本文采用了LC并联谐振的办法设计了高性能的CMOS收发开关,由于消除了CMOS晶体管的寄生电容的影响,降低了开关电路的插入损耗、提高隔离性能。同时利用直流偏置和交流浮动技术来提高开关的功率容纳能力。采用TSMC0.35 m RF-CMOS工艺设计...本文采用了LC并联谐振的办法设计了高性能的CMOS收发开关,由于消除了CMOS晶体管的寄生电容的影响,降低了开关电路的插入损耗、提高隔离性能。同时利用直流偏置和交流浮动技术来提高开关的功率容纳能力。采用TSMC0.35 m RF-CMOS工艺设计的收发开关,模拟结果表明谐振频率工作点的插入损耗为1.03dB,收发端隔离39.277dB,输入1dB压缩点(P1dB)功率26.28dBm。展开更多
基于GaAs赝高电子迁移率晶体管(PHEMT)工艺,研制了一种5-12 GHz的收发一体多功能芯片(T/R MFC),其具有噪声低、增益高和中等功率等特点。电路由低噪声放大器和多个单刀双掷(SPDT)开关构成。为了获得较低的噪声系数和较大的增益,...基于GaAs赝高电子迁移率晶体管(PHEMT)工艺,研制了一种5-12 GHz的收发一体多功能芯片(T/R MFC),其具有噪声低、增益高和中等功率等特点。电路由低噪声放大器和多个单刀双掷(SPDT)开关构成。为了获得较低的噪声系数和较大的增益,低噪声放大器采用自偏置三级级联拓扑结构;为了获得较高的隔离度和较低的插入损耗,SPDT开关采用串并联结构。测试结果表明,在5-12 GHz频段内,收发一体多功能芯片的小信号增益大于26 d B,噪声系数小于4 d B,输入/输出电压驻波比小于2.0,1 d B压缩点输出功率大于15 d Bm。其中,放大器为单电源5 V供电,静态电流小于120 m A;开关控制电压为-5 V/0 V。芯片尺寸为2.65 mm×2.0 mm。展开更多
Radio frequency identification(RFID) is a ubiquitous identification technology nowadays. An on-chip high-performance transmit/receive(T/R) switch is designed and simulated in 0.13-μm CMOS technology for reader-less R...Radio frequency identification(RFID) is a ubiquitous identification technology nowadays. An on-chip high-performance transmit/receive(T/R) switch is designed and simulated in 0.13-μm CMOS technology for reader-less RFID tag. The switch utilizes only the transistor width and length(W/L) optimization, proper gate bias resistor and resistive body floating technique and therefore,exhibits 1 d B insertion loss, 31.5 d B isolation and 29.2 d Bm 1-d B compression point(P1d B). Moreover, the switch dissipates only786.7 n W power for 1.8/0 V control voltages and is capable of switching in 794 fs. Above all, as there is no inductor or capacitor used in the circuit, the size of the switch is 0.00208 mm2 only. This switch will be appropriate for reader-less RFID tag transceiver front-end as well as other wireless transceivers operated at 2.4 GHz band.展开更多
A robust scheme is proposed to jointly optimize transmit/receive beamformers for Mul-tiple Input Multiple Output(MIMO) downlinks where the available Channel State Information(CSI) at Base Station(BS)(CSIBS) is imperfe...A robust scheme is proposed to jointly optimize transmit/receive beamformers for Mul-tiple Input Multiple Output(MIMO) downlinks where the available Channel State Information(CSI) at Base Station(BS)(CSIBS) is imperfect.The criterion is to minimize the sum Mean Square Error(sum-MSE) over all users under a constraint on the total transmit power,which is a non-convex and non-linear problem.Observing from the first order optimization condition that the optimal trans-mit/receive beamformers are mutually dependent,the transmit/receive beamformers for each user are updated iteratively until the sum-MSE is minimized.Simulation results indicate that the proposed scheme can effectively mitigate the system performance loss induced by imperfect CSIBS.展开更多
We propose and experimentally demonstrate an adaptive multiple-input multiple-output(MIMO) mode switching scheme for an indoor visible light communication system combined with orthogonal frequency division multiplex...We propose and experimentally demonstrate an adaptive multiple-input multiple-output(MIMO) mode switching scheme for an indoor visible light communication system combined with orthogonal frequency division multiplexing modulation.Only requiring 1 bit feedback from the receiver,the MIMO mode at the transmitter switches between spatial multiplexing and transmit diversity adapting to the channel correlation.In such a way,we can take advantage of both spatial multiplexing and transmit diversity,where the spatial multiplexing benefits for its multiplexing gain in the low channel correlation environment,and the transmit diversity is robust to high channel correlation.Experimental results validate the performance improvement over the pure spatial multiplexing or transmit diversity system.With the increasing of the channel correlation,the measured bit error rates of the proposed system are below the 7% pre-forward error correction(pre-FEC) limit of 3.8 × 10-(-3)when the transmitted data rate is 50 Mb/s,and below the 20% pre-FEC threshold of 5.0 × 10-(-2) when the transmitted data rate is raised up to 100 Mb/s.展开更多
文摘本文采用了LC并联谐振的办法设计了高性能的CMOS收发开关,由于消除了CMOS晶体管的寄生电容的影响,降低了开关电路的插入损耗、提高隔离性能。同时利用直流偏置和交流浮动技术来提高开关的功率容纳能力。采用TSMC0.35 m RF-CMOS工艺设计的收发开关,模拟结果表明谐振频率工作点的插入损耗为1.03dB,收发端隔离39.277dB,输入1dB压缩点(P1dB)功率26.28dBm。
文摘基于GaAs赝高电子迁移率晶体管(PHEMT)工艺,研制了一种5-12 GHz的收发一体多功能芯片(T/R MFC),其具有噪声低、增益高和中等功率等特点。电路由低噪声放大器和多个单刀双掷(SPDT)开关构成。为了获得较低的噪声系数和较大的增益,低噪声放大器采用自偏置三级级联拓扑结构;为了获得较高的隔离度和较低的插入损耗,SPDT开关采用串并联结构。测试结果表明,在5-12 GHz频段内,收发一体多功能芯片的小信号增益大于26 d B,噪声系数小于4 d B,输入/输出电压驻波比小于2.0,1 d B压缩点输出功率大于15 d Bm。其中,放大器为单电源5 V供电,静态电流小于120 m A;开关控制电压为-5 V/0 V。芯片尺寸为2.65 mm×2.0 mm。
基金supported by the research grant Economic Transformation Programme (ETP-2013-037) from Universiti Kebangsaan Malaysia and the Ministry of Science, Technology and Innovation (MOSTI) respectively
文摘Radio frequency identification(RFID) is a ubiquitous identification technology nowadays. An on-chip high-performance transmit/receive(T/R) switch is designed and simulated in 0.13-μm CMOS technology for reader-less RFID tag. The switch utilizes only the transistor width and length(W/L) optimization, proper gate bias resistor and resistive body floating technique and therefore,exhibits 1 d B insertion loss, 31.5 d B isolation and 29.2 d Bm 1-d B compression point(P1d B). Moreover, the switch dissipates only786.7 n W power for 1.8/0 V control voltages and is capable of switching in 794 fs. Above all, as there is no inductor or capacitor used in the circuit, the size of the switch is 0.00208 mm2 only. This switch will be appropriate for reader-less RFID tag transceiver front-end as well as other wireless transceivers operated at 2.4 GHz band.
基金the National Natural Science Foundation of China(No.60572156)
文摘A robust scheme is proposed to jointly optimize transmit/receive beamformers for Mul-tiple Input Multiple Output(MIMO) downlinks where the available Channel State Information(CSI) at Base Station(BS)(CSIBS) is imperfect.The criterion is to minimize the sum Mean Square Error(sum-MSE) over all users under a constraint on the total transmit power,which is a non-convex and non-linear problem.Observing from the first order optimization condition that the optimal trans-mit/receive beamformers are mutually dependent,the transmit/receive beamformers for each user are updated iteratively until the sum-MSE is minimized.Simulation results indicate that the proposed scheme can effectively mitigate the system performance loss induced by imperfect CSIBS.
基金supported by the National Natural Science Foundation of China under Grant No.61501296
文摘We propose and experimentally demonstrate an adaptive multiple-input multiple-output(MIMO) mode switching scheme for an indoor visible light communication system combined with orthogonal frequency division multiplexing modulation.Only requiring 1 bit feedback from the receiver,the MIMO mode at the transmitter switches between spatial multiplexing and transmit diversity adapting to the channel correlation.In such a way,we can take advantage of both spatial multiplexing and transmit diversity,where the spatial multiplexing benefits for its multiplexing gain in the low channel correlation environment,and the transmit diversity is robust to high channel correlation.Experimental results validate the performance improvement over the pure spatial multiplexing or transmit diversity system.With the increasing of the channel correlation,the measured bit error rates of the proposed system are below the 7% pre-forward error correction(pre-FEC) limit of 3.8 × 10-(-3)when the transmitted data rate is 50 Mb/s,and below the 20% pre-FEC threshold of 5.0 × 10-(-2) when the transmitted data rate is raised up to 100 Mb/s.