TR2003-79

Energy/Security Scalable Mobile Cryptosystem


    •  Huang, Q., Kobayashi, H., Liu, B., Gu, D., Zhang, J., "Energy/Security Scalable Mobile Cryptosystem", IEEE International Symposium on Personal, Indoor and Mobile Radio Communications (PIMRC), September 2003, vol. 3, pp. 2755-2759.
      BibTeX TR2003-79 PDF
      • @inproceedings{Huang2003sep1,
      • author = {Huang, Q. and Kobayashi, H. and Liu, B. and Gu, D. and Zhang, J.},
      • title = {Energy/Security Scalable Mobile Cryptosystem},
      • booktitle = {IEEE International Symposium on Personal, Indoor and Mobile Radio Communications (PIMRC)},
      • year = 2003,
      • volume = 3,
      • pages = {2755--2759},
      • month = sep,
      • url = {https://www.merl.com/publications/TR2003-79}
      • }
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Abstract:

Time-sensitive mobile commerce is vulnerable to message authentication delays. Significant power consumption incurred by cryptography is another limiting factor of most mobile devices. In this paper, we present a scalable mobile cryptosystem, which installs a group key and an elliptic curve private/public key pair in each device to enable both symmetric key and public key cryptography. We propose scalable key establishment protocols and secure routing protocols with scalable authentication schemes to make tradeoffs between security and energy, according to different mobile applications.

 

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    •  NEWS    PIMRC 2003: 6 publications by Jinyun Zhang and others
      Date: September 7, 2003
      Where: IEEE International Symposium on Personal, Indoor and Mobile Radio Communications (PIMRC)
      MERL Contact: Jinyun Zhang
      Brief
      • The papers "Adaptive Transmit Weights for Performance Enhancement in Space-Time Transmit Diversity Systems" by Horng, J.H., Li, L. and Zhang, J., "Throughput Analysis for W-CDMA Systems with MIMO and AMC" by Lao, D., Horng, J.H. and Zhang, J., "DFT-Based Hybrid Antenna Selection Schemes for Spatially Correlated MIMO Channels" by Molisch, A.F., Zhang, X., Kung, S.-Y. and Zhang, J., "Impulse Radio Pulse Shaping for Ultra-Wide Bandwidth UWB Systems" by Wu, Y., Molisch, A.F., Kung, S.-Y. and Zhang, J., "A New Measurement-Based Admission Control Method for IEEE802.11 Wireless Local Area Networks" by Gu, D. and Zhang, J. and "Energy/Security Scalable Mobile Cryptosystem" by Huang, Q., Kobayashi, H., Liu, B., Gu, D. and Zhang, J. were presented at the IEEE International Symposium on Personal, Indoor and Mobile Radio Communications (PIMRC).
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