黑色午夜,欧美午夜理伦三级在线观看,电家庭影院午夜亚洲欧洲精品久久日韩不卡在线视频_欧美一区二区三区

2024

2024

  • Record 301 of

    Title:An analysis method for structures of ring-shaped resonators with heterogeneous materials
    Author Full Names:Pei, Yongle(1); Xu, Liang(1); Huang, Wei(1); Gao, Limin(1); Li, Luxian(2); Yuan, Xiaobin(1)
    Source Title:Zhongguo Guanxing Jishu Xuebao/Journal of Chinese Inertial Technology
    Language:Chinese
    Document Type:Journal article (JA)
    Abstract:Based on the theory of homogeneous elasticity, the traditional method for analyzing the structural characteristics of a ring-shaped resonators cannot accurately describe the influence of the mechanical properties of heterogeneous materials on the static and dynamic performance of resonators. According to the Euler beam theory of circular curved structures, a method for analyzing the structural properties of ring-shaped resonators with heterogeneous materials is established, utilizing the constitutive relationships of heterogeneous materials and Hamilton principle. With the theory above and Bubnov-Galerkin method, theoretical solutions are derived for the static bending and dynamic rotating problems. Then, the influence of heterogeneous mechanical properties is analyzed for the bending deflection, second-order bending angular frequency and precession coefficient. The performance analysis results of typical heterogeneous materials show that the traditional method has an error of over 59% in calculating the second-order bending angular frequency, while the proposed method can accurately predict the static and dynamic responses of structures of heterogeneous resonators and calculate the second-order bending angular frequency. ? 2024 Editorial Department of Journal of Chinese Inertial Technology. All rights reserved.
    Affiliations:(1) Xi'an Institute of Optics and Precision Mechanics, CAS, Xi’an; 710119, China; (2) State Key Laboratory for Strength and Vibration of Mechanical Structures, Shaanxi Key Laboratory of Environment and Control for Flight Vehicle, School of Aerospace Engineering, Xi’an Jiaotong University, Xi’an; 710049, China
    Publication Year:2024
    Volume:32
    Issue:8
    Start Page:821-827
    DOI Link:10.13695/j.cnki.12-1222/o3.2024.08.010
    數(shù)據(jù)庫ID(收錄號):20244017128640
  • Record 302 of

    Title:Single line of sight frame camera based on the RadOptic effect of ultrafast semiconductor detector
    Author Full Names:Liu, Yiheng(1,2,3); He, Kai(1); Yan, Xin(1); Gao, Guilong(1); Du, Wanyi(1); Shang, Yang(1); Wang, Gang(1); Wang, Tao(1); Zhang, Jun(4); Tian, Jinshou(1,3); Tan, Xiaobo(4)
    Source Title:Optics and Lasers in Engineering
    Language:English
    Document Type:Journal article (JA)
    Abstract:A new optical beam splitting method is proposed, based on which the optical frame camera capable of capturing multiple frames in a single exposure is designed and experimentally verified. The operation of the frame camera is based on an ultra-fast response semiconductor detector. It is equipped with an optical beam splitter and an optical imaging module. The ultrafast semiconductor detector receives an optical pulse that produces a transient refractive index change, and ultrafast physical processes are recorded by diffracting the probe laser through the transient phase grating. The interaction of an X-ray pulse with a semiconductor detector to produce a phase grating is simulated, based on the Monte Carlo method. The optical beam splitting mode separates a laser into two optical pulses with a certain time difference in the direction of polarization perpendicular to each other. The imaging module filters the diffracted probe laser in the spectral plane and then images multiple frames. The frame camera was used to record the temporal and spatial distribution characteristics of femtosecond laser pulses with a temporal resolution of 4.1 ps. This frame camera has great potential and value for applying to experimental studies of inertial confinement fusion. ? 2024 Elsevier Ltd
    Affiliations:(1) Key Laboratory of Ultra-fast photoelectric Diagnostics Technology, Xi'an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xi'an; 710119, China; (2) University of Chinese Academy of Sciences, Beijing; 100049, China; (3) Collaborative Innovation Center of Extreme Optics, Shanxi University, Taiyuan; 030006, China; (4) College of Electronic Science, National University of Defense Technology, Hunan, Changsha; 410073, China
    Publication Year:2024
    Volume:175
    Article Number:108029
    DOI Link:10.1016/j.optlaseng.2024.108029
    數(shù)據(jù)庫ID(收錄號):20240315382269
  • Record 303 of

    Title:Circularly polarized RABBITT applied to a Rabi-cycling atom
    Author Full Names:Liao, Yijie(1); Olofsson, Edvin(2); Dahlstr?m, Jan Marcus(2); Pi, Liang-Wen(3); Zhou, Yueming(1); Lu, Peixiang(1,4)
    Source Title:Physical Review A
    Language:English
    Document Type:Journal article (JA)
    Abstract:We utilize the reconstruction of attosecond beating by interference of two-photon transitions (RABBITT) technique to study the phase of a Rabi-cycling atom using circularly polarized extreme ultraviolet and infrared fields, where the infrared field induces Rabi oscillations between the 2s and 2p states of lithium. Autler-Townes splittings are observed in sidebands of the photoelectron spectra and the relative phases of outgoing electron wave packets are retrieved from the azimuthal angle. In this RABBITT scheme, more ionization pathways beyond the usual two-photon pathways are required. Our results show that the polar-angle-integrated and polar-angle-resolved RABBITT phases have different behaviors when the extreme ultraviolet and infrared fields have co- and counter-rotating circular polarizations, which are traced back to the different ionization channels according to the selection rules in these two cases and their competition relying on the propensity rule in laser-assisted photoionization. ? 2024 American Physical Society.
    Affiliations:(1) School of Physics, Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, Wuhan; 430074, China; (2) Department of Physics, Lund University, Box 118, Lund; SE-221 00, Sweden; (3) Center for Attosecond Science and Technology, Xi'An Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xi'an; 710119, China; (4) Optics Valley Laboratory, Hubei; 430074, China
    Publication Year:2024
    Volume:109
    Issue:4
    Article Number:043104
    DOI Link:10.1103/PhysRevA.109.043104
    數(shù)據(jù)庫ID(收錄號):20241515854295
  • Record 304 of

    Title:Designing ultra-broadband terahertz polarization converters based on the transformer model
    Author Full Names:Mao, Bingxuan(1); Chang, Honghao(2); Xing, Xiaohua(1); Zhang, Qiankun(1); Zou, Die(1); Liu, Yin(1); Yao, Jianquan(1); Bi, Haixia(2); Wu, Liang(1)
    Source Title:Optics Communications
    Language:English
    Document Type:Journal article (JA)
    Abstract:Polarization, a fundamental property of terahertz (THz) waves, can be controlled using metasurfaces for signal transmission and sensitive measurements. However, conventional methods for designing polarization-conversion metasurfaces require numerous numerical simulation iterations and trial and error attempts that are computationally intensive and time-consuming, necessitating a more rapid and efficient approach. This study proposes a transformer-based method for the inverse design of terahertz polarization converters; the approach can accurately design the corresponding metasurface based on the target spectrum. The model also comprises a forward network that can precisely and intuitively predict the meta-atoms spectra with high simulation speed and reduced computational cost. Using this approach, two ultra-broadband polarization conversion devices were designed in approximately 0.006 s within a target frequency range of 0.5–4 THz, with polarization conversion ratios greater than 90% within 1.23–3.19 THz and 1.18–3.24 THz. Additionally, the average cross-polarization ratio was greater than 50%. This study provides insights into designing terahertz polarization converters, which are applicable in terahertz communications, polarization imaging, and biomedical procedures. ? 2024 Elsevier B.V.
    Affiliations:(1) College of Precision Instrument and Optoelectronics Engineering, Tianjin University, Key Laboratory of Optoelectronics Information and Technology (Ministry of Education), Tianjin; 300072, China; (2) School of Information and Communications Engineering, Xian Jiaotong University, Xi'an; 710049, China
    Publication Year:2024
    Volume:559
    Article Number:130434
    DOI Link:10.1016/j.optcom.2024.130434
    數(shù)據(jù)庫ID(收錄號):20241215767061
  • Record 305 of

    Title:Underwater Single-Photon Profiling under Turbulence and High Attenuation Environment
    Author Full Names:Wang, Jie(1,2,3); Hao, Wei(1,3); Chen, Songmao(1,3); Xie, Meilin(1,3); Li, Xiangyu(4); Shi, Heng(2,4); Feng, Xubin(1); Su, Xiuqin(1,2,3)
    Source Title:IEEE Geoscience and Remote Sensing Letters
    Language:English
    Document Type:Journal article (JA)
    Abstract:Underwater single-photon imaging is challenging, as the transmitting path presents turbulence and strong backscattering noise; both facts degrade the image, thus hindering its applications in real world. However, current studies on underwater single-photon modeling have generally overlooked the potential impact of water turbulence on imaging performance. This oversight may result in an inaccurate characterization of the optical propagation process in realistic imaging environment. This letter proposed a joint denoising and deblurring method with regularization by denoising (JDD-RED) for underwater single-photon image that include the modeling of turbulence and the tailored restoration model, improving the performance by considering blurring mechanism, as well as advanced signal processing method. This method is validated on numerical experiments by employing joint deblurring and denoising tasks. Compared with the PICK-3-D algorithm, the JDD-RED reconstruction results demonstrate that more detailed information can be retained while denoising. In addition, the results show an average improvement of 1.48 dB in peak signal-to-noise ratio (PSNR) and 60% in structural similarity (SSIM), proving the superior performance of the JDD-RED algorithm. ? 2004-2012 IEEE.
    Affiliations:(1) Xi'an Institute of Optics and Precision Mechanics, Key Laboratory of Space Precision Measurement Technology and the Center for Shared Technologies and Facilities, Chinese Academy of Sciences, Xi'an; 710119, China; (2) University of Chinese Academy of Sciences, School of Optoelectronics, Beijing; 100049, China; (3) Pilot National Laboratory for Marine Science and Technology (Qingdao), Qingdao; 266200, China; (4) Xi'an Institute of Optics and Precision Mechanics, Key Laboratory of Space Precision Measurement Technology, Chinese Academy of Sciences, Xi'an; 710119, China
    Publication Year:2024
    Volume:21
    Article Number:6501605
    DOI Link:10.1109/LGRS.2024.3432931
    數(shù)據(jù)庫ID(收錄號):20243116773778
  • Record 306 of

    Title:Dynamic Range Study of Microchannel Plate Photomultiplier Tubes under Visible Light Pulse Input
    Author Full Names:Wei, Jianan(1,2); Liu, Hulin(2); Chen, Ping(2,3); Li, Yang(4); Li, Kuinian(2); Wei, Yonglin(2); He, Luanxuan(1,2); Zhao, Xinnan(1,2); Sai, Xiaofeng(2); Liu, Deng(5); Tian, Jinshou(2,3); Zhao, Wei(2,3)
    Source Title:Guangzi Xuebao/Acta Photonica Sinica
    Language:Chinese
    Document Type:Journal article (JA)
    Abstract:Microchannel Plate Photomultiplier Tube(MCP-PMT),as a high-performance photodetector,has been widely used in various detection experiments in recent years. In previous studies,people mainly focused on improving the sensitivity and temporal resolution of optoelectronic detection devices,while ignoring the key factor of high linearity. With the continuous development of the demand for large dynamic detection,in-depth research and development of MCP-PMT with large dynamic range has become an urgent need for current research.The dynamic range of MCP-PMT is related to many factors,such as the intensity and frequency of input visible light,the material of the microchannel board,and the voltage values applied to each part of MCP-PMT. This article mainly starts from two aspects:the input light pulse frequency and the potential difference applied by the backend of MCP-PMT,and delves into the reasons why the output electrons of MCP-PMT deviate from normal linear multiplication. By combining theoretical analysis and experimental testing,the influence of the repetition frequency of pulse light signals and the potential difference between the second microchannel plate and the anode on the dynamic range of MCP-PMT was studied in detail. When the input light pulse width is 50 ns and the repetition frequency is 500 Hz,the maximum linear output of the anode can reach 2 V(i.e. 40 mA);when the repetition frequency increases to 1 000 Hz,the linear deviation degree reaches more than 10% when the anode output is 1 V(i. e. 20 mA);when the input light frequency further increases to 5 000 Hz and the anode output reaches 0.3 V(i. e. 6 mA),the degree of linear deviation has reached about 15%. As the electric potential difference between the second microchannel plate and the anode increases,the maximum linear output voltage of the anode shows fluctuating changes. When the electric potential difference between the second microchannel plate and the anode is around 200 V,the linear output voltage of the anode reaches its peak. As the electric potential difference increases,the linear output voltage of the anode begins to fluctuate,reaching the second peak at a electric potential difference of around 500 V. In this article,we investigated the influence of the frequency of pulse input light and the electric potential difference between the second microchannel plate and the anode on the dynamic range of MCP-PMT,and obtained two conclusions through experimental verification:1)As the pulse input frequency increases,the output voltage of MCP-PMT will detach from the linear region earlier. 2)As the potential difference between MCP2 and the anode increases,the maximum linear output voltage of MCP-PMT does not simply vary monotonically,but exhibits a constantly fluctuating trend in resistance. On this basis,further exploration was conducted on the factors that constrain the dynamic range of MCP-PMT,namely insufficient wall charge supplementation and interference from space charge effects. When the frequency of the input pulse is high,the constraint on the dynamic range of MCP-PMT is mainly related to the former;when the electric potential difference between the second microchannel plate and the anode increases,due to the complex situation of a large number of secondary electrons transferring between the plates to the anode,the dynamic range will be affected by the space charge effect and cannot be directly proportional to the electric field strength. ? 2024 Chinese Optical Society. All rights reserved.
    Affiliations:(1) University of Chinese Academy of Sciences, Beijing; 100049, China; (2) Key Laboratory of Ultra-fast Photoelectric Diagnostics Technology, Xi'an Institute of Optics and Precision Machinery, Chinese Academy of Sciences, Xi'an; 710119, China; (3) Extreme Optics Collaborative Innovation Center, Shanxi University, Taiyuan; 030006, China; (4) State Key Laboratory of Environmental Simulation and Effects of Intense Pulse Radiation, Northwest Nuclear Technology Research Institute, Xi'an; 710024, China; (5) A Center of Equipment Development Department, Beijing; 100034, China
    Publication Year:2024
    Volume:53
    Issue:2
    Article Number:0204001
    DOI Link:10.3788/gzxb20245302.0204001
    數(shù)據(jù)庫ID(收錄號):20240715561760
  • Record 307 of

    Title:Pakistan's 2022 floods: Spatial distribution, causes and future trends from Sentinel-1 SAR observations
    Author Full Names:Chen, Fang(1,2,3); Zhang, Meimei(1,2); Zhao, Hang(4); Guan, Weigui(1,2,3); Yang, Aqiang(1,2)
    Source Title:Remote Sensing of Environment
    Language:English
    Document Type:Journal article (JA)
    Abstract:Floods are a great threat to Pakistan with increasing concern. As the consequences of increased extreme weather related to climate change, Pakistan experiences severe floods almost every year. This study aims to explore and analysis the actual inundated situation, magnitude, the possible causes of the 2022 devastating floods, and future trends. We presented an enhanced nationwide flood mapping method and compared with other pixel-based image processing techniques including active contours and change detection. These algorithms were applied to Sentinel-1 Ground Range Detected (GRD) Synthetic Aperture Radar (SAR) imagery (10 m spatial resolution) with various land types and inundation scenarios in Pakistan, and were evaluated using other reference flood products. Accuracy evaluation analysis demonstrated that our algorithm has high robustness and accuracy, with the overall accuracy (OA) higher than 0.83 and critical success index (CSI) up to 0.91, and is suitable for automated flood monitoring in near real time. Nearly one-third of the lands were flooded in 2022, and more than half were inundated croplands. Punjab and Sindh provinces were the most severely affected regions, with the proportions of inundated area in 2022 (21.26% and 20.55%) nearly twice of that in 2010 (11.40% and 12.70%), indicating an intensified flooding trend. Analysis of possible influential factors showed that the intense and cumulative rainfall during the monsoon season (June to August) was the major cause of the 2022 flood event. Although the snow melted rapidly in June (the average change in snow depth is ~10 mm), the overall ablation contributed insignificant amount to the flood water. The glacial lake outburst floods (GLOFs) induced by abnormal April–May heatwave provide water flowed into the tributaries of the Indus River, but are difficult to spread for thousands of kilometers from mountains to the plain downstream. The combination of the intrinsic arid climate and extreme floods exacerbate the already severe situation. ? 2024 Elsevier Inc.
    Affiliations:(1) International Research Center of Big Data for Sustainable Development Goals, Beijing; 100094, China; (2) Key Laboratory of Digital Earth Science, Aerospace Information Research Institute, Chinese Academy of Sciences, Beijing; 100094, China; (3) University of Chinese Academy of Sciences, Beijing; 100049, China; (4) Key Laboratory of Spectral Imaging Technology, Xi'an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xi'an; 710119, China
    Publication Year:2024
    Volume:304
    Article Number:114055
    DOI Link:10.1016/j.rse.2024.114055
    數(shù)據(jù)庫ID(收錄號):20240915643476
  • Record 308 of

    Title:Multi-Aperture Joint-Encoding Fourier Ptychography for a Distributed System
    Author Full Names:Wang, Tianyu(1,2); Xiang, Meng(1,2,3); Liu, Fei(2); Liu, Jinpeng(1,2,3); Dong, Xue(1,2,4); Wang, Sen(1,2); Li, Gang(5); Shao, Xiaopeng(1,2)
    Source Title:Remote Sensing
    Language:English
    Document Type:Journal article (JA)
    Abstract:High-resolution infrared remote sensing imaging is critical in planetary exploration, especially under demanding engineering conditions. However, due to diffraction, the spatial resolution of conventional methods is relatively low, and the spatial bandwidth product limits imaging systems’ design. Extensive research has been conducted with the aim of enhancing spatial resolution in remote sensing using a multi-aperture structure, but obtaining high-precision co-phase results using a sub-aperture remains challenging. A new high-resolution imaging method utilizing multi-aperture joint-encoding Fourier ptychography (JEFP) is proposed as a practical means to achieve super-resolution infrared imaging using distributed platforms. We demonstrated that the JEFP approach achieves pixel super-resolution with high efficiency, without requiring subsystems to perform mechanical scanning in space or to have high position accuracy. Our JEFP approach extends the application scope of Fourier ptychographic imaging, especially in distributed platforms for planetary exploration applications. ? 2024 by the authors.
    Affiliations:(1) School of Optoelectronic Engineering, Xidian University, Xi’an; 710071, China; (2) Xi’an Key Laboratory of Computational Imaging, Xi’an; 710071, China; (3) CAS Key Laboratory of Space Precision Measurement Technology, Xi’an; 710119, China; (4) National Key Laboratory of Infrared Detection Technologies, Shanghai; 200083, China; (5) Xian Research Institute of Surveying and Mapping, Xi’an; 710054, China
    Publication Year:2024
    Volume:16
    Issue:6
    Article Number:1017
    DOI Link:10.3390/rs16061017
    數(shù)據(jù)庫ID(收錄號):20241515862188
  • Record 309 of

    Title:Airborne Small Target Detection Method Based on Multimodal and Adaptive Feature Fusion
    Author Full Names:Xu, Shufang(1,2); Chen, Xu(1); Li, Haiwei(3); Liu, Tianci(4); Chen, Zhonghao(1); Gao, Hongmin(1); Zhang, Yiyan(1)
    Source Title:IEEE Transactions on Geoscience and Remote Sensing
    Language:English
    Document Type:Journal article (JA)
    Abstract:The detection of airborne small targets amidst cluttered environments poses significant challenges. Factors such as the susceptibility of a single RGB image to interference from the environment in target detection and the difficulty of retaining small target information in detection necessitate the development of a new method to improve the accuracy and robustness of airborne small target detection. This article proposes a novel approach to achieve this goal by fusing RGB and infrared (IR) images, which is based on the existing fusion strategy with the addition of an attention mechanism. The proposed method employs the YOLO-SA network, which integrates a YOLO model optimized for the downsampling step with an enhanced image set. The fusion strategy employs an early fusion method to retain as much target information as possible for small target detection. To refine the feature extraction process, we introduce the self-adaptive characteristic aggregation fusion (SACAF) module, leveraging spatial and channel attention mechanisms synergistically to focus on crucial feature information. Adaptive weighting ensures effective enhancement of valid features while suppressing irrelevant ones. Experimental results indicate 1.8% and 3.5% improvements in mean average precision (mAP) over the LRAF-Net model and Infusion-Net detection network, respectively. Additionally, ablation studies validate the efficacy of the proposed algorithm's network structure. ? 1980-2012 IEEE.
    Affiliations:(1) Hohai University, College of Information Science and Engineering, Changzhou; 213200, China; (2) Shaanxi Key Laboratory of Optical Remote Sensing and Intelligent Information Processing, Xi'an; 710119, China; (3) Xi'an Institute of Optics and Precision Mechanics, Key Laboratory of Spectral Imaging Technology of CAS, Chinese Academy of Sciences, Xi'an; 710119, China; (4) Hohai University, College of Computer Science and Software Engineering, Nanjing; 211100, China
    Publication Year:2024
    Volume:62
    Article Number:5637215
    DOI Link:10.1109/TGRS.2024.3443856
    數(shù)據(jù)庫ID(收錄號):20243416917605
  • Record 310 of

    Title:Linearly polarized RABBIT beyond the dipole approximation
    Author Full Names:Liao, Yijie(1); Chen, Yongkun(1); Dahlstr?m, Jan Marcus(2); Pi, Liang-Wen(3); Lu, Peixiang(1,4); Zhou, Yueming(1,5)
    Source Title:Physical Review A
    Language:English
    Document Type:Journal article (JA)
    Abstract:We theoretically investigate nondipole effects in the reconstruction of attosecond beating by interference of two-photon transitions (RABBIT) of helium using linearly polarized extreme ultraviolet and infrared fields. By scanning the time delay between the two fields, we observe modulations in sidebands (SBs) both for angular-integrated photoelectron yield and forward-backward asymmetry in photoelectron distribution along the light-propagation direction. The SB modulations of the forward-backward asymmetry reveal Wigner and continuum-continuum time delays of the electron wave packets ionized via nondipole paths, different from the conventional RABBIT where only the dipole paths are involved. Furthermore, the time delays extracted from the forward-backward asymmetry show an abrupt jump as a function of polar emission angle of photoelectrons, due to the competition among continuum partial waves in nondipole laser-assisted photoionization. ? 2024 American Physical Society.
    Affiliations:(1) School of Physics, Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, Wuhan; 430074, China; (2) Department of Physics, Lund University, Box 118, Lund; SE-221 00, Sweden; (3) Center for Attosecond Science and Technology, Xi'An Institute of Optics and Precision Mechanics of the Chinese Academy of Sciences, Xi'an; 710119, China; (4) Optics Valley Laboratory, Hubei; 430074, China; (5) Hubei Optical Fundamental Research Center, Wuhan; 430074, China
    Publication Year:2024
    Volume:110
    Issue:2
    Article Number:023109
    DOI Link:10.1103/PhysRevA.110.023109
    數(shù)據(jù)庫ID(收錄號):20243516927919
  • Record 311 of

    Title:Perturbed three-channel waveform synthesizer for efficient isolated attosecond pulse generation and characterization
    Author Full Names:Dong, Dianhong(1,2,3); Wang, Hushan(1,2,3); Xue, Bing(1,2,3); Imasaka, Kotaro(1); Kanda, Natuski(1); Fu, Yuxi(2,3); Nabekawa, Yasuo(1); Takahashi, Eiji J.(1)
    Source Title:arXiv
    Language:English
    Document Type:Preprint (PP)
    Abstract:The generation of gigawatt-class isolated attosecond pulses (IAPs) is vital for attosecond pump-probe experiments. In such experiments, the temporal duration of IAPs must be determined quickly and accurately. In this study, we developed a perturbed three-channel waveform synthesizer for efficient IAPs generation and characterization at low repetition rates (10 Hz). Intense IAPs centered at photon energies of 60 eV (227 as duration) in Ar and 107 eV (128 as duration) in Ne were generated by the driving field from a three-channel waveform synthesizer and characterized using all-optical frequency-resolved optical gating (AO-FROG), which accelerated the measurement time to several minutes, providing fast feedback for the tunability of the IAP source. The peak power of the IAPs is higher than that reported in the literature. Copyright ? 2024, The Authors. All rights reserved.
    Affiliations:(1) RIKEN Center for Advanced Photonics, RIKEN, 2-1, Hirosawa, Saitama, Wako-shi; 351-0198, Japan; (2) Center for Attosecond Science and Technology, Xi'an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xi’an; 710119, China; (3) University of Chinese Academy of Sciences, Beijing; 100049, China
    Publication Year:2024
    DOI Link:10.48550/arXiv.2412.04043
    數(shù)據(jù)庫ID(收錄號):20250001726
  • Record 312 of

    Title:Dual-biomimetic curved compound-eye camera system for multi-target distance measurement in a large field of view
    Author Full Names:Liu, Yiming(1,2); Xu, Huangrong(1); Zhang, Yuanjie(1,2); Wu, Dengshan(1); Zhou, Xiaojun(1); Meng, Qingyang(1); Wang, Yuanyuan(3); Yu, Weixing(1,2)
    Source Title:Optics Express
    Language:English
    Document Type:Journal article (JA)
    Abstract:Biomimetic curved compound-eye cameras (BCCECs) have attracted great attention for their potential applications in a variety of fields such as target recognition, monitor and three-dimensional localization in military due to their unique optical properties such as large field of view (FOV) and small size. In this work, we proposed a multi-target distance measurement method based on a dual-BCCEC system in a large FOV. To guarantee the precise measurement of the distance of multiple targets, a feature point searching and matching algorithm is developed for the dual-BCCEC system to improve the localizing efficiency of common feature points. In addition, a CALibration Tag (CALTag) self-recognition calibration method is also developed to calibrate ommatidia of the BCCEC with a high efficiency. Based on these two methods, the coordinates of multiple targets with clear feature points can be obtained after the distortion correction in sub-images and thus the distances of multiple targets with clear feature points can be achieved simultaneously with a single compound-eye raw image. The experiment results show that the dual-BCCEC system has a high distant measurement accuracy with an error of less than 6.80% for at least ten different targets in the a working distance ranging from 400 to 600 m in a quite large FOV of 98°×98°. The method demonstrated in this work can pave the way for multi-targets tracking in those related areas with high security monitoring requirements. ? 2024 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreement.
    Affiliations:(1) Key Laboratory of Spectral Imaging Technology of Chinese Academy of Sciences, Xi’an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, No. 17, Xinxi Road, Xian; 710119, China; (2) School of Optoelectronics, University of Chinese Academy of Sciences, Beijing; 100049, China; (3) School of Science, Northwest A & F University, Yangling; 712100, China
    Publication Year:2024
    Volume:32
    Issue:23
    Start Page:41870-41881
    DOI Link:10.1364/OE.535365
    數(shù)據(jù)庫ID(收錄號):20244617373854
五月丁香六月婷婷综合免| 偷拍九九热| 五月激情婷婷播播开心| 亭亭色天香| 成人av在线电影| 婷婷国产五月天17c| 久久综合激情| 超碰在线观看9| 色天天综合成人网| 色色色视频| 久久综合爱| 色五月婷婷五月天激情综合| 色日本综合| 三级片AAA久久久AAA久久久AAA| 91综合国免费久入| 婷婷久久网| 丁香六月婷月91婷月| 国产精品A成V人在线播放| ss五月天激情| 婷婷综合性爱网| 这里只有精品免费视频在线观看| 91丨九色丨熟女丰满| 国产人妻人伦精品一区二区| 丁香综合伊人| 丁香九月婷婷| 97精品欧美91久久久久久久| 激情五月天福利| 中文字幕资源网| 婷婷91| 少妇搡BBBB搡BBB搡毛茸茸 | 最近免费中文字幕大全高清大全1| 丁香 婷婷五月| 日韩精品视频中文字幕| 婷婷五月情| 超碰精品在线| 七月婷婷色香综合网| www.五月天社区| 99热久久日本| 91婷色| 日本妈妈乱| 97超碰免费超级在线观看| 婷婷五月天综合色| 九九人人自拍| 婷婷五月情| 丁香五月网| av五月丁香| 成全影视大全在线观看第6季 | 色私五月婷婷| 五月婷婷综合激情| 五月丁香日逼| www超碰| 丁香成人综合| 美女91一起草| 日本黄 色 片| 91狠狠色| 色丁香五月天婷婷| 久久婷婷激情| 婷婷视频在线| 这里只有精品视频| 久久人妻乱子伦| 国产一级黄色影片,| 久久99热免费最新版| 欧美激情丁香五月| 亚洲无码黄色| 免费看欧美成人A片无码| 狠狠操婷婷| 婷婷伊人综合中文字幕| 河北真实伦对白精彩脏话| 伊人久久五月天综合| 欧美人人女女精品综合五月天| 狠狠色无码| 丁香婷婷久久| 激情五月天婷婷久久久久久久久久久| 乱岳熟女50岁| 狠狠狠人妻| 婷婷五月av| www婷婷色| 成人av在线网| 丁香五月婷婷久久久| 久热在线观看视频9| 丁香五月很很肏| 久久五月情| 婷婷九月在线| 综合色99| 激情五月天之六月婷婷| 伊人五月天婷婷| 丁香五月婷婷手机| 五月丁香色综合| 女人天堂久久| 九九热在线精品视频| 农村熟妇高潮精品A片| 久久色六月| 北条麻妃伊人 | 色综合天堂| 婷婷婷婷色| 香蕉综合网| 五月天另类小说久久小说网| 大香蕉婷婷丁香| 亚洲午夜AV| 六月丁香婷婷亚洲中文玖玖| 丁香美女主播视频在线观看| 日日做A爰片久久毛片A片英语| 久久久久亚洲AV无码网影音先锋| 天天综合网在线| 另类天堂| 婷婷五月综合色中文字幕| 色五月91| 丁香五月天欧美| 五月天激情婷婷久久| 99热综合在线| 亚洲精品又粗又大又爽A片| 99A片| 激情爱爱网站| 夜夜天天久久婷婷| 99热这里只有精品青草| 极品人妻VIDEOSSS人妻| 久久人视频| 成人精品在线| 狠狠久综合| 亚洲V国产V欧美V久久久久久| 97精品综合久久| 久色精品| 伊人91| 99er视频在线| 欧洲亚洲免费视频9| 香蕉AV777XXX色综合一区| 操b视频在线观看一区二区| 五月天久久综合| 色婷婷深爱五月| 亚洲色情网站| 天天日天天爽夜夜爽| 67194线路二在线观看| 人人97碰| 婷婷激情五月综合丁| 色欧美影院| 久久精品国产精品| 91精品91久久久中77777久久玖玖九九 | 丁香激情久久| 日本97在线| 亚洲视频在线观看99| 色婷婷亚洲精品天天综| 五月天综合| 色黄啪啪| 蜜臀A∨在线水帘洞| 婷婷五月天免费视频在线观看| 丁香五月婷婷AV| 看久久性爱视频| 色五月婷婷激情五月| 乱亲女洗澡69XX| 国产精品久久欧美久久一区| 欧美精品A片一区在线观看| 亚洲色五月天是什么| 天天撸天天射| 91re色综合视频| 亚洲xx网| 久热这里只有精品视频6| 色婷婷19| 黄色AAAAAAA| 丁香五月天激情婷婷丁香六月 | 超碰国产在线观看| 九久久九精品视频| 免费视频舔| 婷婷五月情| 99操99| 色婷婷久久综合| 欧美日韩aaaa| 午夜天天精品视频| 色综合网上班开心婷婷久久| 五月丁香婷婷免费视频| 思思干精品| 五月丁香激情五月天| 开心激情婷婷| 久久成人亚洲欧美电影| 丁香五月婷婷姐| 123草逼网| 9 1大香蕉| 婷婷另类开心| 九九色色网| 超91在线视频| 高清无码中文字幕aVDV| 超pen个人视频97| 无码橾| 五月天色婷婷网| 成人精品视频99在线观看免费| 欧美色图天堂网色| 日韩啪啪网| 俺去也五月天婷婷| 不卡在线超碰| 激情婷婷五月天网址| 91爱操| 五月婷免费视频| 婷婷五月天激情综合网| 天天激情站| 五月色婷婷影院| 99久热这里只有精品| 亚洲三A| 青青操avbb| 99在线热| 黑人熟妇一区二区三区| 开心五月深爱五月| 中文字幕欧美精品久久| 五月丁香六月婷婷视频| 色碰97| 一区二区三区四区无码| 国产偷人爽久久久久久老妇APP| 天天射综合网站| 99免费视频| 色很久综合| 天天搞天天色综合| 丁香五月激情综合| 亚洲视频码| m色激情网| 五月婷婷六月天| 丁香五月天天| 九九热这里只有精品6| 99无码超碰| 久久人妻少妇嫩草AV| 亚洲色婷婷激情| 成人无码髙潮喷水A片| 激情文学 综合 色| 丁香五月自拍| 激情五月天婷婷激情| 六月丁香激情网| 成人AV在线电影| www色色com| 婷婷午夜| 99亚州综合精品成人网| 人人干天天舔| 国产国产乱老熟女视频网站97| 操操操www.com| 久久婷婷五月天| 天天爱天天做天天日| 97热视频| 美女被肏网站在线看| 丁香五月停停av| 五月婷婷伊| www夜夜操comwww| 九色视频九色九色91jiuseshipin| 99热精这里只有精品| 六月婷婷毛片| 99久久综合网| 免费日本aⅴ中文字幕 | 97福利视频| 国产亚洲99久久精品| 丁香5月激情网| 91超级碰碰| 婷婷亚洲五| 人妻丰满精品一区二区A片| 这里只有精品亚洲| 国产成人精品一区二三区熟女在线| 激情五月伊人婷婷| 精品亚洲国产成人A片在线鸭王| 久久996re热这里只有精品无码| 天天操夜夜操| 丁香五月欧美激情| 激情九色| 欧美精品999| 99热黄| 五月丁香六月婷婷无码| 久七香蕉| 九九热黄色| 日韩狠狠色婷婷| 91操碰| 丁香五月天天高清在线| 色色色97| 4399成人黄A片| 色色影院aaaav| 中文人妻AV久久人妻18| 激情婷婷丁香色五月| 91日本在线免费| www.婷婷六月天| 日本三级黄色大片| 亚洲V国产V欧美V久久久久久| 丁香六月爱综合| 婷婷五月天性爱视频| 99热日| 婷婷激情五月天网站| 先锋影音av色五月天资源站| 99爱视频在线观看| 婷丁五月| 久久日本wwww色| 大地9中文在线观看免费高清| 99re这里只有精品99| 51avj视频大全| 任你搞网站| 久久人妻久久| 五月天基地| 亚卅毛片| 色噜噜狠狠色综无码久久合欧美| 色欲一区二区三区精品A片| 婷婷99中文字幕| 人人播| 综合五月激情网| 亚洲午夜电影| 98国产精品综合一区二区三区| 五月婷婷开心综合| 思思热天天看| 91碰免费视频| 丁香激情久久| 99愛国产| 99精品国产在热久久 | 九九成人| 激情com| 大香蕉天堂色| 色播五月丁香| 日本人人xxx| 激情九月婷婷| 九九九激情网| 五月婷婷色综图片| 99热精国产这里只有精品| 色玖玖玖| 色五月丁香五月天| 丁香五月天欧美成人| av婷婷丁香| 日本一道久久| 日本不卡五月婷婷丁香| 那里有AV网址| 97婷婷丁香五月天激情图片| 日日夜夜天天| 五月丁香啪啪网| 妻久久久久| 91疯狂操操操操| 成人做爰A片免费看视频| 天堂无码人妻精品AV一区| 亚洲第一色色色色| 97碰人人操| 99网| 人人操97| 深爱激情丁香五月| 人人色性网| 99黄色在线视频精品熟女| 婷婷五月色| 情色婷婷五月天| 五月激情婷婷开心| 开心婷婷五| 97热九九| 伊人五月婷| 91超级碰在线| 综合色99| 99久操| 4438亚洲欧美| 激情五月六月婷婷| 丁香婷婷综合激情五月色| 蜜臀嫩草| 免费色色色| 五月停停999| 丁香狠狠干| 99玖玖免费视频| 婷婷五月亚洲一本在线丁香| 色五月天天| 玖玖99免费视频| 婷婷情色五月| 亚洲国产精品VA在线看黑人| 91色五月| 色综合五月| 久久婷婷五月天综合| 五月色情婷婷开心五月色情| 99自拍视频在线| www.久久婷婷| 婷婷综合在线网| 乱岳熟女50岁| 思思久久99| 操人久久| 五月婷婷激情| 伊人激情影院| 久久成人人妻| 五月丁香色婷婷色| 丁香五月婷婷欧美成人色图| 色欲五月丁香| 草草女人亚洲| 亚州美女| 色99网| 丁香婷婷五月色成人网站| 五月丁香婷婷欧美| 99这里都是精品6| 丁香婷婷啪啪啪| 久久99这里| 色婷婷基地在线| 91色吧网| 极品九九九九九九| 一本狠婷婷综合| 1024欧美看片| 毛片九九九九九九九九18| 亚洲丁香花色| 天天干天天干天天| 五月天激情综合网| 成人免费120分钟啪啪| 综合婷婷| 91精品久久久久久| 91日本在线| 天天色99| 99久久精品国产色欲| 婷婷五月天AV| 五月久视频| 五月天色图| 久久99婷婷| 另类图片色五月| 五月婷精品| 色情丁香五月婷婷精品| 嫩模aV在线| 丁香五月婷婷啪| 91成人视频| 色碰干| 啪啪综合| 久久九色| 先锋五月婷婷丁香草草| 超碰在线人妻| 色久女| 97碰碰视频在线观看免费| WWW.99视频| 影音先锋毛片网站| 另类精品视频在线观看| 久久新地址| 六月婷婷激情图片| 97色碰| 婷婷丁香六月五月天| 秋霞电影一级黄| 天天干夜夜操A片| 这里只有精品99视频| 丁香五月婷婷综合视频| 婷色成人| 婷婷激情网五月天| 人人做人人看人人摸| 成人综合AV| 五月天丁香综合| 色情五月婷婷| 婷婷久久夜| 国产一级婬片毛片| 婷婷五月天电影区小说区| 开心网五月色婷婷| 97五月久久丁香婷婷| 六月丁香综合| 五月天成人在线视频网站| 亚洲熟妇AV乱码在线观看 | 97在线刺激| 成人AV在线电影| 成人做爰黄A片免费看直播室男男| 亚洲愉拍99热成人精品| 秋霞少妇AV网站| 99玖玖视频| 久热黄色| 天天肏屄夜夜爽| 五月天自拍网| www激情五月天| 这里只有精品无码| www.色99| 婷婷五月天综合亚洲| 亚洲欧洲小视频9| 91成人看片| 99久久精彩视频。| 久久人人人人妻| 无人精品在线视频| 久久精典| 激情五月婷婷| 色啪网| 亚洲乱码日产精品BD| 伊人大香蕉爱聚| 色色五月婷婷久久| 另类五月婷婷| 人妻VideOssS人妻高清| 97色啪| 免费无码毛片一区二区A片| 依人大香蕉| 久久日九九| 丁香综合婷婷开心激情网| 秋霞网在线观看理论91| 五月天综合视频| 日本色色图| 婷婷99综合| 久婷婷五月综合欧美| 这里只有精品偷拍| 人人操人人爱丁香五月| 久久婷狠狠色| 色www久视频| 国产精品国产| 做爱夜夜干天天操| 婷婷六月丁香欧美视频在线| 亚洲操逼片| 岛国在线观看91| 欧美天堂久久| 五月婷婷综合色啪首页| 成人免费在线电影| 五月婷婷爽爽爽| 色五月婷婷91| 久久A热| 女主播扒开屁股给粉丝看尿口| 久久精品亚洲一级牲爱综合 | 九九综合色综合| 麻豆WWWCOM内射软件| 久久婷婷草| 亚洲视频a| 99在线小视频| 99精品偷自拍| 91互操| 亚洲天堂AAA| 久久婷婷五月综合啪| 国产真人做爰视频免费| 色婷婷综合综合网| 婷婷五月天视频小说| 色五月婷婷内射| 欧美 色婷婷| 久 久9 9 热 视 频| 五月丁香婷婷福利| 激情综合色婷婷啪啪六月天| 综合久久丁香婷婷,五月婷婷六月丁香,开心激情综合网,六月丁香在线观看,婷婷丁 | 亚洲精品视频电影| 三级成人网站| 久久久18| 日韩激情婷婷五月天| 色偷偷人人| 日曰躁夜夜躁2026| 99热| www超碰| 国产日韩欧美性生活| jizzdr| 日韩无码专区| 丁香九月婷婷综合| 婷婷狠狠操| 日韩黄在免| 色色色五月婷婷| 激情五月天婷婷在线网址发给我| 成人看片网站| 丁香色五月直播| 欧美色性色好| 九九热123| 久久网站免费亚洲| 久久99综合网| 99视频在线看| 色丁香婷婷美女视频网站| 午夜九九九九九九九九九九九九九| 影音先锋男人站,影音先锋男人色资源网,影音先锋AV最新资源站,影音先锋AV资源 | 97婷婷狠狠| 亚洲色情在线| 99re在线观看| 少妇丁香婷婷 | 久久五月丁香| 91碰碰碰| AV成人在线播放| 国产操逼视频网站| WWW激情五月天| 色色色色色色网| 生活片五区| 精品久久久人妻| 性爱激情五月| 伊人超碰| 无码成人AAAAA毛片AI换脸 | 丁香婷婷五月人体| 五月婷婷激清网| 中字幕视频在线永久在线观看免费| 色色五月丁香婷婷| 久色五月丁香视频| 91精品久| 夜夜操激情| 婷婷五月天天| 逼逼AV| 免看黄大片AA | 亚洲日韩国产黑丝黑丝AVAV一区二区三区| 午夜婷婷久久| 久色激情| 女人天堂AV| 丁香色五月AV在线| 婷婷五月花丁香| 亚洲AV日韩在线观看| 涩涩五| 国产精品成人AV在线观看春天 | 图片区 小说区 区 亚洲五月| 九九av| 在线播放中文字幕| 激情五月婷婷综合| 五月天激情影院| 99视频久久| 亚洲综合无码| PORNY九色9l自拍视频成人| 国产乱子轮XXX农村| 久热丁香| 暗卫含着她的乳尖H御书屋| 婷婷五月六月丁香| 五月天成人综合| 九九九九九九热| 桔色成人官方网站| 苗黎美女四级成人版一级二级毛片| 一區四區歐美日韓| 97天堂| 天天舔夜夜操www com| 99亚洲视频| 婷婷色综合| 九九黄色网| 欧美婷婷| www,天天干| 丁香婷最新动态| 亚洲精品大片| 五月色亭丁香| AA片在线观看视频在线播放| 天天看片日日夜夜| 狠狠色噜噜狠狠狠狠综合| WWW色五月天| 久久精品99| 五月婷婷co.m| 国产XXXX搡XXXXX搡麻豆| 99re这里只有精品免费| 五月天婷婷色| 五月天 另类图片| 一级性感毛片| 欧美成人日韩| 丁香六月开心| 无码成人AAAAA毛片AI换脸| 69午夜成人影片| 97luluse| 99热这里只有精品18| 免费看片在线观看| 国产成人精品一区二三区熟女在线| 综合激情在线| 婷婷狠狠干| 综合在线丁香五月| 丁香五月欧美婷婷| 强伦人妻BD在线电影| 婷婷丁香五另类网站| 亚洲国产成人在线| 亚洲99激情| 久久精品无码一区| 日韩AV大全| 六月婷婷久久| 泰州成人视频| 色婷五月| av无码电影| 99性视频| 激情五月综合色婷婷| 久久婷五月天| 综合色五月| 久久五月天视频| 五月天综合色| 日日艹思思热| 九色91视频| 五月天六月色| 五月丁香六月香综合激情| 97久操视频| 婷婷中文字幕| 亚州AV超碰人人操| 69人妻人人澡人人爽久久| 婷婷五月丁香综合| 六月婷婷网站| 极品另类| 99热这里只有精品5| 亚洲人人操BD| 久久99久久99精品免观看粉| 日本乱子人伦在线视频| 青草激情在线| 中文精品在| 狠狠精品干练久久久无码中文字幕| 激情五月天激情综合网| 国产成人av在线| 天天日天天久久青青| 五月丁香六月激情综合| 91操色| 色色丁香五月天社区| 色五月婷婷综合| 亚洲精品国产精品乱码不99| 九九色播五月丁香| 精品一二三区久久AAA片| 五月丁香六月激情欧美综合| 婷婷月五天在线在线看| 丁香五月天91| 久久久com| 久久成人人妻| 九九热a| 白度黄视频| 五月丁香| 丁香六月情| 婷婷激情五月天网站| 日韩婷久| 久久只有18视频| 噜噜色噜噜网| 激情婷婷| 99国产欧美视频| 91九色精品熟女内射| www,婷婷| 天天操夜夜啊| 大香蕉人人人| 欧美日本韩国亚洲| 国产精品人成A片一区二区| 天天插轮理| 婷婷性爱网| 欧州婷婷五月天综合| 91久久五月天| 久热播这里只有精品| 狠狠操综合| 东北熟女高潮99综合99| 久久丁香五月| 六月伊人| 中文字幕性爱丰满| 99热 这里只有精品 国产 日韩| 五月黄色婷婷| 国产亚洲精品久久一区二区三区| 国产特级毛片AAAAAAA高清| 视频这里只有精品16| 五月婷婷色播| 97偷拍对白视频| 欧美激情VA永久在线播放| 日韩欧美猛交XXXXX无码| 久久这里有精品99| 蜜臀丁香黄色婷婷五月天| 97AV人人插人人操| 国产全是老熟女太爽了| 久久婷婷色综合| 丁香涩涩爱| 干亚洲天堂| 色色色9 9 9| 激情AV网| 思思精品视频| 另类激情五月| 五月婷激情| 九九草热在线观看| 国产激情综合| 五月丁香久久综合色| 国产XXXX搡XXXXX搡麻豆| 久色网址| 97色婷婷| 五月色天情| 亚洲久久婷婷丁香五月天| 伊人久久婷婷| 4399在线观看免费高清黄色视频| 99视频日韩| 大香蕉手机视频| 五月婷婷av| 激情人妻综合| 婷婷十月激情综合网| 思思热在线精品视频网站| 丁香婷婷综合激情五月色,开心五月丁香花综合网,激情综合五月亚洲婷婷,五月天 | 天色综合网站| 深爱五月激情网| 日本超碰在线| 9久久AV| 午夜激情久久| 天堂久久久久天堂网| 国产毛片精品一区二区色欲黄A片| 色婷婷综合网| 97干97色| aaa久久| 亚洲色五月婷婷| 天天色综合网吨吧| 婷婷激情丁五月| 五月伊人视频在线看| 亚洲 日韩色色| 伊人五月天综合网| 成人精品在线观看| 久久ww| 草草操操| 国产 亚洲 在线| 婷久久| 色婷婷五月色| 国产免费一区二区三州老师F1F1| 天天色99| 99久热精品在线| 九九99热精品| 激情五月婷婷| 天天色视频| 婷婷五月天激情文学| 九九热自拍| 亚洲免费av在线| 中文字幕丰满人妻无码专区| 伊人五月婷婷国产视频| 99啪啪网| 五月婷六月| 人人综合久| 爆乳熟妇一区二区三区爆乳照片| 久久九九网| 日韩成人网址| 26uuu视频欧美| 色婷婷影视| 色综合网上班开心婷婷久久| 日良久久| 五月丁香大香蕉| 精品视频这里只有精品| 天天搞夜夜叫| 丁香五月婷婷成人色区| 亚洲AV无码久久精品色欲| 79成人网| 大陆肏屄视频| 日日夜夜天天综合| 日本色爽| 情色婷婷五月天| 九月婷婷久久| 五月天成人综合| 专区无日本视频高清8| 国产AV一区二区三区日韩| 超碰在线caop| 亚洲正能量欧美| 91五月花丁香| 成人AV网站在线| 91精品91久久久中77777久久玖玖九九| 91精品久久久久久| 六月丁香成人| 欧美婷| 俺去啦综合网| 色色色色色网| 丁香五月综合激情啪啪| 日本一级一级一级一级| 欧美日本韩国亚洲| 亚洲丁香五冃97色| 免费看片在线观看| 婷婷涩涩五月天| 快乐激情五月色婷婷| 六月丁香婷婷亚洲中文玖玖| 伊人久久五月天| 天天爱天天狠天天透| 成人五月天丁香| 99性色| 97色婷婷| 91精品啪| 激情九月婷婷| 五月丁香少妇网| 九九色综合视频| 久久999久久999久久999久久| 超碰在线人妻| 超碰9799| 91婷婷五月丁香碰| 丁香久久| 91/九色黑人| 99a级片| 五月丁香激情综合啪| 五月丁香在线偷拍视频| 狠狠操狠狠操AV| 色色五月天丁香| 亚洲精品久久久久久久久久飞鱼| 免费成人中文字幕| 丁香婷婷大香蕉| 五月伊人视频在线看| 激情宗合网激情五月天| 色五月激情五月| 超碰chaompinm| 日本欧美成人片AAAA| 婷婷色五月大香蕉在线观看| 久久精品性爱视频,| 狠狠五月天婷婷激情网。| 人人摸人人| 丁香婷婷影院| 国产av第一专区| 五月丁香激情四射| 色插综合网| 久久激情五月| 久久只有18视频| 久热re视频在线观看网站| 91丨九色丨熟女丰满| 欧美色色色色色色色色色色影视| 婷婷色五月色妇| 无套内谢少妇毛片A片樱花| 99热这里只有精品免费| 丁香五月天婷婷激情| AAA久久| 91丨九色丨首页| 九九精品99| 色了色综合| 99久久五月婷婷| 人妻丰满精品一区二区A片| 91久久人人操| 久久机热这里只有精品免费视频| 激情宗合网激情五月天| 男人天堂99| 91re色综合视频| 天堂A∨在线| 日韩人妻操逼视频| 激情九月婷婷| 97sese婷婷| 五月丁香爱婷婷深深| 99热免| 婷婷五月天堂| 丁香五月天婷婷91| 色亚洲无码| 深爱婷婷丁香五月激情| 天天爽天天干| 色很久综合| 国产精品五月丁香| 性无码专区无码| www,黄色在线,con| 久热9| 日本色色视频| 99精品偷自拍| 五月婷婷激情| 天天舔天天| 久9久9久9久9久9久9| 91怕怕网| 婷婷五月丁香高清无码| 久热69| 天堂va久久久噜噜噜久久Va| 五月激情日本在线| 成全二人世界免费观看完整版| 99色综合| 99自拍视频| 九九热在线精品视频| 农村熟妇高潮精品A片| 丁香激情网| 99精品免费欧美小视频 | 91狠狠综合久久久| 久热黄色| 五月天综合婷婷| 久草五月| 色久婷婷五月| 午夜婷婷久久| 九色1区视频在线| 五月丁香少妇A| 无码啪啪| 第四色大香蕉| 九九九九这里只有精品| 在线18av | 99热啪啪| 亚洲精品在线视频| 99视频在线看| 久久机只有这里精品| 精品乱码久久久久| 激情六月婷婷| 99色精品| 99碰碰。| 天天噜天天爱| 欧美人妻一区二区| 97AV在线视频| 无码99| #NAME?| 狠狠操狠狠狠| 激情五月天视频| 久久婷婷五月综合色奶水99啪| 色五月色五天免费视频| 丁香五月激情图片婷婷 | 99亚洲精品视频| 色色综合网络| 色播jjjj| 狠狠色激情在线| 婷婷伊人网| 亚洲无码另类| 九九干视频| 婷婷久久影院| 婷婷开心激情| 超碰无码老师| 91精品国产综合久久密臀 | 女人野外做爰A片妓女| 久久亭亭电影| 五月婷婷九月婷婷九月婷婷| 色五月婷婷久久| 99久在线观看| av在线免费网站| 99精品高潮| 国产密乳av一区二区三区四区| 色婷婷五月丁香色| 五月丁香六月花| 婷婷性爱| 婷婷五月天影视| 韩国真做片在线观看| 五月丁香色婷婷伊人| 婷婷激情五月| 久久久这里都是精品| 婷婷综合久久| 天天综合网、天天综合色| 色婷操逼| 99热偷拍| 97综合在线| 337p大胆噜噜噜噜噜91Av| www.91婷婷| 色热久| 超碰人人超碰| 色丁香五月婷婷| 97中文在线| 这里只有精品免费在线视频| 大香蕉九九| 激情五月天婷婷直播| 啪啪啪综合网| 只有精品视频在线观看| 97色碰| 婷婷五月天激情网址| 人人摸人人摸| 亚洲视频在线观看99| 97精品人人A片免费看| 2020久久婷婷五月| 激情网 久久| 丁香婷婷久久综合在线| 婷婷伊人五月天| 开心五月激情婷婷| 97碰操| 狠狠综合网| 色五月婷婷自拍| 99热| 操操人人| 五月激情婷婷丁香| 玖玖在线资源视频| 国产成人精品一区二区三区视频 | 亚洲综合色丁香婷婷六月| 《亚洲操B久久免费在线观看,亚洲操B久久在线播放》在线播放 - 高清资源 - 97 | 99色精品| 国产六月婷婷| 香港九九六区八区99| www激情婷婷com| 99综合成人视频在线观看| A片试看50分钟做受视频| 五月婷婷中文字幕| 五月丁香婷婷色| 婷婷5月色| 五月婷三级片| 五月天网站亭亭| 青青草轻轻操| 99热超碰在线| 管管補管管紱| 丁香99| 最近在线更新8中文字幕免费| 97黑人精品区| www.99久| 丁香伊人激情| 五月天丁香婷婷视频网址| 色婷婷久久综合中文久久一本| 在线观看av网站| se99视频| 深爱激情久久| 色99免费视频中文| 亚洲最大激情无码| 99精品自拍| 99在线精品免费视频| 国产色五月| 99人人干人人| 日韩成人中文字幕| 综合网激情五月天| 97操男人的天堂| 日韩av在线电影| 九九成人高清视频| 国产首页在线| 性热视频99精品| 青青操绿aaa一区日v| 日碰日| 欧美丁香五月| 久久激情综合| 色色丁香婷婷五月天| 丁香花在线电影小说观看| 可以免费观看的av网址| 久久五月婷综合| 天天操天天操天天操天天操天天操天天操天天操天天操天天操 | 亚洲12p| 婷婷五月丁香综合激情| 99超级碰免费视频| 日本无码专区| 九九视频在线观看视频6| 欧美性爱五月天| 天堂美国久久| 婷婷五月综激情| 涩涩五| 日本久草福利| 无码激情AAAAA片-区区| 丁香婷婷色五月| 色婷婷基地| 婷婷五月欧美| 婷婷六月色| 99热99re6国产在线播放| 九九热中文| 婷婷丁香无码专区| 粉嫩av懂色av蜜臀av熟妇| 激情二色月| 久久婷视频| 国产亚洲精品久久久久久郑州| 婷婷五月天开心网| 五月伊人综合| 丁香花五月天社区| 日韩无码色色| 婷婷五月天成人综合网| 天天久久狠狠色综合| av婷婷六月丁香社区在线观看| 久草性爱| 久久思思热视频| 五月丁香美女视频| 国精产品一区一区三区免费视频| 婷婷成年人免费视频| 99er免费在线观看| 9久久网| 欧美大片免费观看| 午夜微博| 激情综合网亚洲色图| 在线观看的av| 99视频在线9| 美日韩成人| 欧美婷婷五月天| 色综合久久88色综合天天人守婷| 五月激情射| 韩国不卡AC视频 | 色五月亚洲五月天| 嫩模aV在线| 果冻传媒A片一二三区| 丁香五月性| 丁香桃色网| 九九婷婷五月天影视| 婷婷在线综合| 色激情网| 啪啪啪综合网| 婷婷性爱网| 丁香婷婷月| 美女100%露全身无挡网站| 超碰二区| 色吧网综合| 久操人妻| 久久人人妻| 99久久99热这里只有精品| 五月丁香六月婷婷精品| 久久婷婷五| 色婷婷视频| 综合99久久天天综合| 色色色色色爱| wuyuedingxiang99| 任你搞在线观看视频| 色色色色丁香| 丁香色婷婷五月天| www.狠狠艹| 色青青视频| 婷婷月五天在线在线看| 婷婷九月丁香天堂丁香天堂| 国产日韩精品SUV| 欧洲亚洲免费视频9| 丁香六月情| 伦99热| 婷婷色播色五月五色五月天色妇| 五月天婷婷狠狠| 婷婷五月综合丁香久久| 爱99干99| 久久精品99| 五月婷婷激情日本| 五月激情久久| 激情图片婷婷| 日韩色色网| 影音先锋噜一噜| 激情啪啪五月| 日本三级片片| 九九九AAA热视频| 99成人| 色爱亚洲| 91久久| 可以看的av| 天天插天天| 五月天久久婷婷婷| 五月激情婷婷图片基地| 婷婷色丁香五月| 中文字幕网站在线观看| 99ri国产精品| 国产精品久久久久久亚洲毛片| www.久久| 夜夜 操无码| 成全在线观看免费完整版第二季 | 99热官网| 欧美综合激情五月天| 中文无码精品一区二区三区| 亚洲综合激情五月天婷婷| 99精品久久久久久久婷婷| 丁香五月开心亚洲| yazhochengrenavwang| 色噜噜狠狠狠狠色综合久欧美| 色欲五月丁香| 日本色色色色色色色色一色二色| 五月婷婷色色| 天天色情站| 国产一区二区三区影院| 狠狠色丁香| 天天操比比| 天天日夜夜拍| www.99视频| 欧美日韩999| 色播五月婷婷| 性爱综合网| 五月天婷婷激情小说电影| 97色色婷婷|