面向移动自组织网络的灵活凭证验证

S. Keoh, Emil C. Lupu
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引用次数: 24

摘要

Ad-hoc网络在没有网络基础设施支持的情况下促进了移动设备之间的互连。在本文中,我们提出了一种灵活的凭证验证机制,该机制提高了ad-hoc网络中参与者在缺乏认证和属性权威访问的情况下验证彼此凭证的可能性。用户维护凭据断言语句(Credential Assertion Statements, CASs),这些语句是通过将X.509和属性证书提取为可互操作的XML格式而形成的。可以验证CAS中列出的凭据的受信任实体然后可以向自组织网络中的其他参与者发出已签名的断言签名声明(ASSs)。此外,每个用户维护一个密匙环,其中包含受信任的公钥列表,用于签署凭据断言语句。环中的所有公钥都被分配了一个可信级别。当用户将他/她的CAS连同匹配的ASSs提交给验证者时,验证者根据其密钥环检查ASSs中的签名,以确定CAS中的凭据是否真实且可接受。信任的传递性通常是不允许的,但也有例外情况是允许的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards flexible credential verification in mobile ad-hoc networks
Ad-hoc networks facilitate interconnectivity between mobile devices without the support of a network infrastructure. In this paper we propose a flexible credential verification mechanism, which improves the likelihood that participants in an ad-hoc network can verify each other's credentials despite the lack of access to certification and attribute authorities. Users maintain Credential Assertion Statements (CASs), which are formed through extraction of X.509 and attribute certificates into an interoperable XML form. Trusted entities that can verify the credentials listed in the CAS can then issue signed Assertion Signature Statements (ASSs) to other participants in the ad-hoc network. In addition, each user maintains a key ring, which comprises the list of public-keys trusted to sign credential assertion statements. All public-keys in the ring are assigned a trustworthiness level. When a user presents his/her CAS together with matching ASSs to a verifier, the verifier checks the signatures in the ASSs against its key ring to determine whether credentials in the CAS are authentic and acceptable. Transitivity of trust is generally not allowed, but there are exceptional cases in which it is permitted.
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