为了解决具有陷波特性的超宽带滤波器陷波深度不够和阻带抑制能力不强等问题,设计了一款结构紧凑的双陷波超宽带滤波器,将设计的新型多模谐振器与输入、输出馈线进行耦合完成超宽带滤波器的设计,在输入馈线端加载2个开路枝节,实现了具...为了解决具有陷波特性的超宽带滤波器陷波深度不够和阻带抑制能力不强等问题,设计了一款结构紧凑的双陷波超宽带滤波器,将设计的新型多模谐振器与输入、输出馈线进行耦合完成超宽带滤波器的设计,在输入馈线端加载2个开路枝节,实现了具有双陷波特性的超宽带滤波器。该滤波器通带为2.42~10.98 GHz,带内插入损耗较小,分别在5.31 GHz和8.1 GHz处产生了2个陷波,有效阻断了无线局域网(wireless local area network,WLAN)和X波段卫星通信频段窄带信号对超宽带通信系统的干扰。该滤波器不仅结构简单,并且具有很好的带外抑制能力(-66.28 dB)和足够的陷波深度(-39.71^-35.12 dB),同时能够达到超宽带系统对滤波器插入损耗和回波损耗的要求。展开更多
During the past several decades,the multimode resonator(MMR)technique has been extensively investigated and widely used,with successful exploration of a variety of high-performance patch antennas,slot antennas,dielect...During the past several decades,the multimode resonator(MMR)technique has been extensively investigated and widely used,with successful exploration of a variety of high-performance patch antennas,slot antennas,dielectric resonant antennas,dipole antennas,and so on.In this review paper,we summarize the research milestones for these MMR antennas worldwide as one of the most contributive research teams in this field.First,the basic working principles of the MMR technique are clearly illustrated and studied,including mode excitation,mode suppression,impedance performance improvement,and radiation performance improvement.Next,the research topics regarding impedance performance enhancement,i.e.,widebandwidth operation,multibandwidth operation,and mutual coupling reduction,based on the MMR method are intensively described.After that,the relevant works on radiation performance enhancement,i.e.,high-gain,wide-beamwidth,multibeam,multipolarization,low-cross-polarization,filtering-response,and leaky-wave antennas,based on the MMR method are extensively illustrated.By using this technique,several ideas about operating frequency reallocation,electric-field null control,radiation pattern reshaping,and efficiency null generation of the antennas are proposed and demonstrated by our team for the first time.In addition,the application of the MMR technique for wireless communication systems is introduced and presented,such as implant communication,wireless power transfer,and multiple-input multiple-output communication.With these arrangements,exploration and reporting of more interesting and useful MMR design methods can be anticipated in the future.展开更多
This paper is focused on electrode design for piezoelectric tuning fork resonators.The relationship between the performance and electrode pattern of aluminum nitride piezoelectric tuning fork resonators vibrating in t...This paper is focused on electrode design for piezoelectric tuning fork resonators.The relationship between the performance and electrode pattern of aluminum nitride piezoelectric tuning fork resonators vibrating in the in-plane flexural mode is investigated based on a set of resonators with different electrode lengths,widths,and ratios.Experimental and simulation results show that the electrode design impacts greatly the multimode effect induced from torsional modes but has little influence on other loss mechanisms.Optimizing the electrode design suppresses the torsional mode successfully,thereby increasing the ratio of impedance at parallel and series resonant frequencies(R_(p)/R_(s))by more than 80%and achieving a quality factor(Q)of 7753,an effective electromechanical coupling coefficient(kt_(eff)^(2))of 0.066%,and an impedance at series resonant frequency(R_(m))of 23.6 kΩ.The proposed approach shows great potential for high-performance piezoelectric resonators,which are likely to be fundamental building blocks for sensors with high sensitivity and low noise and power consumption.展开更多
文摘为了解决具有陷波特性的超宽带滤波器陷波深度不够和阻带抑制能力不强等问题,设计了一款结构紧凑的双陷波超宽带滤波器,将设计的新型多模谐振器与输入、输出馈线进行耦合完成超宽带滤波器的设计,在输入馈线端加载2个开路枝节,实现了具有双陷波特性的超宽带滤波器。该滤波器通带为2.42~10.98 GHz,带内插入损耗较小,分别在5.31 GHz和8.1 GHz处产生了2个陷波,有效阻断了无线局域网(wireless local area network,WLAN)和X波段卫星通信频段窄带信号对超宽带通信系统的干扰。该滤波器不仅结构简单,并且具有很好的带外抑制能力(-66.28 dB)和足够的陷波深度(-39.71^-35.12 dB),同时能够达到超宽带系统对滤波器插入损耗和回波损耗的要求。
基金supported by the National Natural Science Foundation of China(Grant Nos.61571468,61801348,61971475,and 62271364)the Key Research and Development Program of Shaanxi(Grant No.2023-GHZD-45).
文摘During the past several decades,the multimode resonator(MMR)technique has been extensively investigated and widely used,with successful exploration of a variety of high-performance patch antennas,slot antennas,dielectric resonant antennas,dipole antennas,and so on.In this review paper,we summarize the research milestones for these MMR antennas worldwide as one of the most contributive research teams in this field.First,the basic working principles of the MMR technique are clearly illustrated and studied,including mode excitation,mode suppression,impedance performance improvement,and radiation performance improvement.Next,the research topics regarding impedance performance enhancement,i.e.,widebandwidth operation,multibandwidth operation,and mutual coupling reduction,based on the MMR method are intensively described.After that,the relevant works on radiation performance enhancement,i.e.,high-gain,wide-beamwidth,multibeam,multipolarization,low-cross-polarization,filtering-response,and leaky-wave antennas,based on the MMR method are extensively illustrated.By using this technique,several ideas about operating frequency reallocation,electric-field null control,radiation pattern reshaping,and efficiency null generation of the antennas are proposed and demonstrated by our team for the first time.In addition,the application of the MMR technique for wireless communication systems is introduced and presented,such as implant communication,wireless power transfer,and multiple-input multiple-output communication.With these arrangements,exploration and reporting of more interesting and useful MMR design methods can be anticipated in the future.
基金supported in part by the National Key Research and Development Program of China (Grant No.2020YFB2008800)the Nanchang Institute for Microtechnology of Tianjin University。
文摘This paper is focused on electrode design for piezoelectric tuning fork resonators.The relationship between the performance and electrode pattern of aluminum nitride piezoelectric tuning fork resonators vibrating in the in-plane flexural mode is investigated based on a set of resonators with different electrode lengths,widths,and ratios.Experimental and simulation results show that the electrode design impacts greatly the multimode effect induced from torsional modes but has little influence on other loss mechanisms.Optimizing the electrode design suppresses the torsional mode successfully,thereby increasing the ratio of impedance at parallel and series resonant frequencies(R_(p)/R_(s))by more than 80%and achieving a quality factor(Q)of 7753,an effective electromechanical coupling coefficient(kt_(eff)^(2))of 0.066%,and an impedance at series resonant frequency(R_(m))of 23.6 kΩ.The proposed approach shows great potential for high-performance piezoelectric resonators,which are likely to be fundamental building blocks for sensors with high sensitivity and low noise and power consumption.