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Balancing Security and Energy Consumption in Wireless Sensor Networks

机译:平衡无线传感器网络中的安全性和能耗

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Appling security to messages traveling over wireless links in sensor nodes requires additional energy. This paper describes our suggestions on balancing the level of security and energy consumption based on our measurements using CrossBow and Ember sensor nodes. It was found that the node microcontroller's CPU operates for substantially longer times for both hashing and encryption operations compared to the time for handling messages without any security. However, this has little overall impact on energy consumption. The longer high-power radio transmission times due to hashing were especially costly. For the full operational mode, with CPU processing and also radio transmission of messages, our results indicate that the lifetime of a transmitting node in a security regime is only about one-half of the lifetime without security. Hence, we provided design guidelines to apply security with energy consideration for WSN. They include 2 to 8 bytes MACs for integrity and authentication instead of SHA-1, and the size of messages should match the steps of encryption algorithms.
机译:使用传感器节点中的无线链路传播的消息的应用程序需要额外的能量。本文介绍了我们基于使用弩和ember传感器节点的测量来平衡安全性和能耗水平的建议。发现节点微控制器的CPU对于散列和加密操作的时间更长的时间,与没有任何安全性的消息的时间相比,散列和加密操作。然而,这对能源消耗几乎没有完全影响。由于散列引起的较长的高功率无线电传输时间特别昂贵。对于完整的操作模式,通过CPU处理以及消息的无线电传输,我们的结果表明安全性制度中的发送节点的寿命仅是寿命的一半而没有安全性。因此,我们提供了设计指南,以适用于WSN的能源考虑。它们包括2到8个字节MAC,用于完整性和认证而不是SHA-1,而且消息的大小应与加密算法的步骤匹配。

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