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Hardware Implementation For Fast Block Generator Of Litecoin Blockchain System

机译:LiteCoin SlockChain系统的快速块生成器的硬件实现

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The development of blockchain-based cryptocurren-cies has attracted a lot of interest in many fields, especially in academic research. Besides Bitcoin, Litecoin is one of the most popular cryptocurrency based on blockchain currently. The Litecoin mining process uses the Scrypt algorithm as a hash function in Proof-of-Work (PoW) consensus mechanism. The yield of cryptocurrency mining depends a lot on the processing performance of the hardware. Therefore, this paper proposes a hardware design of the Scrypt algorithm in the Litecoin mining system using the Verilog hardware description language (HDL). In the proposed design, the pipeline technique is applied at two levels: the overall Scrypt level and the PBKDF2 level. Additionally, the design is divided into several stages to reduce the latency of each clock cycle and increase the operating frequency. The simulation and verification of the design are performed based on Atlys Spartan-6 FPGA Board and Xilinx Virtex-7 FPGA VC707. The performance of the design evaluated on Atlys Spartan-6 has the hash rate of 2209 hashes/s. The maximum operating frequency of the system is 147.059MHz. On Xilinx Virtex-7, the hash rate of the design reaches 5332 hashes/s and the maximum operating frequency reaches 355.051 MHz.
机译:基于区块链的Cryptocurren-Cies的发展引起了许多领域的兴趣,特别是在学术研究中。除了比特币外,LiteCoin是目前基于区块链的最流行的加密货币之一。 LiteCoin挖掘过程使用Scrypt算法作为哈希函数在工作验证(POW)共识机制中。密码发电挖掘的产量取决于硬件的处理性能。因此,本文提出了使用Verilog硬件描述语言(HDL)的LiteCoin挖掘系统中Scrypt算法的硬件设计。在提出的设计中,管道技术适用于两个级别:整体纸质级别和PBKDF2级别。另外,该设计分为几个阶段,以降低每个时钟周期的延迟并增加工作频率。设计的模拟和验证是基于ATLYS Spartan-6 FPGA板和Xilinx Virtex-7 FPGA VC707执行的。在ATLYS Spartan-6上评估的设计的性能具有2209次散列的散列率。系统的最大工作频率为147.059MHz。在Xilinx Virtex-7上,设计的散列率达到5332哈希/ s,最大工作频率达到355.051 MHz。

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