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a privacy-preserving integrity measurement architecture
Li Shang Jie; He Ye Ping
2010
会议名称3rd International Symposium on Electronic Commerce and Security, ISECS 2010
会议录名称3rd International Symposium on Electronic Commerce and Security, ISECS 2010
页码242-246
会议日期37466
会议地点Guangzhou, China
出版地United States
ISBN978-1-4244-8231-3
部门归属(1) National Engineering Research Center for Fundamental Software, Institute of Software, Graduate School, Beijing, China; (2) National Engineering Research Center for Fundamental Software, Institute of Software, Chinese Academy of Sciences, Beijing, China
摘要TCGs Trusted Platform Modules provide the functionality of remote attestation, which based on the integrity of software components in a specific platform configuration. Integrity Measurement Architecture(IMA) is the accredited remote attestation methods which formulates the integrity measurement process and integrity reporting protocol. However, as a binary attestation, all integrity measurements must be exposed to remote party-verifier. This can disclose the privacy of attesting platform. In this paper, We slightly adapt the Integrity Measurement Architecture(IMA) to provide privacy preserving. System configuration is partitioned into privacy-relevant tasks based on the measurement relationships and dependency relationships between components. During integrity reporting in remote attestation, only the measurements of task-relevant software components are released to verifier. Shield factors are introduced to hide integrity measurements during measurement process and hide the task-irrelevant integrity measurement during integrity report. © 2010 IEEE.
关键词Data Privacy Electronic Commerce Network Architecture
主办者Guangdong University of Business Studies; Guangdong Key Lab. Electron. Commer. Mark. Appl. Technol.; Peoples Friendship University of Russia; South China University of Technology; Fudan University
内容类型会议论文
URI标识http://ir.iscas.ac.cn/handle/311060/8624
专题基础软件国家工程研究中心
推荐引用方式
GB/T 7714
Li Shang Jie,He Ye Ping. a privacy-preserving integrity measurement architecture[C]. United States,2010:242-246.
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