Improved Security Approach based on AES algorithm for LST retrieval using satellite imagery in Radiation-Tolerant FPGAs

IF 0.5 Q4 COMPUTER SCIENCE, SOFTWARE ENGINEERING International Journal of Embedded and Real-Time Communication Systems (IJERTCS) Pub Date : 2022-01-01 DOI:10.4018/ijertcs.302107
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引用次数: 2

Abstract

Transmission of sensitive data in space missions and particularly in satellite remote sensing to the ground station is exposed to multiple threats impacting the confidentiality of data, access unauthorized to the satellite system, in addition, the space environment causes several threats that can affect the hardware of satellites. This paper describes an improved approach to implement a secure Land Surface Temperature-Split Windows (LST-SW) algorithm based on the Advanced Encryption Standard using the Reconfigurable Dynamic Method for application on-board earth observation satellites implemented on radiation-tolerant Virtex-4QV FPGA. The experimental results showed that the proposed hardware secure implementation of the LST-SW algorithm using Xilinx Virtex-4QV FPGA achieves higher throughput of 907.644 Mbps sufficient for satellite remote sensing mission. Moreover, the suggested implementation consumes 4089 Slices and 4 BRAMs. Finally, the authors use security measurement analyses to verify the safety and performance of the proposed encryption LST-SW module.
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基于AES算法的耐辐射fpga卫星图像LST检索改进安全方法
空间任务特别是卫星遥感中的敏感数据向地面站的传输面临着影响数据保密性、卫星系统未经授权访问的多重威胁,此外,空间环境还造成了一些可能影响卫星硬件的威胁。本文介绍了一种基于高级加密标准的陆地表面温度分割窗(LST-SW)安全算法的改进方法,该算法采用可重构动态方法在耐辐射Virtex-4QV FPGA上实现,应用于对地观测卫星。实验结果表明,基于Xilinx Virtex-4QV FPGA的LST-SW算法硬件安全实现实现了907.644 Mbps的高吞吐量,足以满足卫星遥感任务。此外,建议的实现消耗4089个slice和4个bram。最后,作者使用安全测量分析来验证所提出的加密LST-SW模块的安全性和性能。
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CiteScore
1.70
自引率
14.30%
发文量
17
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