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Error-tolerant non-binary error correction code for low power wireless sensor networks

机译:低功耗无线传感器网络的耐堵塞非二进制纠错码

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Wireless sensor networks have emerged as revolutionary technology, where hundreds or thousands of small sensor units are distributed over an environment to monitor a certain phenomenon and achieve a certain functionality. These small sensor nodes are capable of sensing, computing, and communicating. Even though their capabilities are limited, their overall behaviour is complex. For decades researchers all over the world have been working on realizing many applications for wireless sensor networks and trying to overcome their issues. As in any new technology several challenges stand as a barrier to the advancement of wireless sensor networks. One important challenge is power consumption since the expected life of a wireless sensor network is determined by the lifetime of its components. In this paper we propose a modification to the Reed-Solomon decoder algorithm in order to reduce its power consumption and thus improve the lifetime of wireless sensor networks. The proposed modification exploits the fact that there exist applications that tolerate errors without totally jeopardizing the integrity of the data. This opens the door for new type of error control codes, namely error-tolerant non-binary error correction codes. Here we explore the performance of the proposed algorithm in terms of bit error rate and symbol error rate in comparison to the original algorithm and uncoded data. Also we provide a power saving estimate resulting from implementing such an algorithm.
机译:无线传感器网络已成为革命性的技术,其中数百或数千个小型传感器单元分布在环境中以监测一定的现象并实现某种功能。这些小型传感器节点能够感测,计算和通信。即使他们的能力有限,它们的整体行为也很复杂。对于几十年来,世界各地的研究人员一直在努力实现无线传感器网络的许多应用,并试图克服他们的问题。与任何新技术一样,几个挑战都是对无线传感器网络进步的障碍。由于无线传感器网络的预期寿命由其组件的寿命确定,一个重要挑战是功耗。在本文中,我们提出了对Reed-Solomon解码器算法的修改,以降低其功耗,从而改善无线传感器网络的寿命。建议的修改利用了存在容忍错误的应用程序,而不会完全危及数据的完整性。这为新型错误控制代码打开了门,即耐堵塞的非二进制纠错码。在这里,我们在与原始算法和未编码的数据相比,在误码率和符号错误率方面探讨所提出的算法的性能。此外,我们也提供了由实现这种算法产生的省电估计。

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