{"title":"基于EC的无线传感器网络密钥管理方案在FPGA上的高效实现","authors":"Priya Mathew, P. Jilna, P. Deepthi","doi":"10.1109/TSSA.2015.7440446","DOIUrl":null,"url":null,"abstract":"Communication driven era demands the use of new cryptographic protocols and hardware with reduced computational and structural complexity for resource constrained applications. This paper presents the hardware implementation of a key management scheme based on Elliptic Curve Cryptography (ECC) for applications in wireless sensor networks. Security-critical applications in WSNs rely on ECC for the key management since it offers increased security per bit of the key. This paper proposes efficient hardware architecture for the implementation of EC based key exchange in such a way that number of pre-stored values for key exchange and overall hardware complexity of the system are optimised without affecting security level. Algorithms for pseudo random sequence generation and message authentication code based on cryptographic one way function of elliptic curve point multiplication are developed. A single point multiplication unit based on Lopez-Dahab algorithm is time shared for pseudo random sequence generation and authentication to reduce the overall hardware complexity. Thus the proposed implementation scheme supports increased number of node addition phases. Evaluation of the design is done in terms of storage and hardware complexity. Proposed system gives 23.76% hardware efficiency over the existing EC based system. The design for GF(2163) has been simulated in ModelSim PE 10.4, synthesized in Xilinx ISE 14.7 and successfully implemented on Kintex-7 KC705 Evaluation Board.","PeriodicalId":428512,"journal":{"name":"2015 9th International Conference on Telecommunication Systems Services and Applications (TSSA)","volume":"53 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2015-11-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"3","resultStr":"{\"title\":\"Efficient implementation of EC based key management scheme on FPGA for WSN\",\"authors\":\"Priya Mathew, P. Jilna, P. Deepthi\",\"doi\":\"10.1109/TSSA.2015.7440446\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"Communication driven era demands the use of new cryptographic protocols and hardware with reduced computational and structural complexity for resource constrained applications. This paper presents the hardware implementation of a key management scheme based on Elliptic Curve Cryptography (ECC) for applications in wireless sensor networks. Security-critical applications in WSNs rely on ECC for the key management since it offers increased security per bit of the key. This paper proposes efficient hardware architecture for the implementation of EC based key exchange in such a way that number of pre-stored values for key exchange and overall hardware complexity of the system are optimised without affecting security level. Algorithms for pseudo random sequence generation and message authentication code based on cryptographic one way function of elliptic curve point multiplication are developed. A single point multiplication unit based on Lopez-Dahab algorithm is time shared for pseudo random sequence generation and authentication to reduce the overall hardware complexity. Thus the proposed implementation scheme supports increased number of node addition phases. Evaluation of the design is done in terms of storage and hardware complexity. Proposed system gives 23.76% hardware efficiency over the existing EC based system. 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引用次数: 3
摘要
通信驱动的时代要求使用新的加密协议和硬件,降低计算和结构复杂性,以满足资源受限的应用。提出了一种基于椭圆曲线加密(ECC)的无线传感器网络密钥管理方案的硬件实现。无线传感器网络中的安全关键应用依赖于ECC进行密钥管理,因为它提供了每比特密钥的更高安全性。本文提出了实现基于电子商务的密钥交换的有效硬件架构,在不影响安全水平的前提下,优化了密钥交换的预存储值数量和系统的整体硬件复杂度。提出了基于椭圆曲线点乘法的加密单向函数的伪随机序列生成算法和消息认证码算法。基于Lopez-Dahab算法的单点乘法单元用于伪随机序列的生成和认证,以降低整体硬件复杂度。因此,所提出的实现方案支持增加节点添加阶段的数量。根据存储和硬件复杂性对设计进行评估。与现有的基于EC的系统相比,该系统的硬件效率为23.76%。GF(2163)的设计已在ModelSim PE 10.4中进行了仿真,在Xilinx ISE 14.7中进行了合成,并在Kintex-7 KC705评估板上成功实现。
Efficient implementation of EC based key management scheme on FPGA for WSN
Communication driven era demands the use of new cryptographic protocols and hardware with reduced computational and structural complexity for resource constrained applications. This paper presents the hardware implementation of a key management scheme based on Elliptic Curve Cryptography (ECC) for applications in wireless sensor networks. Security-critical applications in WSNs rely on ECC for the key management since it offers increased security per bit of the key. This paper proposes efficient hardware architecture for the implementation of EC based key exchange in such a way that number of pre-stored values for key exchange and overall hardware complexity of the system are optimised without affecting security level. Algorithms for pseudo random sequence generation and message authentication code based on cryptographic one way function of elliptic curve point multiplication are developed. A single point multiplication unit based on Lopez-Dahab algorithm is time shared for pseudo random sequence generation and authentication to reduce the overall hardware complexity. Thus the proposed implementation scheme supports increased number of node addition phases. Evaluation of the design is done in terms of storage and hardware complexity. Proposed system gives 23.76% hardware efficiency over the existing EC based system. The design for GF(2163) has been simulated in ModelSim PE 10.4, synthesized in Xilinx ISE 14.7 and successfully implemented on Kintex-7 KC705 Evaluation Board.