软件无线电(software defined radio,SDR)以其灵活性和通用性等优点,成为了当代移动通信的一大研究热点;然而主流的SDR原型平台仅实现了点对点通信,由于未能解决时钟同步问题,在多点间通信方面难以保证时序控制和多用户调度;为搭建基于...软件无线电(software defined radio,SDR)以其灵活性和通用性等优点,成为了当代移动通信的一大研究热点;然而主流的SDR原型平台仅实现了点对点通信,由于未能解决时钟同步问题,在多点间通信方面难以保证时序控制和多用户调度;为搭建基于SDR平台的多点通信场景,提出了一种基于软件的网同步实现机制,并采用回程时延(round trip delay,RTD)算法获得软时钟同步;实验表明在微软软件无线电原型平台(Sora)上能获得误差为纳秒级精度的软时钟源,能够模拟TDMA接入方式下的多用户通信场景,验证了软时钟同步机制的正确性与稳健性。展开更多
In this paper a new active RFID system at 2.45 GHz based on the low-power system-on-chip CC2530 RF transceiver is designed and implemented. Only by using of an integrated multi-channel fast chip, both the MCU and RF o...In this paper a new active RFID system at 2.45 GHz based on the low-power system-on-chip CC2530 RF transceiver is designed and implemented. Only by using of an integrated multi-channel fast chip, both the MCU and RF operations are done which makes the RFID more reliable and reduces the complexity of the hardware and cost, vividly. This RFID system utilizes the Zig-Bee IEEE 802.15.4 standard in the ISM band. A lot amount of energy is restored by setting Tags in the sleep mode in the most of times. The maximum transmission range of 80 m at the output power of 4.5 dBm is obtained. The main application of this system is for the container identification with precise operation and high accuracy. An active Tag with unique ID is mounted on each vehicle. By enabling the AUTOCRC error detection possibility, minor errors are detected in the received frames. Receiver sensitivity of –97 dBm and current consumption of 1 μA in the sleep mode and 29.6 mA in the active mode are reported.展开更多
文摘软件无线电(software defined radio,SDR)以其灵活性和通用性等优点,成为了当代移动通信的一大研究热点;然而主流的SDR原型平台仅实现了点对点通信,由于未能解决时钟同步问题,在多点间通信方面难以保证时序控制和多用户调度;为搭建基于SDR平台的多点通信场景,提出了一种基于软件的网同步实现机制,并采用回程时延(round trip delay,RTD)算法获得软时钟同步;实验表明在微软软件无线电原型平台(Sora)上能获得误差为纳秒级精度的软时钟源,能够模拟TDMA接入方式下的多用户通信场景,验证了软时钟同步机制的正确性与稳健性。
文摘In this paper a new active RFID system at 2.45 GHz based on the low-power system-on-chip CC2530 RF transceiver is designed and implemented. Only by using of an integrated multi-channel fast chip, both the MCU and RF operations are done which makes the RFID more reliable and reduces the complexity of the hardware and cost, vividly. This RFID system utilizes the Zig-Bee IEEE 802.15.4 standard in the ISM band. A lot amount of energy is restored by setting Tags in the sleep mode in the most of times. The maximum transmission range of 80 m at the output power of 4.5 dBm is obtained. The main application of this system is for the container identification with precise operation and high accuracy. An active Tag with unique ID is mounted on each vehicle. By enabling the AUTOCRC error detection possibility, minor errors are detected in the received frames. Receiver sensitivity of –97 dBm and current consumption of 1 μA in the sleep mode and 29.6 mA in the active mode are reported.