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首页> 外文期刊>Expert Systems with Application >Delay optimization using Knapsack algorithm for multimedia traffic over MANETs
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Delay optimization using Knapsack algorithm for multimedia traffic over MANETs

机译:使用背包算法的延迟优化用于MANET上的多媒体流量

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摘要

Multimedia transmission over Mobile Ad-hoc Networks (MANETs) is crucial to many applications. However, MANETs possess several challenges including transmitting large size packets, minimizing delay, loss-tolerant and buffer size estimation. For effective multimedia transmission, delay should be minimized and packets should be received in the defined order. The existing standards such as 802.11b and 802.11e perform well in wireless networks, but exhibit poor response in MANETs for multimedia traffic, especially in multi-hop networks. In this paper, we first establish the dependency of delay on buffer size and packet size, and then present a delay optimization approach for multimedia traffic in MANETs. We use Knapsack algorithm for buffer management to maximize the in-order packets and minimize the out-of-order packets simultaneously. Our approach exploits the buffer internals and dynamically adjusts the buffer usage so that a node transmits the packets in the desired order to its successive nodes. Careful estimation of packet size and buffer size helps in minimizing the delay, improving the capability of receiving packets in the correct order and reducing out-of-order packets in the buffer at intermediate nodes. Our approach also controls the loss of multimedia data packets during transmission. We validate our approach with real-world examples using network simulator. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过移动自组织网络(MANET)进行的多媒体传输对于许多应用程序至关重要。但是,MANET面临一些挑战,包括传输大尺寸数据包,最小化延迟,容错和缓冲区大小估计。为了有效地进行多媒体传输,应将延迟最小化,并应按定义的顺序接收数据包。现有标准(例如802.11b和802.11e)在无线网络中表现良好,但在MANET中对多媒体流量的响应较差,尤其是在多跳网络中。在本文中,我们首先建立了延迟对缓冲区大小和数据包大小的依赖性,然后提出了一种针对MANET中多媒体流量的延迟优化方法。我们使用Knapsack算法进行缓冲区管理,以最大化有序数据包并同时最小化无序数据包。我们的方法利用缓冲区内部结构并动态调整缓冲区使用率,以便节点按所需顺序将数据包传输到其后续节点。仔细估计数据包大小和缓冲区大小有助于最大程度地减少延迟,提高按正确顺序接收数据包的能力,并减少中间节点缓冲区中乱序的数据包。我们的方法还控制了传输过程中多媒体数据包的丢失。我们使用网络模拟器以实际示例验证了我们的方法。 (C)2015 Elsevier Ltd.保留所有权利。

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