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Alarm on Invasion of Harmful Organisms Via Postal Parcels
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作者 Wang Jiaying Cui Junxia Chen Xianfeng 《Plant Diseases and Pests》 CAS 2020年第2期28-30,34,共4页
In recent years,with the rapid development of cross-border e-commerce,international postal parcels have been increasing sharply,thus giving rise to a new way for alien biological invasion.According to the"animal ... In recent years,with the rapid development of cross-border e-commerce,international postal parcels have been increasing sharply,thus giving rise to a new way for alien biological invasion.According to the"animal and plant quarantine information platform"of the General Adminis-tration of Customs,postal inspection system intercepted a total of 4975 harmful organisms nationwide.There were 219 quarantine organisms,including 142 insects,27 weeds,12 nematodes,29 fungi,1 bacterium and 8 viruses.Insects accounted for 64.84%of the quarantine organisms,among which Hypothenemus hampei had the highest interception frequency.Up to 71.36%of those harmful organisms were from seedlings,yet47.31%organisms came from products exported from India.These analyses indicate the direction of future portal quarantine work and lay a theoret-ical foundation for better guarding the biological security. 展开更多
关键词 International postal parcels Postal quarantine system Biological invasion gate biological security
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Enhancing Security of FPGA-Based Embedded Systems with Combinational Logic Binding 被引量:2
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作者 Ji-Liang Zhang Wei-Zheng Wang +1 位作者 Xing-Wei Wang Zhi-Hua Xia 《Journal of Computer Science & Technology》 SCIE EI CSCD 2017年第2期329-339,共11页
With the increasing use of field-programmable gate arrays (FPGAs) in embedded systems and many embedded applications, the failure to protect FPGA-based embedded systems from cloning attacks has brought serious losse... With the increasing use of field-programmable gate arrays (FPGAs) in embedded systems and many embedded applications, the failure to protect FPGA-based embedded systems from cloning attacks has brought serious losses to system developers. This paper proposes a novel combinational logic binding technique to specially protect FPGA-based embedded systems from cloning attacks and provides a pay-per-device licensing model for the FPGA market. Security analysis shows that the proposed binding scheme is robust against various types of malicious attacks. Experimental evaluations demonstrate the low overhead of the proposed technique. 展开更多
关键词 cloning attack reverse engineering FPGA (field-programmable gate array) security hardware security
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