This paper presents an RF receiver of zero-Intermediate Frequency(IF) architecture for Cognitive Radio(CR) communication systems.Zero-IF architecture reduce the image reject filter and IF filter,so it is excellent in ...This paper presents an RF receiver of zero-Intermediate Frequency(IF) architecture for Cognitive Radio(CR) communication systems.Zero-IF architecture reduce the image reject filter and IF filter,so it is excellent in low cost,compact volume,and low power dissipation.The receiver employs three digital attenuator and a high gain,high linearity low noise amplifier to achieve wide dynamic range of 70 dB and high receiving sensitivity of-81 dBm.A fully balanced I/Q demodulator and a differential Local Oscillator(LO) chips are used to minimize the negative effects caused by second-order distortion and LO leakage.In order to select an 8 MHz-channel from 14 continuous ones located in UHF band(694-806 MHz) accurately,approach of channel selectivity circuits is proposed.The RF receiver has been designed,fabricated,and test.The measured result shows that the noise figure is 3.4 dB,and the error vector magnitude is 7.5% when the input power is-81 dBm.展开更多
传统桥式全波RF-DC变换电路在设计过程中忽略了二极管导通损耗,从而影响系统效率。采用了E类零电压开关(Zero Voltage Switching,ZVS)RF-DC变换电路,设计了谐振频率为8 MHz,输入功率为1.21 W的无线电力传输系统接收模块。并利用multisi...传统桥式全波RF-DC变换电路在设计过程中忽略了二极管导通损耗,从而影响系统效率。采用了E类零电压开关(Zero Voltage Switching,ZVS)RF-DC变换电路,设计了谐振频率为8 MHz,输入功率为1.21 W的无线电力传输系统接收模块。并利用multisim软件进行了仿真。结果表明,该设计方法降低了二极管导通损耗,有效避免了传统桥式全波RF-DC变换电路存在的缺陷,效率可达92%。展开更多
针对传统超外差式架构构成的通用射频前端,其体积大、结构复杂、实现难度大、成本高、需要很高的镜像抑制性能等缺点,设计了一种采用零中频结构构成的通用射频前端,其工作频段为800 MHz^2400 MHz。该射频前端在一款高性能解调器的基础上...针对传统超外差式架构构成的通用射频前端,其体积大、结构复杂、实现难度大、成本高、需要很高的镜像抑制性能等缺点,设计了一种采用零中频结构构成的通用射频前端,其工作频段为800 MHz^2400 MHz。该射频前端在一款高性能解调器的基础上,加入宽带低噪声放大器、程控射频AGC电路、电调谐预选滤波器等电路,从而实现灵敏度优于-100 d Bm/5 MHz,动态范围大于100 d B的设计指标要求。展开更多
基金Supported by the National High-Tech Project (No. 2009AA011801)National Natural Science Foundation of China (No. 60621002)
文摘This paper presents an RF receiver of zero-Intermediate Frequency(IF) architecture for Cognitive Radio(CR) communication systems.Zero-IF architecture reduce the image reject filter and IF filter,so it is excellent in low cost,compact volume,and low power dissipation.The receiver employs three digital attenuator and a high gain,high linearity low noise amplifier to achieve wide dynamic range of 70 dB and high receiving sensitivity of-81 dBm.A fully balanced I/Q demodulator and a differential Local Oscillator(LO) chips are used to minimize the negative effects caused by second-order distortion and LO leakage.In order to select an 8 MHz-channel from 14 continuous ones located in UHF band(694-806 MHz) accurately,approach of channel selectivity circuits is proposed.The RF receiver has been designed,fabricated,and test.The measured result shows that the noise figure is 3.4 dB,and the error vector magnitude is 7.5% when the input power is-81 dBm.
文摘传统桥式全波RF-DC变换电路在设计过程中忽略了二极管导通损耗,从而影响系统效率。采用了E类零电压开关(Zero Voltage Switching,ZVS)RF-DC变换电路,设计了谐振频率为8 MHz,输入功率为1.21 W的无线电力传输系统接收模块。并利用multisim软件进行了仿真。结果表明,该设计方法降低了二极管导通损耗,有效避免了传统桥式全波RF-DC变换电路存在的缺陷,效率可达92%。
文摘针对传统超外差式架构构成的通用射频前端,其体积大、结构复杂、实现难度大、成本高、需要很高的镜像抑制性能等缺点,设计了一种采用零中频结构构成的通用射频前端,其工作频段为800 MHz^2400 MHz。该射频前端在一款高性能解调器的基础上,加入宽带低噪声放大器、程控射频AGC电路、电调谐预选滤波器等电路,从而实现灵敏度优于-100 d Bm/5 MHz,动态范围大于100 d B的设计指标要求。