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A CRL Distribution Scheme Minimizing the Time for CRL Processing of Vehicles on Vehicular Communications

  • Kim, Hyun-Gon (Dept. of Information Security, Mokpo National University)
  • Received : 2018.09.18
  • Accepted : 2018.11.19
  • Published : 2018.12.31

Abstract

Certification revocation list(CRL) is needed for excluding compromised, faulty, illegitimate vehicle nodes and preventing the use of compromised cryptographic materials in vehicular communications. It should be distributed to vehicles resource-efficiently and CRL computational load of vehicles should not impact on life-critical applications with delay sensitive nature such as the pre-crash sensing that affords under 50msec latency. However, in the existing scheme, when a vehicle receives CRL, the vehicle calculates linkage values from linkage seeds, which results in heavy computational load. This paper proposes, a new CRL distribution scheme is proposed, which minimizes the time for CRL processing of vehicles. In the proposed scheme, the linkage value calculation procedure is performed by road-side unit(RSU) instead of the vehicle, and then the extracted linkage values are relayed to the vehicle transparently. The simulation results show that the proposed scheme reduces the CRL computational load dramatically, which would minimize impact on life-critical applications' operations with low latency.

Keywords

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Fig. 1. SCMS architecture with related to the pseudonyms and CRL

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Fig. 2. Calculation of pre-linkage values

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Fig. 3. Misbehavior detection and pseudonym certificate revocation

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Fig. 4. Procedure of CRL parsing and verify

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Fig. 5. Procedure of linkage value calculation

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Fig. 6. Linkage value calculation

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Fig. 7. Procedure of CRL reassemble and re-sign

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Fig. 8. OBU execution time for calculating linkage values

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Fig. 9. Lookup time for searching linkage values

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Fig. 10. Time for CRL re-assembling on RSU(ms)

Table 1. Algorithm Notation

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Table 2. Time for CRL re-assembling on RSU(ms)

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References

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