农业工程学报
農業工程學報
농업공정학보
2013年
15期
172-183
,共12页
水产养殖%供应链%食品安全%可追溯平台%物联网%产品电子代码%射频识别
水產養殖%供應鏈%食品安全%可追溯平檯%物聯網%產品電子代碼%射頻識彆
수산양식%공응련%식품안전%가추소평태%물련망%산품전자대마%사빈식별
aquaculture%supply chains%food safety%traceability system%internet of things%electronic product code%radio frequency identification
为实现对水产品流通过程的全程追溯,该文以供应链为视角,以罗非鱼为具体研究对象,立足消费者、企业和政府监管部门等三方,本着可跟踪、可追溯、可召回等基本目标,设计并开发了基于射频识别(radio frequency identification,RFID)和产品电子代码(electronic product code,EPC)物联网的,包含养殖管理系统、加工管理系统、配送管理系统、销售管理系统、查询监管系统5个子系统的水产品供应链可追溯平台,并着重对平台的对象名称服务(object name service,ONS)和EPC信息服务(electronic product code information service,EPCIS)进行了详细的设计与实现,利用该平台可以实现水产品从养殖、加工、配送到销售的全程跟踪与追溯。该研究可为水产品供应链可追溯系统模型与软件的开发提供参考。
為實現對水產品流通過程的全程追溯,該文以供應鏈為視角,以囉非魚為具體研究對象,立足消費者、企業和政府鑑管部門等三方,本著可跟蹤、可追溯、可召迴等基本目標,設計併開髮瞭基于射頻識彆(radio frequency identification,RFID)和產品電子代碼(electronic product code,EPC)物聯網的,包含養殖管理繫統、加工管理繫統、配送管理繫統、銷售管理繫統、查詢鑑管繫統5箇子繫統的水產品供應鏈可追溯平檯,併著重對平檯的對象名稱服務(object name service,ONS)和EPC信息服務(electronic product code information service,EPCIS)進行瞭詳細的設計與實現,利用該平檯可以實現水產品從養殖、加工、配送到銷售的全程跟蹤與追溯。該研究可為水產品供應鏈可追溯繫統模型與軟件的開髮提供參攷。
위실현대수산품류통과정적전정추소,해문이공응련위시각,이라비어위구체연구대상,립족소비자、기업화정부감관부문등삼방,본착가근종、가추소、가소회등기본목표,설계병개발료기우사빈식별(radio frequency identification,RFID)화산품전자대마(electronic product code,EPC)물련망적,포함양식관리계통、가공관리계통、배송관리계통、소수관리계통、사순감관계통5개자계통적수산품공응련가추소평태,병착중대평태적대상명칭복무(object name service,ONS)화EPC신식복무(electronic product code information service,EPCIS)진행료상세적설계여실현,이용해평태가이실현수산품종양식、가공、배송도소수적전정근종여추소。해연구가위수산품공응련가추소계통모형여연건적개발제공삼고。
Food safety has become an important global public-health issue, and aquatic safety issues were never suspended. With the exposure and the emergence of some aquatic products’ quality and safety issues in China, safety issues for the quality of aquatic products has become the bottleneck of the sustainable development of fisheries and aquatic products for import and export trade. In response to the risk in the aquatic foods supply chain and to improve services, the traceable platform of the aquatic foods supply chain is highly required. Quality problems of aquatic products could occur in every aspect 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 bottom out the safety hazards. In response to these issues, this paper takes tilapia as the object of study and designs and develops a traceable platform of the 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, and monitoring of tilapia products in the food supply chain can be achieved with the participation of consumers, enterprises, and the government. This platform contains an aquaculture management system, process management system, distribution management system, sales management system, and querying and monitoring system, and realizes all-the-way traceability of aquatic 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 all aspects of information from breeding, production, processing, and distribution to sale; 2) It brings out informationization on the production 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 tilapia product information on the traceability platform. Feedback information will be dealt with promptly to protect the consumer equity. The platform combines the use of RFID technology and bar code technology. RFID tags are used from breeding to store, and barcode labels are attached to 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, thus through the use of the EPC global coding standard and read-write RFID tags, RFID tags can be recycled by rewriting the EPC encoded in the tags, which can reduce the production and management costs. In this platform, consumers are the main users and the final beneficiaries, through trace codes. Consumers can acquire information of suppliers 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 of supervision and protection of agricultural products’ quality and safety management. The traceability platform has been on probation in two companies, including the World 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.