An energy efficient hybrid interference-resilient frame fragmentation for wireless sensor networks

Ammar Meer, Anas Daghistani, B. Shihada
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引用次数: 3

Abstract

Frame fragmentation into small blocks with dedicated error detection codes per block can reduce the unnecessary retransmission of the correctly received blocks. However, the optimal block size varies based on the wireless channel conditions. Further, blocks within a single frame may have different optimal sizes based on variations in interference patterns. This paper proposes a hybrid interference-resilient frame fragmentation (Hi-Frag) link-layer scheme for wireless sensor networks. It effectively addresses the challenges associated with dynamic partitioning of blocks while accounting for the observed error patterns. Hi-Frag is the first work to introduce an adaptive frame fragmentation scheme with hybrid block sizing, implemented and evaluated on a real WSN testbed. Hi-Frag shows substantial enhancements over fixed-size partial packet recovery protocols, achieving up to 2.5× improvement in throughput when the channel condition is noisy, while reducing network delays by up to 14% of the observed delay. On average, Hi-Frag shows 35% gain in throughput compared to static fragmentation approaches across all channel conditions used in our experiments. Also, Hi-Frag lowers the energy consumed per useful bit by 66% on average compared to conventional protocols, which increases the energy efficiency.
一种用于无线传感器网络的高能效混合抗干扰帧分片
帧分割成小块,每个块有专用的错误检测代码,可以减少正确接收的块的不必要的重传。然而,最佳块大小根据无线信道条件而变化。此外,单帧内的块可以基于干涉图案的变化具有不同的最佳尺寸。提出了一种用于无线传感器网络的混合抗干扰帧碎片(hi - rag)链路层方案。它有效地解决了与块的动态分区相关的挑战,同时考虑到观察到的错误模式。hi - rag是第一个引入混合块大小的自适应帧分片方案的工作,在真实的WSN测试台上实现和评估。hi - rag比固定大小的部分数据包恢复协议有了实质性的增强,当信道条件有噪声时,吞吐量提高了2.5倍,同时将网络延迟减少了14%。平均而言,与我们实验中使用的所有通道条件下的静态碎片方法相比,hi - rag的吞吐量增加了35%。此外,与传统协议相比,hi - rag将每个有用比特的能耗平均降低66%,从而提高了能源效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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