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Implementation of Elliptic Curve Digital Signature Algorithm on an IRIS mote using SHA-512

机译:使用SHA-512在IRIS节点上实现椭圆曲线数字签名算法

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Wireless Sensor Networks (WSN) are spatially distributed nodes monitoring physical or environmental conditions such as temperature, pressure, sound, light etc using sensors. The sensed data is cooperatively passed through a series of nodes in a network to a main base-station (BS) where it is analysed by the user. The data is communicated over a wireless channel between the nodes and since wireless channel has minimum security, the data has to communicated in a secure manner. Different encryption techniques can be applied to transmit the data securely. This work provides an efficient implementation of Elliptic Curve Digital Signature Algorithm (ECDSA) using SHA-512 algorithm on an IRIS mote. The ECDSA does not actually encrypt the data but provides a means to check the integrity of the received data. If the received data has been modified by an attacker, the ECDSA detects it and signals to the transmitter for retransmission. The SHA-512 algorithm is the hash algorithm used in the ECDSA and is implemented for an 8-bit architecture. The SHA-512 algorithm is chosen as it provides better security than its predecessors.
机译:无线传感器网络(WSN)是空间分布的节点,使用传感器监视物理或环境条件,例如温度,压力,声音,光线等。感测到的数据协同地通过网络中的一系列节点到达主基站(BS),在此由用户进行分析。数据通过节点之间的无线通道进行通信,并且由于无线通道具有最低的安全性,因此数据必须以安全的方式进行通信。可以应用不同的加密技术来安全地传输数据。这项工作提供了一种在IRIS节点上使用SHA-512算法的椭圆曲线数字签名算法(ECDSA)的有效实现。 ECDSA实际上并不加密数据,但提供了一种检查接收到的数据完整性的方法。如果接收到的数据已被攻击者修改,则ECDSA会检测到该数据并向发送器发送信号以进行重新传输。 SHA-512算法是ECDSA中使用的哈希算法,是针对8位架构实现的。选择SHA-512算法是因为它比以前的算法提供更好的安全性。

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