Department of Information & Communications Engineering, Korea Advanced Institute of Science and Technology, 119, Moonji-Ro, Yuseong-Gu, Daejeon, 305-732, Korea.
Sensors (Basel). 2010;10(1):84-96. doi: 10.3390/s100100084. Epub 2009 Dec 24.
At present, RFID is installed on mobile devices such as mobile phones or PDAs and provides a means to obtain information about objects equipped with an RFID tag over a multi-channeled telecommunication networks. To use mobile RFIDs, reader collision problems should be addressed given that readers are continuously moving. Moreover, in a multichannel environment for mobile RFIDs, interference between adjacent channels should be considered. This work first defines a new concept of a reader collision problem between adjacent channels and then suggests a novel reader anti-collision algorithm for RFID readers that use multiple channels. To avoid interference with adjacent channels, the suggested algorithm separates data channels into odd and even numbered channels and allocates odd-numbered channels first to readers. It also sets an unused channel between the control channel and data channels to ensure that control messages and the signal of the adjacent channel experience no interference. Experimental results show that suggested algorithm shows throughput improvements ranging from 29% to 46% for tag identifications compared to the GENTLE reader anti-collision algorithm for multichannel RFID networks.
目前,RFID 被安装在移动设备(如手机或 PDA)上,并通过多通道通信网络提供了一种获取配备有 RFID 标签的物体信息的手段。为了使用移动 RFID,需要解决读者碰撞问题,因为读者是不断移动的。此外,在移动 RFID 的多通道环境中,需要考虑相邻通道之间的干扰。本工作首先定义了相邻通道读者碰撞问题的新概念,然后为使用多个通道的 RFID 读者提出了一种新的读者防碰撞算法。为了避免与相邻通道的干扰,建议的算法将数据通道分为奇数和偶数通道,并首先为读者分配奇数通道。它还在控制通道和数据通道之间设置了一个未使用的通道,以确保控制消息和相邻通道的信号不会受到干扰。实验结果表明,与多通道 RFID 网络中的 GENTLE 读者防碰撞算法相比,所提出的算法在标签识别方面的吞吐量提高了 29%到 46%。