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王剑雄 1420103108 科技查新检索报告

文献检索查新报告题目:基于RFID和EPC物联网的水产品供应链可追溯平台开发院系:计算机系班级:14计算机3班姓名:日期:2016年11月5日一、课题题目分析:检索词抽取在中国知网的工具书检索以下词源:1、物联网确定物联网为检索词之一。

2、水产品确定水产品为检索词之一。

3、供应链确定供应链为检索词之一4、可追溯平台排除可追溯平台这一检索词。

5、可追溯系统确定可追溯性系统为检索词之一。

6、RFID确定RFID为检索词之一。

7、EPC确定EPC为检索词之一。

SQL Server 2005数据库设计和开发了基于RFID和EPC物联网的水产品供应链追溯平台,实现了对水产品的全程追溯,使追溯信息透明化,满足了对信息及时性、准确性的要求。

本课题的研究,为水产品供应链追溯体系的构建提供了理论依据和技术指导,对解决我国水产品安全问题具有重要的现实意义和实用价值。

【关键词】射频识别; EPC物联网;水产品供应链;追溯;水产品安全国外文献(标准题录、摘要、影响因子等)在EI中,数据库Conpendex,用“Internet of things and The supply chain and traceability system”检索到了43篇(其中期刊23篇,核心期刊23篇,中文7篇,英文35篇,西班牙文1篇),用“Internet of things and Aquatic product and The supply chain and traceability system and RFID and EPC”检索到了2篇如下:1、Title:Development of traceability system of aquatic foods supply chain based on RFID and EPC internet of thingsAuthors:Yan, Bo; Shi, Ping; Huang, GuangwenSource:NongyeGongchengXuebao/Transactions of the ChineseSociety of Agricultural Engineering, v 29, n 15, p 172-183, August 1,2013; Language:Chinese; ISSN: 10026819; DOI: 10.3969/j.issn.1002-6819 .2013.15.021; Publisher: Chinese Society of Agricultural Engineering Abstract:Food safety has become an important global public-health issue, and aquatic safety issues were never suspended. With the exposureand the emergence of someaquatic products'quality and safety issues in China, safety issues for the quality of aquatic products hasbecome the bottleneck of the sustainable development offisheriesand aquatic products for import and export trade. In response to the riskin the aquatic foods supply chain and to improveservices, the traceable platformof the aquatic foods supply chain is highly required. Quality problems of aquatic products could occur in everyaspect of the aquatic foods supply chain, including breeding, processing, distribution, and sale. So not only policies, but also technical supports are needed to ensure the quality and safety of aquatic products and to bottomout the safety hazards. In response to these issues, this paper takes tilapiaas the object of study and designs and developsa traceable platform of theaquatic foods supply chain based on Radio Frequency Identification (RFID) and Electronic Product Code (EPC) Internet of Things, and focuses on designing Object Name Service (ONS)and EPC Information Service (EPCIS) of this platform. Tracking, traceability, recall, and monitoring of tilapia products in the food supply chaincan be achieved with the participation of consumers, enterprises,and the government. This platform contains an aquaculturemanagement system, process management system, distribution management system, sales management system, and querying and monitoring system, and realizesall-the-way traceability ofaquatic products from breeding, processing, and distribution to sales. This platform has the following characteristics: 1) It has a monitoring function of tilapia farming, and can track and trace allaspects of information from breeding, production, processing, and distribution to sale; 2) It brings out informationization on theproduction and management of enterprises, and achieves all-the-way monitoring of tilapia's quality and safety through the construction of information technology; 3) It has three functions including water quality monitoring, early warning of tilapia's epidemic, and early warning of the risks of tilapia's quality and safety, which facilitates enterprise management and supervision of tilapia's quality for quality supervision departments; 4) Consumers can inquire and complain about tilapiaproduct information on the traceability platform. Feedback information will be dealt with promptly to protect the consumer equity. The platform combines the use ofRFID technology and bar code technology. RFID tags are used from breeding to store, and barcode labels are attachedto the independent small package in the final form for the users to query, which can meet the required functionality and save some costs. In addition, the EPC can uniquely identify products, thusthrough the useof the EPC global coding standard andread-write RFID tags, RFID tags can be recycled by rewriting the EPC encoded in the tags, which can reduce the productionand management costs. In this platform, consumers are the main users and the final beneficiaries, through trace codes. Consumers can acquire information ofsuppliers and products, which enhances their desire to purchase products and improves their faith. Enterprises can use the retrospective mechanism of this platform to reduce costs and risks, and to win market opportunities. Government's involvement is a major highlight of the platform, which proposes the possibility ofsupervision and protection of agricultural products' quality and safetymanagement. The traceability platform has been on probation in two companies, including theWorld Agricultural Development Co. Ltd and MAIKOUGUAI Food Company, and produced a good effect on the turnover and market satisfaction of the products. Furthermore, research on this subject provides a good clue for the establishment of a traceability system for meat, vegetables, and other foods.(30 refs)2、Title:A traceable platform of aquatic foods supply chain basedon RFID and EP C Internet of ThingsAuthors:Yan, Bo ; Hu, Die; Shi, PingSource: International Journal of RF Technologies: Research and Applications, v 4, n 1, p55-70, 2012; ISSN: 17545730, E-ISSN: 17545749; DOI: 10.3233/RFT-2012-0035; Publisher: IOS PressAbstract:This paper designs and developsa traceable platform of aquatic foods supply chain based on Radio Frequency Identification (RFID) and Electronic Product Code (EPC) Internet of Things, and focuses on designing Object Name Service (ONS) and EPC Information Service (EPCIS) of this platform. Tracking, traceability, recall andmonitoring of tilapia products in the food supply chain can be achieved with participation of consumers, enterprises and the government. This platform contains aquaculture management system, process management system, distribution management system, sales management system, and querying and monitoringsystem, and realizesall-the-way traceability of aquatic products from breeding, processing, distribution to sales. © 2012 - IOS Press and the authors. All rights reserved.(11 refs)在ACM中,用“Internet of things and The supply chain and traceability system”检索到了6篇如下(其中期刊2篇,核心期刊2篇,英文6篇):1、Title:Efficiently managing uncertain data in RFID sensor networksAuthors:Jiangang Ma, Quan Z. Sheng, Dong Xie, Jen Min Chuah, Yongrui Qin Source:June 2015 World Wide Web: Volume 18 Issue 4, July 2015 Publisher: Kluwer Academic PublishersBibliometrics:· Downloads (6 Weeks): n/a· Downloads (12 Months): n/a· Downloads (cumulative): n/a· Citation Count: 0Abstract:The ability to track and trace individual items, especially through large-scale and distributed networks, is the key to realizing many important business applications such as supply chain management, asset tracking, and counterfeit detection. Networked RFID (radio frequency identification), which uses the Internet to connect otherwise isolated RFID systems and software, is an emerging technology to support traceability applications. Despite its promising benefits, there remain many challenges to be overcome before these benefits can be realized. One significant challenge centers around dealing with uncertainty of raw RFID data. In this paper, we propose a novel framework to effectively manage the uncertainty of RFID data in large scale traceability networks. The framework consists of a global object tracking model and a local RFID data cleaning model. In particular, we propose a Markov-based model for tracking objects globally and a particle filter based approach for processing noisy, low-level RFID data locally. Our implementation validates the proposedapproach and the experimental results show its effectiveness.Keywords: Uncertainty, RFID, Traceability networks, Internet of things2、Title:A framework for distributed managing uncertain data in RFID traceability networksAuthors:Jiangang Ma, Quan Z. Sheng, Damith Ranasinghe, Jen Min Chuah, Yanbo WuSource:November 2012 WISE'12: Proceedings of the 13th international conference on Web Information Systems EngineeringPublisher: Springer-VerlagBibliometrics:· Downloads (6 Weeks): 0· Downloads (12 Months): 0· Downloads (cumulative): 0· Citation Count: 1Abstract:The ability to track and trace individual items, especially through large-scale and distributed networks, is the key to realizing many important business applications such as supply chain management, asset tracking, and counterfeit detection. Networked RFID (radio frequency identification), which uses the Internet to connect otherwise isolated RFID systems and software, is an emerging technology to support traceability applications. Despite its promising benefits, there remains many challenges to be overcome before these benefits can be realized. One significant challenge centers around dealing with uncertainty of raw RFID data. In this paper, we propose a novel framework to effectively manage the uncertainty of RFID data in large scale traceability networks. The framework consists of a global object tracking model and a local RFID data cleaning model. In particular, we propose a Markov-based model for tracking objects globally and a particle filter based approach for processing noisy, low-level RFID data locally. Our implementation validates the proposed approach and the experimental results show its effectiveness.Keywords: uncertainty, RFID, internet of things, traceability networks3、Title:Value-centric design of the internet-of-things solution for food supply Value creation, sensor portfolio and information fusionAuthors:Zhibo Pang, Qiang Chen, Weili Han, Lirong ZhengSource:March 2015 Information Systems Frontiers: Volume 17 Issue 2, April 2015Publisher:Kluwer Academic PublishersBibliometrics:· Downloads (6 Weeks): n/a· Downloads (12 Months): n/a· Downloads (cumulative): n/a· Citation Count: 7Abstract:The revolution of Internet-of-Things (IoT) is reshaping the modernfood supply chains with promising business prospects. To be successful in practice, the IoT solutions should create "income-centric" values beyond the conventional "traceability-centric" values. To accomplish what we promised to users, sensor portfolios and information fusion must correspond to the new requirements introduced by this income-centric value creation. In this paper, we propose a value-centric business-technology joint design framework. Based on it the income-centric added-values including shelf life prediction, sales premium, precision agriculture, and reduction of assurance cost are identified and assessed. Then corresponding sensor portfolios are developed and implemented. Three-tier information fusion architecture is proposed as well as examples about acceleration data processing, self-learning shelf life prediction and real-time supply chain re-planning. The feasibilities of the proposed design framework and solution have been confirmed by the field trials and an implemented prototype system.Keywords: Internet-of-things (IoT), Value-centric design, Food supply chain, Industrial information integration engineering (IIIE), Sensor portfolio, Information fusion4、Title:The Application of RFID Technology in the Food Traceability System Authors:Ruichun Hou, Xiaobing ZhuSource:August 2012 ICICEE '12: Proceedings of the 2012 International Conference on Industrial Control and Electronics EngineeringPublisher:IEEE Computer SocietyBibliometrics:· Downloads (6 Weeks): n/a· Downloads (12 Months): n/a· Downloads (cumulative): n/a· Citation Count: 1Abstract:Food safety is closely related to people's physical and mental health. But in recent years, food safety incidents occurred frequently. Thus it is important to build a food traceability system. The development of RFID technology and the rise of the Internet of Things provide a valid method to solve the problem. Combined with the characteristics of food supply chain, this paper studies the application of RFID technology in the information traceability system. On this basis, this paper proposes one information structure to provide evidence for collecting data in every part, and analyzes data sharing from the perspective of EPCIS.Keywords: RFID, traceability system, information structure, data sharing, EPCIS5、Title:Fine-grained access control for EPC information servicesAuthors:Eberhard Grummt, Markus MüllerSource:March 2008 IOT'08: Proceedings of the 1st international conference on The internet of thingsPublisher:Springer-VerlagBibliometrics:· Downloads (6 Weeks): n/a· Downloads (12 Months): n/a· Downloads (cumulative): n/a· Citation Count: 6Abstract:Inter-organizational exchange of information about physical objects that is automatically gathered using RFID can increase the traceability of goods in complex supply chains. With the EPCIS specification, a standard forRFID-based events and respective information system interfaces is available. However, it does not address access control in detail, which is a prerequisite for secure information exchange. We propose a novel rule-based, context-aware policy language for describing access rights on large sets of EPCIS Events. Furthermore, we discuss approaches to enforce these policies and introduce an efficient enforcement mechanism based on query recomposition and its prototypical implementation.6、Title:Hardware security through chain assuranceAuthors:Yaw Obeng, Colm Nolan, David BrownSource:March 2016 DATE '16: Proceedings of the 2016 Conference on Design, Automation & Test in EuropePublisher:EDA ConsortiumBibliometrics:· Downloads (6 Weeks): 0· Downloads (12 Months): 0· Downloads (cumulative): 0· Citation Count: 0Abstract:This paper examines the current issues pertaining to the hardware security and how they could affect the overall security of applications such as the internet of things. Specifically, we review the ongoing industry-led activities aimed at mitigating the hardware threats through supply chain assurance. The impact of emerging technologies on hardware-based needs, and the need for technical standards are discussed from brand owners' perspectives. The paper is illustrated with the ongoing work of the International Technology Roadmap for Semiconductors (ITRS) Emerging Research Devices (ERD) hardware security working group, the counterfeit risk mitigation efforts from iNEMI, and the High-Density Package User Group (HDPUG), as well as published standards from SEMI and the Open Group. All these efforts are aimed at mitigating counterfeits in the electronics supply chain through product traceability and authentication. Finally, we will discuss how existing and emerging technologies can be used for product authentication throughout the supply chain.。

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