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An improved RFID anti-collision algorithm and its application in food tracking

机译:改进的RFID防撞算法及其在食品跟踪中的应用

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Food safety issues are frequent in today's society, and how to accurately and accurately track food is an urgent problem to be solved. In the information age of the Internet of Things (IOT), the “connected objects” feature allows food to provide detailed information from the production to the sales process, tracking the processing flow of each link, and when the food quality and safety issues arise, it can be accurate. Quickly find the source of food and related product flows, effectively prevent problem foods from entering the market, and let consumers eat safe food. This thesis mainly studies the multi-tag recognition collision avoidance in the Internet of Things technology, and improves the multi-fork tree anti-collision algorithm. By introducing the slot idea in the ALOHA algorithm, a dual-slot dynamic search algorithm (GMT) is proposed. Simulation experiments show that the algorithm effectively reduces the time spent on RFID tags recognition, reduces the number of collisions of tags, and reduces the energy consumption of the system. It is an effective anti-collision algorithm.
机译:在当今社会,食品安全问题屡见不鲜,如何准确,准确地跟踪食品是一个亟待解决的问题。在物联网(IOT)的信息时代,“连接对象”功能使食品能够提供从生产到销售过程的详细信息,跟踪每个链接的处理流程以及何时出现食品质量和安全问题。 ,它可能是准确的。快速找到食物和相关产品流的来源,有效地防止有问题的食物进入市场,并让消费者食用安全的食物。本文主要研究物联网技术中的多标签识别避碰技术,并对多叉树防撞算法进行了改进。通过在ALOHA算法中引入时隙思想,提出了一种双时隙动态搜索算法(GMT)。仿真实验表明,该算法有效减少了RFID标签识别所花费的时间,减少了标签碰撞的次数,并降低了系统的能耗。这是一种有效的防冲突算法。

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