节点的速率控制,但是对于动态应用程序(例如跟踪应用程序)而言效率不高。因此,我们提出了一种使用队列状态管理和占空比调整的新算法。这种新算法试图预先防止拥塞,并调整占空比以确保重要事件的可靠性。仿真结果表明,在静态和动态情况下,该算法的性能均优于现有算法。

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