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Optimized anti-collision algorithm in RFID systems for smart living spaces

机译:智能居住空间RFID系统中的优化防撞算法

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RFID collision is a main challenge imposed by radio wave links shared among a reader and many tags in interrogation zone. Collision is a power-consuming event that reduces the performance of RFID systems. Low power consumption strategy would ensure longer operational life of tags and reader by battery-powered supply. Application of several anti-collision algorithms makes it possible for reader to take long time in identifying tags and as such, much energy in retransmission time. As power consumption and identification time significantly influences overall performance of anti- collision protocols, an efficient anti-collision algorithm is incorporated in the system to provide superior performance on one hand, and power consumption improvement on the other. The proposed method uses power level clustering and BIBD (Balanced Incomplete Block Design) code to improve and enhance the reading efficiency. The methodology involved dividing the tags in several power level sections, based on distances of reader, making it possible for readers to get every tag ID by recognizing each section of BIBD symbols. Simulation results and mathematical analysis show significantly lower power consumption and faster tag identification performance.
机译:RFID冲突是阅读器与询问区域中许多标签之间共享的无线电波链接所带来的主要挑战。碰撞是一个耗电事件,会降低RFID系统的性能。低功耗策略将通过电池供电来确保标签和读取器的使用寿命更长。几种防冲突算法的应用使阅读器可以花费较长的时间来识别标签,从而在重传时间上消耗了很多能量。由于功耗和识别时间会显着影响防冲突协议的整体性能,因此将有效的防冲突算法集成到系统中,一方面可提供出色的性能,另一方面可提高功耗。所提出的方法使用功率级聚类和BIBD(平衡不完整块设计)代码来提高和提高读取效率。该方法包括根据阅读器的距离将标签分为几个功率级别部分,从而使阅读器可以通过识别BIBD符号的每个部分来获取每个标签ID。仿真结果和数学分析表明,功耗大大降低,标签识别性能更快。

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