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Root Security Parameter Generation Mechanism Based on SRAM PUF for Smart Terminals in Power IoT
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作者 Xiao Feng Xiao Liao +1 位作者 Xiaokang Lin Yonggui Wang 《Computers, Materials & Continua》 2025年第4期1307-1325,共19页
In the context of the diversity of smart terminals,the unity of the root of trust becomes complicated,which not only affects the efficiency of trust propagation,but also poses a challenge to the security of the whole ... In the context of the diversity of smart terminals,the unity of the root of trust becomes complicated,which not only affects the efficiency of trust propagation,but also poses a challenge to the security of the whole system.In particular,the solidification of the root of trust in non-volatile memory(NVM)restricts the system’s dynamic updating capability,which is an obvious disadvantage in a rapidly changing security environment.To address this issue,this study proposes a novel approach to generate root security parameters using static random access memory(SRAM)physical unclonable functions(PUFs).SRAM PUFs,as a security primitive,show great potential in lightweight security solutions due to their inherent physical properties,low cost and scalability.However,the stability of SRAM PUFs in harsh environments is a key issue.These environmental conditions include extreme temperatures,high humidity,and strong electromagnetic radiation,all of which can affect the performance of SRAM PUFs.In order to ensure the stability of root safety parameters under these conditions,this study proposes an integrated approach that covers not only the acquisition of entropy sources,but also the implementation of algorithms and configuration management.In addition,this study develops a series of reliability-enhancing algorithms,including adaptive parameter selection,data preprocessing,auxiliary data generation,and error correction,which are essential for improving the performance of SRAM PUFs in harsh environments.Based on these techniques,this study establishes six types of secure parameter generation mechanisms,which not only improve the security of the system,but also enhance its adaptability in variable environments.Through a series of experiments,we verify the effectiveness of the proposed method.Under 10 different environmental conditions,our method is able to achieve full recovery of security data with an error rate of less than 25%,which proves the robustness and reliability of our method.These results not only provide strong evidence for the stability of SRAM PUFs in practical applications,but also provide a new direction for future research in the field of smart terminal security. 展开更多
关键词 Root security parameter generation PUF smart terminals
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Smart Terminal in Mobile Internet
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作者 Guo Deying, Fang Chundong (Yulong Computer Telecommunication Scientific (Shenzhen ) Co . , Ltd . , Shenzhen 518057 , P . R . China ) 《ZTE Communications》 2009年第4期10-12,共3页
In the mobile Internet environment, smart terminals should be multi-mode and multi-standby, and have smart open platform as well as rich client. However, consumption, radio frequency interference between two networks ... In the mobile Internet environment, smart terminals should be multi-mode and multi-standby, and have smart open platform as well as rich client. However, consumption, radio frequency interference between two networks and network cooperation issues emerge accordingly. This paper gives the solutions to the abovementioned problems: The video signal enhancer is used to improve the image quality and reduce power consumption; the radio frequency interference is reduced by avoiding interference caused by in-band leakage and by out-of-band block; and the effective cooperation between dual networks can be fulfilled by re-designing communication architecture, processor, service logic and User Interface (UI). 展开更多
关键词 SCDMA TD GSM smart terminal in Mobile Internet
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