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Power Adaptive Data Encryption for Energy-Efficient and Secure Communication in Solar-Powered Wireless Sensor Networks

机译:用于太阳能无线传感器网络中的节能和安全通信的功率自适应数据加密

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摘要

Basic security of data transmission in battery-powered wireless sensor networks (WSNs) is typically achieved by symmetric-key encryption, which uses little energy; but solar-powered WSNs sometimes have sufficient energy to achieve a higher level of security through public-key encryption. However, if energy input and usage are not balanced, nodes may black out. By switching between symmetric-key and public-key encryption, based on an energy threshold, the level of security can be traded off against the urgency of energy-saving. This policy can also reduce the amount of energy used by some nodes in a WSN, since data encrypted using a public-key is simply relayed by intermediate nodes, whereas data encrypted using a symmetric-key must be decrypted and reencrypted in every node on its path. Through a simulation, we compared the use of either symmetric-key or public-key encryption alone with our scheme, which was shown to be more secure, to use energy more effectively, and to reduce the occurrence of node blackouts.
机译:电池供电的无线传感器网络(WSNS)中的数据传输的基本安全性通常通过对称密钥加密来实现,它使用很少的能量;但是,通过公钥加密,太阳能WSN有时可以获得足够的能量来实现更高水平的安全性。但是,如果能量输入和使用不平衡,节点可能会黑暗。通过在对称密钥和公钥加密之间切换,基于能量阈值,可以抵御节能的紧迫性来交易安全级别。此策略还可以减少WSN中的某些节点使用的能量量,因为使用公钥加密的数据简单地由中间节点中继,而使用对称密钥加密的数据必须在其每个节点中解密和重新创建。小路。通过模拟,我们与我们的方案单独使用对称密钥或公钥加密的使用,这被证明更安全,更有效地使用能量,并减少节点停电的发生。

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