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Performance evaluation of the DAlPaS congestion control algorithm in wireless sensor networks

机译:无线传感器网络中DALPAS拥塞控制算法的性能评估

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摘要

As wireless sensor networks are evolving to applications where high load demands dominate and time is considered critical, congestion remains a serious problem that has to be effectively and efficiently tackled. Especially in critical applications such as industrial or aviation control, congestion occurrence, in any instance of the network's operation, is capable of ruining the mission of the network. Congestion is usually controlled by reducing the rate with which sources are injecting data in the network (“traffic control”). Although this method is effective in many cases, it is not acceptable for applications that need all the produced data to be received by sink. Besides the “traffic control” method, “resource control” is also used for congestion mitigation. Algorithms that employ the “resource control” method employ alternative paths toward the sink. In this work, through analysis and simulations, we evaluate the performance of Dynamic Alternative Path Selection Algorithm (DAlPaS) a congestion control algorithm that employs alternative paths for the transmission of excess packets from the source(s) to the sink(s). The DAlPaS algorithm is evaluated against two other algorithms that also employ “resource control” (TARA and HTAP) and against an algorithm that employs the “traffic control” method (SenTCP), in addition to the no congestion control case (no CC).
机译:随着无线传感器网络在高负荷需求支配和时间被认为是关键的应用中,拥塞仍然是必须有效和有效地解决的严重问题。特别是在诸如工业或航空控制的关键应用中,在任何网络操作的情况下拥塞发生,能够破坏网络的使命。通常通过降低源在网络中注入数据的速率来控制拥塞(“交通控制”)的速率来控制。虽然这种方法在许多情况下是有效的,但是对于需要接收到的所有产生数据的应用是不可接受的。除了“交通控制”方法,“资源控制”也用于拥堵缓解。采用&#x201c的算法;资源控制”方法采用朝向水槽的替代路径。在这项工作中,通过分析和仿真,我们评估动态替代路径选择算法(DALPA)一种拥塞控制算法的性能,所述拥塞控制算法采用从源到源极的多余分组传输多余分组的替代路径。 DALPAS算法针对还采用的另外两个算法“资源控制” (塔拉和htap)和采用&#x201c的算法;交通控制”方法(SentCP),除了没有拥塞控制案例(没有CC)。

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