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Preserving scheme for user’s confidential information in smart grid based on digital watermark and asymmetric encryption 被引量:4
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作者 wang shou-xiang CHEN Hai-wen +4 位作者 ZHAO Qian-yu GUO Lu-yang DENG Xin-yu SIWei-guo SUN Zhi-qing 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第2期726-740,共15页
As an essential part of the industrial Internet of Things(IoT)in power systems,the development of advanced metering infrastructure(AMI)facilitates services such as energy monitoring,load forecasting,and demand respons... As an essential part of the industrial Internet of Things(IoT)in power systems,the development of advanced metering infrastructure(AMI)facilitates services such as energy monitoring,load forecasting,and demand response.However,there is a growing risk of privacy disclosure with the wide installation of smart meters,for they transmit readings and sensitive data simultaneously.To guarantee the confidentiality of the sensitive information and authenticity of smart meter readings,we proposed a privacy-preserving scheme based on digital watermarking and elliptic-curve cryptography(ECC)asymmetric encryption.The sensitive data are encrypted using the public key and are hidden in the collected readings using digital watermark.Only the authorized user can extract watermark and can decrypt the confidential data using its private key.The proposed method realizes secure end-to-end confidentiality of the sensitive information.It has faster computing speed and can verify the data source and ensure the authenticity of readings.The example results show that the proposed method has little influence on the original data and unauthorized access cannot be completed within a reasonable time.On embedded hardware,the processing speed of the proposed method is better than the existing methods. 展开更多
关键词 sensitive information smart grid smart meter asymmetric encryption
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45000t集装箱滚装船水密门精度控制
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作者 王寿祥 宫劲镝 刘杨 《船舶与海洋工程》 2017年第2期53-56,71,共5页
为更好地控制集装箱滚装船门框结构的安装精度,以45000t集装箱滚装船中只包含水密门结构的分段为例进行水密门精度控制研究。通过研究该分段的建造方式,改进分段的建造工艺,合理安排门框结构在分段建造过程中的安装顺序,进而缩减结构变... 为更好地控制集装箱滚装船门框结构的安装精度,以45000t集装箱滚装船中只包含水密门结构的分段为例进行水密门精度控制研究。通过研究该分段的建造方式,改进分段的建造工艺,合理安排门框结构在分段建造过程中的安装顺序,进而缩减结构变形;同时,利用精度测量仪器进行跟踪测量,保证始终把精度控制在有效范围内。对焊接过程中采用的焊接方法进行研究,改进焊接工艺,采取逐步退焊法控制焊接热量,进而减少焊接变形。通过对分段水密门门框结构的安装工艺及焊接工艺进行研究,将理论与实践相结合,总结出一套行之有效的建造工艺,确保分段门框结构安装精度得到有效控制,保证水密门的性能,为该系列船后续的分段建造提供参考。 展开更多
关键词 集装箱滚装船 水密门 建造工艺 精度控制
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