论文标题
MTTBA-可持续能源消耗时间和空间实用程序的主要贡献者,用于区块链技术中高度安全的加密交易
MTTBA- A Key Contributor for Sustainable Energy Consumption Time and Space Utility for Highly Secured Crypto Transactions in Blockchain Technology
论文作者
论文摘要
默克尔树是一种信息构建,用于区块链中,以安全的方式验证大型内容池中的数据或交易。默克尔树的作用在区块链网络中的比特币和其他加密货币中至关重要。在本文中,我们提出了一种明亮而增强的验证方法,即基于默克尔树木的区块链身份验证(MTTBA),用于哈希节遍历,以在最短时间内达到默克尔根。 MTTBA是一种独特的机制,用于验证专门用于奇数交易的默克尔树的累积交易。加密货币的未来影响将是巨大的,MTTBA证明了其在交易速度和消除节点重复方面的功效。我们的方法使任何块可以验证交易的全部可用性而无需重复哈希节点。性能已在不同的参数中评估,结果显示吞吐量(1680ms),处理时间(29700kbps),内存使用情况(140MB)和安全性(99.30%)的改善明显改善。在这种情况下,能耗因子至关重要,MTTBA达到了240个焦耳的最低水平。
A Merkle tree is an information construction that is used in Blockchain to verify data or transactions in a large content pool in a safe manner. The role of the Merkle tree is crucial in Bitcoin and other cryptocurrencies in a Blockchain network. In this paper, we propose a bright and enhanced verification method, Merkle Trim Tree-based Blockchain Authentication (MTTBA) for the hash node traversal to reach the Merkle Root in a minimum time. MTTBA is a unique mechanism for verifying the Merkle Tree's accumulated transactions specifically for an odd number of transactions. The future impact of cryptocurrency is going to be massive and MTTBA proves its efficacy in transaction speed and eliminating node duplication. Our method enables any block to validate transactions' full availability without duplicating hash nodes. Performance has been evaluated in different parameters and the results show marked improvement in throughput(1680ms), processing time(29700kbps), memory usage(140MB), and security(99.30%). The energy consumption factor is crucial in the scenario, and MTTBA has achieved the lowest of 240 joules.