变电站电气设备相对位置及金属特性影响变电站RFID(Radio Frequency Identification)监测系统通信性能.针对其类似隧道环境及多金属介质特点,提出了基于多天线技术的变电站设备状态传感标签监测系统,建立了监测系统信道模型,并分析了多...变电站电气设备相对位置及金属特性影响变电站RFID(Radio Frequency Identification)监测系统通信性能.针对其类似隧道环境及多金属介质特点,提出了基于多天线技术的变电站设备状态传感标签监测系统,建立了监测系统信道模型,并分析了多天线RFID监测系统的性能影响因素.实验结果表明,阅读器天线与传感标签间距离小于80 m时,相比单天线及双收发天线监测系统,4收发天线系统通信误码率最大可降低1至3个数量级;通信距离在25~80 m时,垂直布置多天线方式较水平布置方式误码率可降低20%~40%.展开更多
This paper presents a design for a self-powered radio frequency identification (RFID) tag with a thin film bulk acoustic reso- nating piezoelectric power supply (PPS), which can be used for portable remote temperature...This paper presents a design for a self-powered radio frequency identification (RFID) tag with a thin film bulk acoustic reso- nating piezoelectric power supply (PPS), which can be used for portable remote temperature monitoring. We call this system a PPS-RFID for short. The RFID systems have been found to have many applications in the internet of things (IOT) in the past decade. But semi-active RFID tags require an onboard battery which limits their applications in many fields. For these reasons, our research focuses on power sources for the RFID tags. This paper emphasizes the circuit design and simulation of PPS. In our tests, 0.283 mW was generated by PPS at 1 Hz vibration by a 650 N impact force. The results showed that the integrated PPS could supply sufficient power for the designed PPS-RFID tag. The PPS-RFID tag can be widely used for temperature monitoring during mobile transport of perishable items such as medicines or food.展开更多
文摘变电站电气设备相对位置及金属特性影响变电站RFID(Radio Frequency Identification)监测系统通信性能.针对其类似隧道环境及多金属介质特点,提出了基于多天线技术的变电站设备状态传感标签监测系统,建立了监测系统信道模型,并分析了多天线RFID监测系统的性能影响因素.实验结果表明,阅读器天线与传感标签间距离小于80 m时,相比单天线及双收发天线监测系统,4收发天线系统通信误码率最大可降低1至3个数量级;通信距离在25~80 m时,垂直布置多天线方式较水平布置方式误码率可降低20%~40%.
基金supported by the MEMS subject construction fund of the Kunming University of Science and Technology (Grant No. 14078024)
文摘This paper presents a design for a self-powered radio frequency identification (RFID) tag with a thin film bulk acoustic reso- nating piezoelectric power supply (PPS), which can be used for portable remote temperature monitoring. We call this system a PPS-RFID for short. The RFID systems have been found to have many applications in the internet of things (IOT) in the past decade. But semi-active RFID tags require an onboard battery which limits their applications in many fields. For these reasons, our research focuses on power sources for the RFID tags. This paper emphasizes the circuit design and simulation of PPS. In our tests, 0.283 mW was generated by PPS at 1 Hz vibration by a 650 N impact force. The results showed that the integrated PPS could supply sufficient power for the designed PPS-RFID tag. The PPS-RFID tag can be widely used for temperature monitoring during mobile transport of perishable items such as medicines or food.