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This paper details the design and simulation of a novel low-loss four-bit reconfigurable bandpass filter that integrates microelectromechanical system(MEMS)switches and comb resonators.A T-shaped reconfigurable resonator is reconfigured in a'one resonator,multiple MEMS switches'configuration and used to gate the load capacitances of comb resonators so that a multiple-frequency filtering function is realized within the 7-16 GHz frequency range.In addition,the insertion loss of the filter is less than 1.99 dB,the out-of-band rejection is more than 18.30 dB,and the group delay is less than 0.25 ns.On the other hand,the size of this novel filter is only 4.4 mm×2.5 mm×0.4 mm.Our results indicate that this MEMS reconfigurable filter,which can switch 16 central frequency bands through eight switches,achieves a low insertion loss compared to those of traditional MEMS filters.In addition,the advantages of small size are obtained while achieving high integration.  相似文献   
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为研究个人鞋式导航定位方法,提出了一种基于地磁测向和时间到达差测距的行人航迹推算方法。该方法分为两部分:依靠地磁辅助的航向角检测和依靠时间到达差测距的行人步幅检测。研究结果发现,采用超声波收发阵列可以有效提高两脚间距离检测精度。此外本文分析出该方法的主要误差来源为航向角检测误差,并设计了最小二乘误差补偿算法,补偿前航向角误差约为15.93°,补偿后在0.435°以内。实验通过行人直线、圆形、操场行走测试,结果表明最大定位误差占总行进距离的1.2%。本方法具有广泛的工程应用前景。  相似文献   
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针对弹光调制器(photoelastic modulator,PEM)在超高速全偏振领域的测量问题,研究一种目标频率在100 kHz附近的圆型PEM,由弹光晶体和2个方位角相差45°的压电驱动器组成。通过理论计算弹光晶体谐振频率和压电驱动器振动频率,当二者频率达到一致时,PEM工作在谐振状态,此时PEM的调制效率达到最高。当PEM达到谐振状态并趋于稳定后,调节两压电驱动器驱动电压的幅值与相位,实现纯驻波模式和纯行波模式两种特殊调制,纯驻波模式可实现纯电控制下调制快轴的延迟量和方位角;纯行波模式可实现纯电控制下调制快轴以PEM谐振频率的半频速度高速旋转。最后,利用COMSOL有限元仿真模拟两种调制模式下PEM,验证两种调制状态下的PEM振型及其快轴方向,表明PEM可实现多功能弹光调制,为后续偏振测量提供理论支撑。  相似文献   
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化学气相沉积法生长的单层石墨烯具有卓越的力学、热学和电学特性,成为新一代纳米器件的首选材料。对石墨烯电子特性的理论研究有利于推动纳米器件的发展与应用。本文基于密度泛函理论与非平衡格林函数相结合的方法,系统地研究了石墨烯及石墨烯/氮化硼的电子结构特性。结果表明,在高对称K点,带隙为零。在50~400 K范围内,由于费米面的电声子散射作用,单层石墨烯的迁移率随着温度增加呈现显著下降趋势。此外,通过对不同层间距的石墨烯/氮化硼结构的能带、态密度、电子密度等特性分析,发现随着层间距增加,能带间隙减小,导带与价带间的能量差减小。随着原子个数的增加,石墨烯/氮化硼超胞结构与原胞结构的带隙开度变化规律一致,这对石墨烯基器件的结构设计具有一定的指导意义。  相似文献   
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High precision grating diffraction laser warning system is a photoelectric countermeasure equipment to judge and locate the incoming laser function. In order to improve the positioning accuracy, an improved algorithm for calculating and fitting the calculation parameters of the spot center was proposed. Firstly, the laser spot was preprocessed, and the center coordinates of the connected area were obtained by using the improved connected area marking algorithm and spot center extraction algorithm. Secondly, the azimuth angle and pitch angle were set, the images were collected and the spot center was calculated, and the pixel horizontal and vertical coordinates in x and y direction as well as fitting surfaces of laser parameters were fitted, so as to judge the azimuth angle, pitch angle and wavelength of the incoming laser. Finally, the improved connected area marking algorithm, spot center extraction algorithm and parameter fitting calculation results were compared with the traditional algorithm. The experimental results show that the pitch angle error between the fitting calculation results and the real data is less than 0.4°, and the azimuth angle error is less than 0.2°, which greatly improves the accuracy of laser direction recognition. Copyright ©2022 Journal of Applied Optics. All rights reserved.  相似文献   
6.
Shan-Shan Wang 《中国物理 B》2021,30(11):118501-118501
Design and simulation results of a novel multifunctional electronic calibration kit based on microelectromechanical system (MEMS) single-pole double-throw (SPDT) switches are presented in this paper. The short-open-load-through (SOLT) calibration states can be completed simultaneously by using the MEMS electronic calibration, and the electronic calibrator can be reused 106 times. The simulation results show that this novel electronic calibration can be used in a frequency range of 0.1 GHz-20 GHz, the return loss is less than 0.18 dB and 0.035 dB in short-circuit and open-circuit states, respectively, and the insertion loss in through (thru) state is less than 0.27 dB. On the other hand, the size of this novel calibration kit is only 6 mm×2.8 mm×0.8 mm. Our results demonstrate that the calibrator with integrated radio-frequency microelectromechanical system (RF MEMS) switches can not only provide reduced size, loss, and calibration cost compared with traditional calibration kit but also improves the calibration accuracy and efficiency. It has great potential applications in millimeter-wave measurement and testing technologies, such as device testing, vector network analyzers, and RF probe stations.  相似文献   
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Traditional speckle fringe patterns of electronic speckle pattern interferometry (ESPI) are obtained by adding, subtracting, or multiplying the speckle patterns recorded before and after the deformation. However, these speckle fringe patterns are of limited visibility, especially for addition and multiplication fringe patterns. We propose a novel method to obtain speckle fringe patterns of ESPI from undeformed and deformed speckle patterns. The fringe pattern generated by our method is of high contrast and has better quality than subtraction fringe. The new method is simple and does not require more computational effort. The proposed method is tested on the experimentally obtained undeformed and deformed speckle patterns. The experimental results illustrate the performance of this approach.  相似文献   
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激光告警系统通过提取来袭激光的相关参数进行告警定位,其角度定位精度直接与战场生存能力相关。为了有效提高激光告警系统的角度定位精度,基于光栅衍射型激光告警原理,提出一种高精度测量来袭激光参数的算法。对激光告警系统进行标定,用高斯拟合法精确提取出衍射光斑标定图片的0级光斑中心,将来袭激光角度与对应角度的光斑中心进行拟合,根据拟合结果确定任意角度的光斑衍射图像对应的来袭激光角度参数。实验结果表明,方位角测量误差优于0.29°,俯仰角测量误差优于0.38°。该算法有效提高了激光告警系统的测算精度。  相似文献   
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