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ECDSA Private Keys Study of Security

机译:ECDSA私人钥匙的安全研究

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Cryptocurrencies are a mean of executing online transactions. They use a variety of cryptographic techniques to secure and verify these transactions, which are functionally supported by the Blockchain platform. Blockchain is a continuously growing, distributed ledger of files that contains all transactions between users of cryptocurrencies in a verifiable and permanent manner. It consists of blocks that are connected and secured cryptographically. Cryptocurrencies use algorithms to produce pairs of public and private keys. These pairs, cryptographically merged with a message between the participants, are the building blocks of the relevant transactions. Bitcoin uses the ECDSA algorithm to produce the above-mentioned keys. The purpose of our work is to present some useful motifs for the domain parameters of base point (P) and the order (n) of the subgroup produced by it, while choosing the elliptic curve and the Galois field on which we formulate the algorithm, in order to obtain safer private keys. The results of the research are experimental due to the limited infrastructure, but explanatory for the purpose of our work. The resulting conclusions highlight the value of the proper selection of the structural parameters of these algorithms and possible alternatives to the curve, field and domain parameters that can be used.
机译:加密货币是执行在线交易的平均值。他们使用各种加密技术来保护和验证这些事务,这些事务在模块链平台上功能支持。 BlockChain是一种持续生长的文件,分布式分区,包含可验证和永久性的加密货币用户之间的所有事务。它由块组成,该块被加密连​​接和安全。 Cryptocurrencies使用算法生产成对的公共和私钥。这些对,在参与者之间密码合并,是相关交易的构建块。比特币使用ECDSA算法来生产上述键。我们的作品的目的是为基点(P)的域参数和由它产生的子组的域参数提供一些有用的主题,同时选择椭圆曲线和我们制定算法的Galois字段,为了获得更安全的私钥。该研究的结果是由于基础设施有限的实验性,而是解释我们的工作目的。由此产生的结论突出了这些算法结构参数的正确选择的值以及可以使用的曲线,字段和域参数的可能替代方案。

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