The Impact of Diverse Execution Strategies on Incremental Code Updates for Wireless Sensor Networks

Kai Lehniger, S. Weidling
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引用次数: 3

Abstract

Wireless Sensor Networks (WSNs) may require code updates for a variety of reasons, such as fixing bugs, closing security holes or extending functionality. WSNs typically have limited resources available and wireless updates are costly in terms of energy and can lead to early battery failure. The idea of incremental code updates is to conserve energy by reusing the existing code image on the node and disseminating only a delta file that is generated by differencing algorithms, which can be used to reconstruct the new image. Beyond these differencing algorithms, there are other strategies to minimize the delta, e.g., reconstructing only the changed parts of the image. This paper points out possible implications of diverse execution strategies and gives suggestions. In addition to the usual delta size, the impact on the flash memory was considered. The presented results can be used to select a fitting strategy for a given use case.
不同执行策略对无线传感器网络增量代码更新的影响
由于各种原因,无线传感器网络(wsn)可能需要代码更新,例如修复错误、关闭安全漏洞或扩展功能。wsn的可用资源通常有限,而且无线更新在能源方面成本高昂,并且可能导致早期电池故障。增量代码更新的思想是通过重用节点上的现有代码映像并仅传播由差分算法生成的增量文件来节省能量,该增量文件可用于重建新映像。除了这些差分算法之外,还有其他最小化delta的策略,例如,只重建图像的变化部分。本文指出了不同的执行策略可能带来的影响,并提出了建议。除了通常的增量大小外,还考虑了对闪存的影响。所呈现的结果可用于为给定用例选择合适的策略。
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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