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Electronic Auction Scheme Based on Smart Contract and IPFS 被引量:1
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作者 wu Xiaohua LIU Huan +1 位作者 wu fengheng ZHANG Ke 《计算机工程》 CAS CSCD 北大核心 2023年第2期181-190,共10页
Sealed-bid auctions are a vital transaction tool in the e-commerce field.Traditional centralized auction schemes typically result in severe threats to data integrity,information transparency,and traceability owing to ... Sealed-bid auctions are a vital transaction tool in the e-commerce field.Traditional centralized auction schemes typically result in severe threats to data integrity,information transparency,and traceability owing to their excessive reliance on third parties,and blockchain-based auction schemes generally suffer from high storage costs and are deficient in functional and architectural design.To solve these problems,this study presents a sealed-bid auction scheme that removes the third-party based on an Ethereum smart contract,ensuring data integrity,openness,and transparency in the execution process.The commitment mechanism and distributed storage system help to significantly reduce the user’s storage cost and protect the privacy of user bids.For the functional design,this study introduces a fulltext-retrieval and dispute-processing module for commodities,which reduces the defects existing in the functional module design of existing auction systems.Furthermore,a prototype auction system on the Ethereum test chain is built to validate the proposed scheme.Experiments show that compared with traditional storage methods,indirect storage based on a distributed storage system of texts and images can reduce the storage cost by at least 50%while ensuring data integrity.Finally,the gas cost at each stage of the auction scheme and the time required for the full-text retrieval of products are recorded to evaluate the scheme performance and analyze the test results. 展开更多
关键词 sealed bid auction Ethereum smart contract commitment Interplanetary File System(IPFS)
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基于FBC的DPF低温再生控制技术开发
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作者 季峰 吴峰胜 +3 位作者 陈勤学 沈玲 张正扬 张锡骏 《现代车用动力》 2023年第3期27-31,共5页
为应对柴油车颗粒捕集器(DPF)在复杂工况、维护成本、再生效果等方面的问题,开发了一种油基催化剂(FBC)的DPF再生技术。该技术构建了一套紧凑型的FBC智能喷射系统,采用自主集成开发模式,实现了油基催化剂自动加注的开发目标,通过发动机... 为应对柴油车颗粒捕集器(DPF)在复杂工况、维护成本、再生效果等方面的问题,开发了一种油基催化剂(FBC)的DPF再生技术。该技术构建了一套紧凑型的FBC智能喷射系统,采用自主集成开发模式,实现了油基催化剂自动加注的开发目标,通过发动机台架与整车功能试验对油基催化剂的性能与应用分别进行评估,实现了油基催化剂控制技术应用。自主完成了FBC控制系统的集成开发与测试验证,满足了系统控制要求;试验结果表明,油基催化剂的DPF可以在500~530℃内实现完全再生。 展开更多
关键词 油基催化剂 喷射系统 低温再生
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