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传输线变压器的机理及宽带阻抗匹配的设计 被引量:8
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作者 陈小刚 朱昌平 +3 位作者 徐霞 冉勇 冯若 郭利强 《声学技术》 CSCD 2003年第2期87-89,共3页
传输线变压器具有频带宽、易于制作的特点,在通信领域得到了广泛的应用。但在超声换能器与超声信号源之间采用传输线变压器实现阻抗匹配的报道较少。文章对传输线变压器实现宽带阻抗匹配的机理进行了详细的分析,通过一个简单的等效电路... 传输线变压器具有频带宽、易于制作的特点,在通信领域得到了广泛的应用。但在超声换能器与超声信号源之间采用传输线变压器实现阻抗匹配的报道较少。文章对传输线变压器实现宽带阻抗匹配的机理进行了详细的分析,通过一个简单的等效电路阐明了传输线变压器如何巧妙地利用传输线间的分布电容,使其由影响高频能量传输的不利因素而转换为电磁能量转换必不可少的条件,从而达到宽频带传输的目的。以500kHz~2MHz范围内的超声换能器的阻抗匹配变压器的设计为例,具体给出了确定传输线变压器特性阻抗、线长、磁心、导线型号和匝数的方法。 展开更多
关键词 传输线变压器 宽带阻抗匹配 设计 超声换能器 超声信号源
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高强度聚焦超声换能器的宽带阻抗匹配 被引量:6
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作者 谭坚文 廖瑞金 +1 位作者 邓思建 曾德平 《电工技术学报》 EI CSCD 北大核心 2014年第11期141-146,共6页
高强度聚焦超声(HIFU)治疗系统为实现从功率源到超声换能器的最大电功率传输,需在功率源与超声换能器之间设计阻抗匹配网络。无源器件匹配可实现超声换能器电阻抗的精确匹配,但其宽带匹配的解析设计理论较复杂。本文利用简化实频法对HIF... 高强度聚焦超声(HIFU)治疗系统为实现从功率源到超声换能器的最大电功率传输,需在功率源与超声换能器之间设计阻抗匹配网络。无源器件匹配可实现超声换能器电阻抗的精确匹配,但其宽带匹配的解析设计理论较复杂。本文利用简化实频法对HIFU换能器进行了宽带匹配网络设计,采用Levenberg-Marquardt法对传输功率增益进行了优化,优化后的功率传输增益在200k Hz的通带内为0.9左右,且较为平滑;针对HIFU换能器进行的宽带阻抗匹配和声功率测试表明,采用传输功率增益优化设计出的宽带匹配网络能有效拓宽换能器的工作频带。 展开更多
关键词 超声换能器 高强度聚焦超声 宽带阻抗匹配 简化实频法 LEVENBERG-MARQUARDT算法
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AOTF-NIR宽带功率超声换能器阻抗匹配网络的设计与优化 被引量:5
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作者 王玉江 王志斌 +4 位作者 陈媛媛 宋雁鹏 王芳 薛鹏 薛锐 《电子学报》 EI CAS CSCD 北大核心 2017年第5期1057-1063,共7页
随着近红外声光可调滤波器(Near Infrared Acousto-Optic Tunable Filter,AOTF-NIR)光谱成像技术在深空探测的广泛应用,超声换能器作为AOTF-NIR核心部件,对其工作带宽、光谱衍射效率及功率效率提出了更高的要求.超声换能器在不同频率下... 随着近红外声光可调滤波器(Near Infrared Acousto-Optic Tunable Filter,AOTF-NIR)光谱成像技术在深空探测的广泛应用,超声换能器作为AOTF-NIR核心部件,对其工作带宽、光谱衍射效率及功率效率提出了更高的要求.超声换能器在不同频率下具有不同的输入阻抗,当驱动信号源输出阻抗与换能器输入阻抗失配时将会产生能量损耗,导致无法把功率最大限度的传递给换能器,从而使AOTF-NIR光谱衍射效率降低,影响光谱灵敏度.该文通过射频电路先进设计系统(Advanced Design System,ADS)仿真及实验测试,运用滤波器网络理论,采用LC无耗储能元件设计了一种带通型宽带匹配网络.最终在60-120MHz带宽范围内阻抗匹配网络的回波损耗S_(11)>-29.8d B,阻抗匹配网络功率效率达到90%以上.通过不断地微调优化匹配阻抗值及LC参数值,以此来提高光谱衍射效率,使光谱衍射效率最高达90%以上,提高了在620-1150nm波段内的光谱灵敏度及光谱成像清晰度. 展开更多
关键词 功率超声换能器 阻抗频率特性 宽带阻抗匹配网络 全局优化
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一种紧凑的射频CMOS放大器LC输出匹配电路 被引量:1
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作者 赵晓冬 《电讯技术》 北大核心 2024年第4期637-642,共6页
提出了一种紧凑的射频互补金属氧化物半导体(Complementary Metal Oxide Semiconductor,CMOS)放大器LC输出匹配电路,利用放大器漏极偏置电感、输出端隔直电容与放大器输出端并联电感电容形成高阶LC谐振网络,可在占用较小芯片面积的条件... 提出了一种紧凑的射频互补金属氧化物半导体(Complementary Metal Oxide Semiconductor,CMOS)放大器LC输出匹配电路,利用放大器漏极偏置电感、输出端隔直电容与放大器输出端并联电感电容形成高阶LC谐振网络,可在占用较小芯片面积的条件下实现较传统L型匹配电路更宽频率范围的输出阻抗匹配。推导了该LC输出匹配电路元件值的计算式,并根据提出的设计方法,采用65 nm CMOS工艺设计了一款K频段放大器,其输出匹配电路尺寸仅98μm×150μm。仿真结果表明,在16.5~22.1 GHz频率范围内放大器的S 22<-10 dB,阻抗匹配带宽相比L型匹配电路增加166%。放大器实测S参数和仿真结果相符,验证了该LC匹配电路可实现紧凑的宽带阻抗匹配。 展开更多
关键词 紧凑匹配电路 射频CMOS放大器 宽带阻抗匹配 LC谐振网络
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宽光谱AOTF匹配网络对光谱衍射效率影响的研究 被引量:2
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作者 王玉江 王志斌 +4 位作者 王耀利 宋雁鹏 李晋华 张敏娟 薛锐 《光谱学与光谱分析》 SCIE EI CAS CSCD 北大核心 2016年第7期2300-2305,共6页
基于声光可调滤波器(acousto-optic tunable filter,AOTF)光谱成像分析仪在可见至红外光谱的多个谱区内广泛应用,对AOTF的光谱带宽及衍射效率提出了更高的要求。超声换能器作为AOTF的核心部件,其3 dB工作带宽决定AOTF的光谱衍射范围,... 基于声光可调滤波器(acousto-optic tunable filter,AOTF)光谱成像分析仪在可见至红外光谱的多个谱区内广泛应用,对AOTF的光谱带宽及衍射效率提出了更高的要求。超声换能器作为AOTF的核心部件,其3 dB工作带宽决定AOTF的光谱衍射范围,故在同一声光介质上制作两片厚度不同的换能器来提高AOTF光谱带宽。由于超声换能器在不同频率下具有不同的输入阻抗,当驱动信号源输出阻抗与超声换能器输入阻抗失配时会产生能量损耗,导致无法把功率最大限度的传递给超声换能器,从而使AOTF光谱衍射效率降低,影响光谱成像清晰度。通过射频电路先进设计系统(ADS)仿真及实验测试,设计了一种新型宽带阻抗匹配网络,在60~200 MHz带宽范围内,阻抗匹配网络功率效率达到90%以上,光谱衍射效率最高达90%,提高了在420~1 150 nm波段内的光谱灵敏度。 展开更多
关键词 AOTF超声换能器 阻抗分析 宽带阻抗匹配网络 光谱测量 光谱衍射效率
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宽带短波大扫描角相控阵天线的研究 被引量:1
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作者 樊品 李剑 +1 位作者 徐翾 唐蕾 《现代雷达》 CSCD 北大核心 2018年第9期63-67,共5页
对宽带短波大扫描角相控阵天线进行了详细的研究,从天线单元的形式、宽带阻抗匹配、系统噪声、阵列单元的布局,以及对使用环境的要求进行了设计考虑。工程上解决了天线辐射单元的宽带阻抗匹配、效率等问题;同时,给出了实测结果,交... 对宽带短波大扫描角相控阵天线进行了详细的研究,从天线单元的形式、宽带阻抗匹配、系统噪声、阵列单元的布局,以及对使用环境的要求进行了设计考虑。工程上解决了天线辐射单元的宽带阻抗匹配、效率等问题;同时,给出了实测结果,交替的三角排列解决了相控阵天线的宽角扫描问题,并从经济实用、可靠性等方面给出了地网的设计原则;最后,给出天线阵的仿真结果,并结合未来的发展趋势,提出短波相控阵天线新的设计思想。 展开更多
关键词 短波天线 宽带阻抗匹配 相控阵天线 天线效率 地网
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单兵通信系统头盔天线研究进展 被引量:1
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作者 李建 晚雷天 +4 位作者 鲜承伟 周粤丹 黄文逸 黄勇军 文光俊 《电子与信息学报》 EI CSCD 北大核心 2023年第7期2375-2385,共11页
头盔天线是指以特殊的人工结构或材料共形到单兵可穿戴头盔上的一种天线,它是单兵无线通信系统中的核心器件。当前的头盔天线研究仅关注辐射全向性、大宽带、高增益和低比吸收率(SAR)中的某一方面或两个方面,难以满足快速发展的战术通... 头盔天线是指以特殊的人工结构或材料共形到单兵可穿戴头盔上的一种天线,它是单兵无线通信系统中的核心器件。当前的头盔天线研究仅关注辐射全向性、大宽带、高增益和低比吸收率(SAR)中的某一方面或两个方面,难以满足快速发展的战术通信要求。近年来各种基于人工磁导体、超构材料等新型材料/结构的天线设计和阻抗匹配方法被相继提出,使得头盔天线有望突破增益、带宽、尺寸、重量和电磁辐射之间相互制约的技术难题。该文旨在通过系统总结国内外对于头盔天线在控制辐射方向、扩展带宽、增益提高、抑制比吸收率的研究进展之基础上,展望未来头盔天线重点突破的技术方向,并提出一种基于非福斯特电路的圆形阵列头盔天线技术构想。 展开更多
关键词 头盔天线 全向性辐射 超材料 宽带有源阻抗匹配 比吸收率
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Construction of 1D Mn_(x)O_(y)/C@Fe_(3)O_(4) Heterostructure for Ultralight Broadband Electromagnetic Wave Absorption
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作者 SONG Zhiming LIU Bin +2 位作者 YI Peng HAN Xuhui LIU Xiaofang 《陶瓷学报》 2025年第4期729-741,共13页
[Background and purposes]In recent years,there has been growing attention in academia and industry on the development of high-performance electromagnetic wave(EMW)absorbing materials.However,creating lightweight broad... [Background and purposes]In recent years,there has been growing attention in academia and industry on the development of high-performance electromagnetic wave(EMW)absorbing materials.However,creating lightweight broadband absorbers remains a challenge in terms of practical applications.EMW absorbing materials primarily rely on the magnetic loss of magnetic materials and/or the dielectric loss of dielectric materials to convert EMW energy into thermal energy for dissipation.Among various magnetic materials,Fe_(3)O_(4) plays an irreplaceable role in EMW absorption due to its high saturation magnetization,low cost and compatible dielectric loss in the gigahertz frequency range.Nevertheless,the high density,large matching thickness and narrow absorption bandwidth of Fe_(3)O_(4) pose significant challenges for practical applications.In contrast,one-dimensional(1D)structures not only retain the characteristic properties of lightweight,chemical stability and high dielectric loss,but also exhibit anisotropic structures and large aspect ratios.Additionally,researchers have found that the minimum reflection loss(RL)of hollow carbon materials with mesopores is nearly four times that of non-porous hollow carbon materials and nine times that of dense carbon materials.According to Maxwell's EMW theory,composites consisting of Fe_(3)O_(4) and one-dimensional(1D)mesoporous carbon materials can leverage their respective advantages by optimizing the composition and structure of the composites to balance u,and Er,thereby enhancing EMW absorption performance.Additionally,numerous studies have demonstrated that composites composed of multi-component heterostructures significantly enhance the EAB.This enhancement is primarily ascribed to the numerous interface polarization losses generated by the additional heterostructure interfaces,which also improve the overall impedance matching of the composites.In this study,we leverage the advantages of magnetic/carbon composites,one-dimensional(1D)mesoporous carbon and multi-component heterostructures to prepare a composite of 1D mesoporous carbon-coated manganese oxide(Mn_(3)O_(4) and MnO,denoted as Mn_(x)O_(y))embedded with Fe_(3)0_(4) nanoparticles(Mn_(x)O_(y)/C@Fe_(3)O_(4)).This composite was synthesized and its formation mechanism and microstructure were analyzed in detail.At the same time,the influence of this Mn_(x)O_(y)/C@Fe_(3)O_(4) structure on EMW properties and absorbing performance was further discussed.[Methods]Firstly,MnO_(2) nanowires were synthesized by using a simple hydrothermal method.Then,the MnO_(2) nanowires served as templates for the synthesis of MnO_(2)/PDA@Fe^(3+)composites through the in-situ polymerization of dopamine and Fe^(3+)adsorption.Finally,1D mesoporous carbon-coated manganese oxide composite embedded with Fe_(3)O_(4) nanoparticles(Mn_(x)O_(y)/C@Fe_(3)O_(4))composites were obtained after heat treatment at 550℃ in N_(2).The crystal structure of the samples was analyzed using X-ray diffractometer with Cu Ka irradiation.Scanning electron microscopy(SEM)and high-resolution transmission electron microscopy(TEM)were used to observe microstructure and morphology of the samples.Nitrogen sorption measurements were obtained at 77 K on a Quantachrome surface area and pore size analyzer to measure the specific surface area and pore size distribution.XPS analysis was performed on X-ray photoelectron spectrometer with monochromatic Al Ka radiation.Magnetization curves of the samples were recorded with a Quantum Design physical property measurement system(PPMS-9)at room temperature.The electromagnetic parameters of the Mn_(x)O_(y)/C@Fe_(3)O_(4) composites were measured using an Agilent N5230C network analyzer in the frequency range of 2-18 GHz.For electromagentic testing,the Mn,Oy/C@Fe34 composites and paraffin wax were mixed at 50°C according to the mass ratio of 15 wt.%,20 wt.%and 25 wt.%,and pressed in a special mold to make coaxial rings(inner diameter=3.04 mm,outer diameter-7 mm),which were denoted as S-1,S-2 and S-3,respectively.[Results]SEM images illustrate the preparation process of iD mesoporous carbon-coated manganese oxide embedded with Fe3O4 nanoparticles composites(Mn_(x)O_(y)/C@Fe_(3)O_(4)).Most of the manganese oxide(Mn,Oy)was reduced to granular after heat treatment,while the outer carbon layer remains its 1D morphology and the carbon layer is interspersed with Fe_(3)O_(4) nanoparticles.The diffraction peaks of MnO_(2) nanowires align well with the body-centered tetragonal a-MnO2.For the Mn_(x)O_(y)/C@Fe_(3)O_(4) composites,the signals of α-MnO_(2) disappears,followed by the emergence of Mn_(3)O_(4) and three prominent diffraction peaks for the cubic MnO.In addition,four weak diffraction peaks correspond to the magnetite Fe_(3)O_(4),consistent with the HRTEM results.The corresponding nitrogen adsorption-desorption isotherm and pore size distribution curve are presented to further analyze the mesoporous structure of composite.The surface composition and element valence states of the Mn_(x)O_(y)/C@Fe_(3)O_(4) composite were investigated by using XPS.The polarization relaxation processes were analyzed according to the Debye theory which describes the relationship between e'and e".Besides the polarization loss,the contribution of the conduction loss plays an important role for the overall dielectric loss.The magnetization curve of Mn_(x)O_(y)/C@Fe_(3)O_(4) exhibits typical ferromagnetic behavior.The permittivity parameter(Co),defined as Co=u"(u)^(-2)f^(-1) determine the contribution of eddy current effect to magnetic loss.The tand values are all larger than those of tand,for the three samples,indicating that the loss capacity of Mn_(x)O_(y)/C@Fe_(3)O_(4) composites is mainly derived from the dielectric loss.Although tand,is smaller,it plays an important role in improving the impedance matching of Mn_(x)O_(y)/C@Fe_(3)O_(4) composites.When the filler loading is 15 wt.%,the RL of sample S-1 is about-10.0 dB at the thickness of 1.5 mm with narrow EAB.As the filler loading increased to 20 wt.%,the RL of sample S-2 reached-62.0 dB at a thickness of 2.2 mm and the EAB was 6.4 GHz at a small thickness of 1.7 mm.When the filler loading is further increased to 25 wt.%,the microwave absorption performance of sample S3 decreased significantly with a little region of RL<-10.0 dB at the thickness of 5.0 mm.The values of[Zin/Zol of the three samples at thicknesses of 1.5-5.0 mm were calculated.Due to good impedance matching of S-2,the incident EMW can enter the material and then can be dissipated through dipole polarization loss,interface polarization loss,conduction loss,eddy current loss and natural ferromagnetic resonance loss.[Conclusions]1D Mn_(x)O_(y)/C@Fe_(3)O_(4) was synthesized via a process involving the coating of polydopamine,adsorption of Fe(ll)salts and heat treatment,using MnO_(2) nanowires as templates.The multi-component heterostructure of the Mn_(x)O_(y)/C@Fe_(3)O_(4) composite(Mn_(3)O_(4),MnO,Fe_(3)O_(4),and C)enhances the interfacial interactions between the different phases,providing increased interface polarization loss under the action of an alternating electromagnetic field.The numerous defects and terminal groups in the mesoporous carbon provide abundant dipole polarization centers.Additionally,the presence of mesopores reduces the weight of the material while increasing the multiple scattering losses of the electromagnetic waves within the material.The ID carbon structure in the matrix forms a conductive network between adjacent fibers,facilitating electron migration and transition,thereby enhancing conductive loss.The incorporation of magnetic Fe_(3)O_(4) nanoparticles introduces eddy current loss and natural ferromagnetic resonance loss,thus increasing magnetic loss.Moreover,the synergistic effect between dielectric and magnetic losses improves the impedance matching of the material,leading to excellent EMW absorption performance. 展开更多
关键词 electromagnetic wave absorbing materials impedance matching ultralight broadband
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