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首页> 外文期刊>International Journal of Sensor Networks and Data Communications >Data Encryption and Transmission Based on Personal ECG Signals
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Data Encryption and Transmission Based on Personal ECG Signals

机译:基于个人心电信号的数据加密与传输

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ECG signal vary from person to person, making it difficult to be imitated and duplicated. Biometric identification based on ECG is therefore a useful application based on this feature. Synchronization of chaotic systems provides a rich mechanism which is noise-like and virtually impossible to guess or predict. This study intends to combine our previously proposed information encryption/decryption system with chaotic synchronization circuits to create private key masking. To implement the proposed secure communication system, a pair of Lorenz-based synchronized circuits is developed by using operational amplifiers, resistors, capacitors and multipliers. The verification presented involves numerical simulation and hardware implementation to demonstrate feasibility of the proposed method. High quality randomness in ECG signals results in a widely expanded key space, making it an ideal key generator for personalized data encryption. The experiments demonstrate the use of this approach in encrypting texts and images via secure communications.
机译:心电图信号因人而异,很难被模仿和复制。因此,基于ECG的生物特征识别是基于此功能的有用应用程序。混沌系统的同步提供了一种丰富的机制,该机制类似于噪声,几乎无法猜测或预测。这项研究旨在将我们先前提出的信息加密/解密系统与混沌同步电路相结合,以创建私钥屏蔽。为了实现所提出的安全通信系统,使用运算放大器,电阻器,电容器和乘法器开发了一对基于洛伦兹的同步电路。提出的验证涉及数值模拟和硬件实现,以证明所提方法的可行性。 ECG信号中的高质量随机性导致广泛的密钥空间扩展,使其成为个性化数据加密的理想密钥生成器。实验证明了这种方法在通过安全通信加密文本和图像中的使用。

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