System architecture for high-performance permissioned blockchains

被引:0
作者
Libo Feng
Hui Zhang
Wei-Tek Tsai
Simeng Sun
机构
[1] Beihang University,State Key Laboratory of Software Development Environment
[2] Beihang University,Digital Society & Blockchain Laboratory, School of Computer Science
[3] Beihang University,Beijing Advanced Innovation Center for Big Data and Brain Computing
[4] Arizona State University,School of Computing, Informatics and Decision Systems Engineering
来源
Frontiers of Computer Science | 2019年 / 13卷
关键词
blockchain; concurrency; performance; dual-channel model; parallel pipeline; consensus algorithm;
D O I
暂无
中图分类号
学科分类号
摘要
Blockchain(BC), as an emerging distributed database technology with advanced security and reliability, has attracted much attention from experts who devoted to e-finance, intellectual property protection, the Internet of Things (IoT) and so forth. However, the inefficient transaction processing speed, which hinders the BC’s widespread, has not been well tackled yet. In this paper, we propose a novel architecture, called Dual-Channel Parallel Broadcast model (DCPB), which could address such a problem to a greater extent by using three methods which are dual communication channels, parallel pipeline processing and block broadcast strategy. In the dual-channel model, one channel processes transactions, and the other engages in the execution of BFT. The parallel pipeline processing allows the system to operate asynchronously. The block generation strategy improves the efficiency and speed of processing. Extensive experiments have been applied to BeihangChain, a simplified prototype for BC system, illustrates that its transaction processing speed could be improved to 16K transaction per second which could well support many real-world scenarios such as BC-based energy trading system and Micro-film copyright trading system in CCTV.
引用
收藏
页码:1151 / 1165
页数:14
相关论文
共 50 条
[41]   Methodological performance analysis applied to a novel IIoT access control system based on permissioned blockchain [J].
Figueroa-Lorenzo, Santiago ;
Anorga, Javier ;
Arrizabalaga, Saioa .
INFORMATION PROCESSING & MANAGEMENT, 2021, 58 (04)
[42]   Multi-pipeline HotStuff: A High Performance Consensus for Permissioned Blockchain [J].
Cheng, Taiping ;
Zhou, Wei ;
Yao, Shaowen ;
Feng, Libo ;
He, Jing .
2022 IEEE INTERNATIONAL CONFERENCE ON TRUST, SECURITY AND PRIVACY IN COMPUTING AND COMMUNICATIONS, TRUSTCOM, 2022, :1008-1019
[43]   An Architecture for High Performance File System I/O [J].
Patocka, Mikulas .
PROCEEDINGS OF WORLD ACADEMY OF SCIENCE, ENGINEERING AND TECHNOLOGY, VOL 23, 2007, 23 :250-255
[44]   A Weak Consensus Algorithm and Its Application to High-Performance Blockchain [J].
Wang, Qin ;
Li, Rujia .
IEEE CONFERENCE ON COMPUTER COMMUNICATIONS (IEEE INFOCOM 2021), 2021,
[45]   High Performance, Low Energy, and Trustworthy Blockchains Using Satellites [J].
Shasha, Dennis ;
Kim, Taegyun ;
Bonneau, Joseph ;
Michalevsky, Yan ;
Shotan, Gil ;
Winetraub, Yonatan .
FOUNDATIONS AND TRENDS IN NETWORKING, 2023, 13 (04) :252-325
[46]   High-performance operating system controlled memory compression [J].
Yang, Lei ;
Lekatsas, Haris ;
Dick, Robert R. .
43RD DESIGN AUTOMATION CONFERENCE, PROCEEDINGS 2006, 2006, :701-+
[47]   A High-Performance and High-Reliability RAIS5 Storage Architecture with Adaptive Stripe [J].
Mei, Linjun ;
Feng, Dan ;
Zeng, Lingfang ;
Chen, Jianxi ;
Liu, Jingning .
ALGORITHMS AND ARCHITECTURES FOR PARALLEL PROCESSING, ICA3PP 2018, PT I, 2018, 11334 :562-577
[48]   Software architecture exploration for high-performance security processing on a multiprocessor mobile SoC [J].
Arora, Divya ;
Raghunathan, Anand ;
Ravi, Srivaths ;
Sankaradass, Murugan ;
Jha, Niraj K. ;
Chakradhar, Srimat T. .
43RD DESIGN AUTOMATION CONFERENCE, PROCEEDINGS 2006, 2006, :496-+
[49]   StackPool: A High-Performance Scalable Network Architecture on Multi-core Servers [J].
Gu, Qiang ;
Wen, Liufei ;
Dai, Fen ;
Gong, Hao ;
Yang, Yongqiang ;
Xu, Xiangyang ;
Feng, Zexi .
2013 IEEE 15TH INTERNATIONAL CONFERENCE ON HIGH PERFORMANCE COMPUTING AND COMMUNICATIONS & 2013 IEEE INTERNATIONAL CONFERENCE ON EMBEDDED AND UBIQUITOUS COMPUTING (HPCC_EUC), 2013, :17-28
[50]   Energy-Efficient and High-Performance Software Architecture for Storage Class Memory [J].
Baek, Seungjae ;
Choi, Jongmoo ;
Lee, Donghee ;
Noh, Sam H. .
ACM TRANSACTIONS ON EMBEDDED COMPUTING SYSTEMS, 2013, 12 (03)