首页> 外文会议>IEEE International Conference on Communications;ICC 2010 >A New GA-Based Resource Allocation Scheme for a Reader-to-Reader Interference Problem in RFID Systems
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A New GA-Based Resource Allocation Scheme for a Reader-to-Reader Interference Problem in RFID Systems

机译:RFID系统中基于读写器干扰问题的基于遗传算法的新资源分配方案

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In radio frequency identification (RFID) system, the reader-to-reader interference leads to reader collision that disturbs readers in tag recognition. The existing reader anti-collision techniques based on TDM or FDM are inefficient solutions to the reader collision problem since they do not consider jointly the distance between the interfering readers and the frequencies, and time slots that readers use. In this paper, we formulate a TDM/FDM-based reader-to-reader interference model to analyze the effects of the above factors and an optimization problem to maximize the RFID system performance. We then propose a novel resource allocation technique based on genetic algorithm (RA-GA) to solve the optimization problem. The RA-GA includes a unique encoding scheme and fitness function to obtain an optimal resource allocation for the RFID system effectively. Simulation results show that the RA-GA is superior to the resource allocation based on random method.
机译:在射频识别(RFID)系统中,读取器之间的干扰会导致读取器碰撞,从而干扰读取器的标签识别。现有的基于TDM或FDM的阅读器防撞技术无法有效解决阅读器碰撞问题,因为它们没有共同考虑干扰阅读器之间的距离和频率以及阅读器使用的时隙。在本文中,我们建立了一个基于TDM / FDM的读写器干扰模型,以分析上述因素的影响以及优化问题,以最大化RFID系统的性能。然后,我们提出了一种基于遗传算法(RA-GA)的新型资源分配技术来解决优化问题。 RA-GA包括独特的编码方案和适应度函数,可以有效地获得RFID系统的最佳资源分配。仿真结果表明,RA-GA优于基于随机方法的资源分配。

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