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PQC:GlobalPlatform 如何提供帮助?.pdf

上传人: 拾亿 编号:751840 2025-07-29 25页 2.20MB

1、Post-QuantumCryptographyImpact for AutomotiveCSVF2025,May 22nd2THALES GROUP LIMITED DISTRIBUTION-SCOPE AgendaPQC introductionAutomotive ecosystemPQC strategy at GlobalPlatformGlobalPlatform is not aloneConclusion PQC IntroductionA threat?When?How to protect?4THALES GROUP LIMITED DISTRIBUTION-SCOPE A

2、 new threat in the IT galaxyQuantum computing puts cryptographic algorithms at riskEspecially public-key/asymmetric cryptographyBeyond institutes and associations(NIST,CACR,ENISA,NICT),governments are launching specific action plans(US,Korea,China)Standard organizations are on a war footing5THALES G

3、ROUP LIMITED DISTRIBUTION-SCOPE How a quantum computer impacts cryptographyCRYPTOGRAPHIC ALGORITHM TARGETEDTYPEPURPOSEIMPACT FROMLARGE SCALE QCAESSymmetric keyEncryptione.g.longer keys neededSHA-2,SHA-3-Hash functionse.g.larger output neededCRYPTOGRAPHIC ALGORITHM TARGETEDTYPEPURPOSEIMPACT FROMLARGE

4、 SCALE QCRSAPublic keySignatures,Key establishmentNo longer secureDigital Signature AlgorithmSignatures,Key exchangeECDSA(Elliptic Curve DSA)PeterSHORLovGROVER6THALES GROUP LIMITED DISTRIBUTION-SCOPE Fortunately,standards are here!NIST published standards(August 2024)KEM FIPS 203:Module-Lattice-Base

5、d Key-Encapsulation Mechanism Standard(ML-KEM)Just announced HQC selection as an additional KEMSignature FIPS 204:Module-Lattice-Based Digital Signature Standard(ML-DSA)FIPS 205:Stateless Hash-Based Digital Signature Standard(SLH-DSA)To come by end 2025 FIPS 206 FN-DSA(Falcon)More to come,(possibly

6、non-lattice-based)selection is ongoingNIST SP 800-208(October 2020)LMS/XMSSStateful Hash-Based Signature Schemes Specific constraints of implementation Niche use cases such as Firmware of Software signatures7THALES GROUP LIMITED DISTRIBUTION-SCOPE Fortunately,standards are here!NIST published standa

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本文主要讨论了后量子密码学(PQC)对汽车行业的影响及应对策略。 1. 量子计算威胁:量子计算机对现有公钥/非对称密码算法构成威胁,如RSA、ECDSA等。 2. 标准制定:NIST已发布PQC相关标准,包括ML-KEM、ML-DSA等。 3. 迁移路径:欧盟推荐采用混合模式,逐步过渡至PQC;美国、英国、加拿大等国直接推动PQC应用。 4. 汽车生态系统:量子计算对汽车通信协议、证书、密钥管理协议等构成影响。 5. PQC策略:GlobalPlatform监测全球PQC活动,推荐使用PQC算法和混合构造。 6. 其他标准组织:Java Card Forum、GSMA PQTN、3GPP SA3等也在推动PQC在各自领域的应用。 7. 结论:为应对量子计算威胁,需实现密码学敏捷性、采用混合密码学,并设计新的硬件和软件层以支持PQC算法。 引用核心数据:NIST已发布的PQC标准(如FIPS 203、FIPS 204等),以及GlobalPlatform推荐的密码学算法建议(GP_TEN_053)。
"量子计算如何威胁汽车安全?" "后量子时代,我们如何应对?" "汽车生态系统如何抵抗量子风险?"
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