Message Authentication in Vehicular Ad Hoc Networks: ECDSA Based Approach

S. Manvi, M. Kakkasageri, D. G. Adiga
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引用次数: 61

Abstract

Vehicular Ad hoc Networks (VANETs) are promising approach for facilitating road safety, traffic management,and infotainment dissemination for drivers and passengers.However, it is subject to various malicious abuses and security attacks which hinder it from practical implementation.Effective and robust solutions for addressing security and privacy issues are critical for the wide-spread adoption of VANETs. In this paper, we propose an Elliptic Curve Digital Signature Algorithm (ECDSA) based message authentication in a VANET. The operation sequence of the proposed scheme is as follows: 1) Source vehicle generates private key and public key. 2) Public key is made available to all the vehicles in the VANET. 3) Source vehicle creates a hash of the message using secured hash algorithm. 4) Secured has his encrypted using private key in the source vehicle ands ends it to the destination vehicle. 5) At the destination vehicle, the received encrypted message is decrypted using the public key. The result of the decryption will be the hash of the message. 6) Destination vehicle can then hash the message in the same way as source vehicle did and compare the two hashes. Using this proposed scheme, strong authentication policy is provided for the destination vehicle.Because hashing is relatively unique, any changes in the message would change the message hash.
车载自组织网络中的消息认证:基于ECDSA的方法
车辆自组织网络(VANETs)是一种很有前途的方法,可以促进道路安全、交通管理以及为驾驶员和乘客提供信息娱乐传播。然而,它受到各种恶意滥用和安全攻击,阻碍了它的实际实施。解决安全和隐私问题的有效和强大的解决方案对于vanet的广泛采用至关重要。本文提出了一种基于椭圆曲线数字签名算法(ECDSA)的VANET消息认证方法。该方案的操作顺序如下:1)源车辆生成私钥和公钥。2) VANET中的所有车辆都可以使用公钥。3)源车辆使用安全哈希算法创建消息的哈希。4) Secured在源车辆中使用私钥进行加密,并将其发送到目的车辆。5)在目的车辆上,使用公钥对接收到的加密消息进行解密。解密的结果将是消息的哈希值。6)然后目标车辆可以用与源车辆相同的方式对消息进行哈希,并比较两个哈希值。该方案为目标车辆提供了强认证策略。由于哈希是相对唯一的,因此消息中的任何更改都会更改消息哈希。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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