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Blockchain based Secure Crypto-currency system with Quantum Key Distribution Protocol

机译:具有量子密钥分发协议的基于区块链的安全加密货币系统

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A block chain is referred to as a growing list of records which are linked using cryptography. It is simple and open ledger that records all the transactions in block structures. These block structures are bound with each other by using Quantum Cryptographic protocols. The block chain is democratic system in which concerned parties get access by using a key to perform transaction. The well-known type of Quantum Cryptography protocol is Quantum Key Distribution (QKD). With the help of QKD our Crypto-currency system is secured when passage in between transmitting end and receiving end shouldn't be intrude by third party. Secrecy of the system depends upon different factors like efficient and optimized key rate, secure carrier of modulating signal. In this work the transparency and immunity of block chain based crypto-currency system is analyzed with simulation of six state QKD Protocol. The generation of key rate is observed to ensure the path for production of better crypto-currency system. A Mathematical model is used to obtain the desire constraints so that linear relationship can be achieved. At application level this study contributes to the implementation of crypto-currency system through six state QKD protocol.
机译:区块链被称为不断增长的记录列表,这些记录使用密码术进行链接。这是一个简单而开放的分类帐,它以块结构记录所有交易。这些块结构通过使用量子密码协议相互绑定。区块链是一种民主制度,其中有关各方通过使用密钥来执行交易来进行访问。量子密码协议的众所周知的类型是量子密钥分配(QKD)。在QKD的帮助下,当第三方不应该干扰发送端和接收端之间的通道时,我们的加密货币系统将得到保护。系统的保密性取决于不同的因素,例如有效和优化的密钥率,调制信号的安全载波。在这项工作中,通过模拟六状态QKD协议,分析了基于区块链的加密货币系统的透明性和抗扰性。观察到密钥率的产生,以确保产生更好的加密货币系统的途径。使用数学模型来获得期望约束,从而可以实现线性关系。在应用程序级别,此研究通过六状态QKD协议为加密货币系统的实施做出了贡献。

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