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Design and FPGA implementation of a wireless hyperchaotic communication system for secure real-time image transmission

机译:用于安全实时图像传输的无线超混沌通信系统的设计和FPGA实现

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In this paper, we propose and demonstrate experimentally a new wireless digital encryption hyperchaotic communication system based on radio frequency (RF) communication protocols for secure real-time data or image transmission. A reconfigurable hardware architecture is developed to ensure the interconnection between two field programmable gate array development platforms through XBee RF modules. To ensure the synchronization and encryption of data between the transmitter and the receiver, a feedback masking hyperchaotic synchronization technique based on a dynamic feedback modulation has been implemented to digitally synchronize the encrypter hyperchaotic systems. The obtained experimental results show the relevance of the idea of combining XBee (Zigbee or Wireless Fidelity) protocol, known for its high noise immunity, to secure hyperchaotic communications. In fact, we have recovered the information data or image correctly after real-time encrypted data or image transmission tests at a maximum distance (indoor range) of more than 30 m and with maximum digital modulation rate of 625,000 baud allowing a wireless encrypted video transmission rate of 25 images per second with a spatial resolution of 128 × 128 pixels. The obtained performance of the communication system is suitable for secure data or image transmissions in wireless sensor networks.
机译:在本文中,我们提出并实验演示了一种基于射频(RF)通信协议的新型无线数字加密超混沌通信系统,用于安全的实时数据或图像传输。开发了可重配置的硬件体系结构,以确保通过XBee RF模块在两个现场可编程门阵列开发平台之间进行互连。为了确保发送器和接收器之间的数据同步和加密,已经实现了基于动态反馈调制的反馈掩蔽超混沌同步技术,以使加密器超混沌系统进行数字同步。获得的实验结果表明,结合以高抗噪性而闻名的XBee(Zigbee或Wireless Fidelity)协议来保护超混沌通信的想法是相关的。实际上,在实时加密数据或图像传输测试之后,我们已在最大距离(室内范围)超过30 m且最大数字调制速率为625,000波特的情况下正确恢复了信息数据或图像,从而实现了无线加密视频传输速率为每秒25张图像,空间分辨率为128×128像素。所获得的通信系统性能适用于无线传感器网络中的安全数据或图像传输。

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