dblp: Jiangtao Xu
https://dblp.org/pid/93/10294.html
dblp person page RSS feedWed, 30 Oct 2024 20:27:39 +0100en-USdaily1released under the CC0 1.0 licensedblp@dagstuhl.de (dblp team)dblp@dagstuhl.de (dblp team)Computers/Computer_Science/Publications/Bibliographieshttp://www.rssboard.org/rss-specificationhttps://dblp.org/img/logo.144x51.pngdblp: Jiangtao Xuhttps://dblp.org/pid/93/10294.html14451An intelligent broaching tool design method based on CBR and support vector machine.https://doi.org/10.1016/j.aei.2024.102447Chang Chen, Jiangtao Xu, Jing Ni, Guojin Chen, Zhengnan Lyu: An intelligent broaching tool design method based on CBR and support vector machine.Adv. Eng. Informatics60: 102447 (2024)]]>https://dblp.org/rec/journals/aei/ChenXNCL24Mon, 01 Jan 2024 00:00:00 +0100High-performance microservice differentiated domain communication technology.https://doi.org/10.1007/s00607-023-01232-3Lei Zhang, Ke Pang, Jiangtao Xu: High-performance microservice differentiated domain communication technology.Computing106(11): 3503-3535 (2024)]]>https://dblp.org/rec/journals/computing/ZhangPX24Fri, 01 Nov 2024 00:00:00 +0100Capacity estimation of lithium-ion battery based on soft dynamic time warping, stratified random sampling and pruned residual neural networks.https://doi.org/10.1016/j.engappai.2024.109278Jiangtao Xu, Jie Qu: Capacity estimation of lithium-ion battery based on soft dynamic time warping, stratified random sampling and pruned residual neural networks.Eng. Appl. Artif. Intell.138: 109278 (2024)]]>https://dblp.org/rec/journals/eaai/XuQ24Mon, 01 Jan 2024 00:00:00 +0100Splicable random windowing row selection circuit for large array CMOS image sensor.https://doi.org/10.1016/j.mejo.2024.106175Changju Liu, Zhijun Wu, Kaiming Nie, Yiqiang Li, Jiangtao Xu, Xiuyu Wang, Ying Wang, Rui Gong, Jiaqi Lu: Splicable random windowing row selection circuit for large array CMOS image sensor.Microelectron. J.147: 106175 (2024)]]>https://dblp.org/rec/journals/mj/LiuWNLXWWGL24Mon, 01 Jan 2024 00:00:00 +0100A leakage-suppressed capacitive-feedback amplifier scheme for event-based vision sensors in scaled-down technology.https://doi.org/10.1016/j.mejo.2024.106183Zhiyuan Gao, Siwei He, Xiaopei Shi, Jiangtao Xu: A leakage-suppressed capacitive-feedback amplifier scheme for event-based vision sensors in scaled-down technology.Microelectron. J.147: 106183 (2024)]]>https://dblp.org/rec/journals/mj/GaoHSX24Mon, 01 Jan 2024 00:00:00 +0100A self-adaptive correlated multiple sampling technique based on single-slope ADC for low-noise CMOS image sensors.https://doi.org/10.1016/j.mejo.2024.106232Haojie Zheng, Kaiming Nie, Wanbin Zha, Jiangtao Xu: A self-adaptive correlated multiple sampling technique based on single-slope ADC for low-noise CMOS image sensors.Microelectron. J.149: 106232 (2024)]]>https://dblp.org/rec/journals/mj/ZhengNZX24Mon, 01 Jan 2024 00:00:00 +0100A dual threshold adaptation method to dynamic vision sensor pixel.https://doi.org/10.1016/j.mejo.2024.106236Yanghao He, Xiaopei Shi, Kaiming Nie, Jiangtao Xu: A dual threshold adaptation method to dynamic vision sensor pixel.Microelectron. J.149: 106236 (2024)]]>https://dblp.org/rec/journals/mj/HeSNX24Mon, 01 Jan 2024 00:00:00 +0100Design of a wide range and high precision phase/duty-cycle correction circuit for modulation driving of 2D/3D image sensors.https://doi.org/10.1016/j.mejo.2024.106241Xiduo Zou, Jing Gao, Kaiming Nie, Zaifeng Shi, Jiangtao Xu: Design of a wide range and high precision phase/duty-cycle correction circuit for modulation driving of 2D/3D image sensors.Microelectron. J.149: 106241 (2024)]]>https://dblp.org/rec/journals/mj/ZouGNSX24Mon, 01 Jan 2024 00:00:00 +0100A 12-bit 2.5-bit/phase two-stage cyclic ADC with phase scaling and low-power Sub-ADC for CMOS image sensor.https://doi.org/10.1016/j.mejo.2024.106282Shuanghan Zhao, Jing Gao, Quanmin Chen, Kaiming Nie, Jiangtao Xu: A 12-bit 2.5-bit/phase two-stage cyclic ADC with phase scaling and low-power Sub-ADC for CMOS image sensor.Microelectron. J.150: 106282 (2024)]]>https://dblp.org/rec/journals/mj/ZhaoGCNX24Mon, 01 Jan 2024 00:00:00 +0100Broad spectral response of large array CIS with BSI-PD from visible light to near ultraviolet.https://doi.org/10.1016/j.mejo.2024.106344Changju Liu, Xiuyu Wang, Haoran Xu, Jiangtao Xu, Yang Wang, Zhijun Wu, Yiqiang Li: Broad spectral response of large array CIS with BSI-PD from visible light to near ultraviolet.Microelectron. J.151: 106344 (2024)]]>https://dblp.org/rec/journals/mj/LiuWXXWWL24Mon, 01 Jan 2024 00:00:00 +0100Hybrid Multimodal Feature Fusion with Multi-Sensor for Bearing Fault Diagnosis.https://doi.org/10.3390/s24061792Zhenzhong Xu, Xu Chen, Yilin Li, Jiangtao Xu: Hybrid Multimodal Feature Fusion with Multi-Sensor for Bearing Fault Diagnosis.Sensors24(6): 1792 (2024)]]>https://dblp.org/rec/journals/sensors/XuCLX24Fri, 01 Mar 2024 00:00:00 +0100A particle swarm optimisation based recurrent neural network method for predicting the trend of Chinese engineering education reform.https://doi.org/10.1504/IJCSM.2023.131631Xianjie Peng, Xiaonan Sun, Jiangtao Xu: A particle swarm optimisation based recurrent neural network method for predicting the trend of Chinese engineering education reform.Int. J. Comput. Sci. Math.17(4): 342-352 (2023)]]>https://dblp.org/rec/journals/ijcsm/PengSX23Sun, 01 Jan 2023 00:00:00 +0100A 1/f noise optimized correlated multiple sampling technique for complementary metal oxide semiconductor image sensor.https://doi.org/10.1002/cta.3718Yalei Liu, Jiangtao Xu, Wanbin Zha, Kaiming Nie: A 1/f noise optimized correlated multiple sampling technique for complementary metal oxide semiconductor image sensor.Int. J. Circuit Theory Appl.51(12): 5529-5542 (2023)]]>https://dblp.org/rec/journals/ijcta/LiuXZN23Fri, 01 Dec 2023 00:00:00 +0100A chaotic genetic algorithm with polynomial mutation for warehouse robot path planning.https://doi.org/10.1504/IJHPSA.2023.139893Ling Lin, Jiangtao Xu, Weijun Gao, Xianjie Peng, Chengming Yang: A chaotic genetic algorithm with polynomial mutation for warehouse robot path planning.Int. J. High Perform. Syst. Archit.11(4): 191-197 (2023)]]>https://dblp.org/rec/journals/ijhpsa/LinXGPY23Sun, 01 Jan 2023 00:00:00 +0100A column-parallel 1-bit ADC with threshold offset reduction technique for single-bit quanta image sensor.https://doi.org/10.1016/j.mejo.2023.105714Xiuyu Wang, Tantan Ju, Changju Liu, Kaiming Nie, Jiangtao Xu: A column-parallel 1-bit ADC with threshold offset reduction technique for single-bit quanta image sensor.Microelectron. J.133: 105714 (2023)]]>https://dblp.org/rec/journals/mj/WangJLNX23Wed, 01 Mar 2023 00:00:00 +0100Analysis and optimization design of control signal line parasitic effects on streaking phenomenon in CMOS image sensor.https://doi.org/10.1016/j.mejo.2023.105721Yuanmeng Zhang, Jiangtao Xu, Kaiming Nie, Changju Liu, Yuli Yang, Hao Wang: Analysis and optimization design of control signal line parasitic effects on streaking phenomenon in CMOS image sensor.Microelectron. J.133: 105721 (2023)]]>https://dblp.org/rec/journals/mj/ZhangXNLYW23Wed, 01 Mar 2023 00:00:00 +0100Two ramp reference voltages CDS scheme applied to low noise and high dynamic range PWM pixel.https://doi.org/10.1016/j.mejo.2023.105744Jing Gao, Xin Yang, Xiaopei Shi, Zhiyuan Gao, Kaiming Nie, Jiangtao Xu: Two ramp reference voltages CDS scheme applied to low noise and high dynamic range PWM pixel.Microelectron. J.135: 105744 (2023)]]>https://dblp.org/rec/journals/mj/0002YSGNX23Sun, 01 Jan 2023 00:00:00 +01002μs row time 12-bit column-parallel single slope ADC for high-speed CMOS image sensor.https://doi.org/10.1016/j.mejo.2023.105768Gaoyuan Wang, Quanmin Chen, Jiangtao Xu, Kaiming Nie: 2μs row time 12-bit column-parallel single slope ADC for high-speed CMOS image sensor.Microelectron. J.135: 105768 (2023)]]>https://dblp.org/rec/journals/mj/WangCXN23Sun, 01 Jan 2023 00:00:00 +0100No calibration required two-step double-data-rate counter for low-power SS ADC in CMOS image sensors.https://doi.org/10.1016/j.mejo.2023.105798Peng Gu, Jing Gao, Zhiyuan Gao, Kaiming Nie, Jiangtao Xu: No calibration required two-step double-data-rate counter for low-power SS ADC in CMOS image sensors.Microelectron. J.136: 105798 (2023)]]>https://dblp.org/rec/journals/mj/Gu0GNX23Sun, 01 Jan 2023 00:00:00 +0100A variable threshold visual sensing and image reconstruction method based on pulse sequence.https://doi.org/10.1007/s11432-020-3003-2Jiangtao Xu, Peng Lin, Zhiyuan Gao, Kaiming Nie, Liang Xu: A variable threshold visual sensing and image reconstruction method based on pulse sequence.Sci. China Inf. Sci.65(2) (2022)]]>https://dblp.org/rec/journals/chinaf/XuLGNX22Sat, 01 Jan 2022 00:00:00 +0100JSON-based control model for SQL and NoSQL data conversion in hybrid cloud database.https://doi.org/10.1186/s13677-022-00302-9Lei Zhang, Ke Pang, Jiangtao Xu, Bingxin Niu: JSON-based control model for SQL and NoSQL data conversion in hybrid cloud database.J. Cloud Comput.11: 23 (2022)]]>https://dblp.org/rec/journals/jcloudc/ZhangPXN22Sat, 01 Jan 2022 00:00:00 +0100A 20.7-43.8-GHz Low Power Reconfigurable ×2/× 3 Frequency Multiplier for Multiple 5G-mm-Wave Bands.https://doi.org/10.1109/JSSC.2022.3166636Zhipeng Wang, Kaixue Ma, Zonglin Ma, Haipeng Fu, Jiangtao Xu: A 20.7-43.8-GHz Low Power Reconfigurable ×2/× 3 Frequency Multiplier for Multiple 5G-mm-Wave Bands.IEEE J. Solid State Circuits57(8): 2348-2361 (2022)]]>https://dblp.org/rec/journals/jssc/WangMMFX22Sat, 01 Jan 2022 00:00:00 +0100Motion detection for high-speed high-brightness objects based on a pulse array image sensor.https://doi.org/10.1631/FITEE.2000407Peiwen Zhang, Jiangtao Xu, Huafeng Nie, Zhiyuan Gao, Kaiming Nie: Motion detection for high-speed high-brightness objects based on a pulse array image sensor.Frontiers Inf. Technol. Electron. Eng.23(1): 113-122 (2022)]]>https://dblp.org/rec/journals/jzusc/ZhangXNGN22Sat, 01 Jan 2022 00:00:00 +0100A 2.44μs row conversion time 12-bit high-speed differential single-slope ADC with TDC applied to CMOS image sensor.https://doi.org/10.1016/j.mejo.2021.105322Jing Gao, Ningxi Yan, Kaiming Nie, Zhiyuan Gao, Jiangtao Xu: A 2.44μs row conversion time 12-bit high-speed differential single-slope ADC with TDC applied to CMOS image sensor.Microelectron. J.120: 105322 (2022)]]>https://dblp.org/rec/journals/mj/GaoYNGX22Sat, 01 Jan 2022 00:00:00 +0100A linear charge pump with novel adaptive charge compensation structure for transient-response improvement in CMOS image sensors.https://doi.org/10.1016/j.mejo.2022.105391Jing Gao, Rui Li, Kaiming Nie, Jiangtao Xu: A linear charge pump with novel adaptive charge compensation structure for transient-response improvement in CMOS image sensors.Microelectron. J.122: 105391 (2022)]]>https://dblp.org/rec/journals/mj/GaoLNX22Sat, 01 Jan 2022 00:00:00 +0100A low-power conditional analog correlated multiple sampling circuit for low-noise CMOS image sensor.https://doi.org/10.1016/j.mejo.2022.105428Jiangtao Xu, Jiahao Wei, Quanmin Chen, Wanbin Zha, Kaiming Nie: A low-power conditional analog correlated multiple sampling circuit for low-noise CMOS image sensor.Microelectron. J.123: 105428 (2022)]]>https://dblp.org/rec/journals/mj/XuWCZN22Sat, 01 Jan 2022 00:00:00 +0100A delay cell with duty-cycle correction and parasitic compensation for large array indirect time-of-flight CMOS image sensors.https://doi.org/10.1016/j.mejo.2022.105448Zeqing Wang, Qiang Li, Kaiming Nie, Jiangtao Xu, Guan Tian, Jing Gao: A delay cell with duty-cycle correction and parasitic compensation for large array indirect time-of-flight CMOS image sensors.Microelectron. J.125: 105448 (2022)]]>https://dblp.org/rec/journals/mj/WangLNXTG22Sat, 01 Jan 2022 00:00:00 +0100A low-noise readout circuit design for multi-bit quanta image sensor.https://doi.org/10.1016/j.mejo.2022.105463Xiuyu Wang, Changchun Li, Wanbin Zha, Kaiming Nie, Jiangtao Xu: A low-noise readout circuit design for multi-bit quanta image sensor.Microelectron. J.125: 105463 (2022)]]>https://dblp.org/rec/journals/mj/WangLZNX22Sat, 01 Jan 2022 00:00:00 +0100A low reference voltage interference 10-bit cyclic ADC based on current sub-DAC.https://doi.org/10.1016/j.mejo.2022.105468Kaiming Nie, Zhihong Pan, Jiangtao Xu, Zhiyuan Gao: A low reference voltage interference 10-bit cyclic ADC based on current sub-DAC.Microelectron. J.125: 105468 (2022)]]>https://dblp.org/rec/journals/mj/NiePXG22Sat, 01 Jan 2022 00:00:00 +0100High-speed target tracking algorithm for the pulse-sequence-based image sensor.https://doi.org/10.1049/ipr2.12094Jiangtao Xu, Xiangfeng Wang, Zhiyuan Gao, Kaiming Nie: High-speed target tracking algorithm for the pulse-sequence-based image sensor.IET Image Process.15(5): 1157-1165 (2021)]]>https://dblp.org/rec/journals/iet-ipr/XuWGN21Fri, 01 Jan 2021 00:00:00 +0100Research on a pulse-based high-line-rate TDI CMOS image sensor.https://doi.org/10.1016/j.mejo.2021.105021Jing Gao, Baoshuai Zhang, Kaiming Nie, Jiangtao Xu: Research on a pulse-based high-line-rate TDI CMOS image sensor.Microelectron. J.111: 105021 (2021)]]>https://dblp.org/rec/journals/mj/GaoZNX21Fri, 01 Jan 2021 00:00:00 +0100Attention fusion network for multi-spectral semantic segmentation.https://doi.org/10.1016/j.patrec.2021.03.015Jiangtao Xu, Kaige Lu, Han Wang: Attention fusion network for multi-spectral semantic segmentation.Pattern Recognit. Lett.146: 179-184 (2021)]]>https://dblp.org/rec/journals/prl/XuLW21Fri, 01 Jan 2021 00:00:00 +0100A DenseUnet generative adversarial network for near-infrared face image colorization.https://doi.org/10.1016/j.sigpro.2021.108007Jiangtao Xu, Kaige Lu, Xingping Shi, Shuzhen Qin, Han Wang, Jianguo Ma: A DenseUnet generative adversarial network for near-infrared face image colorization.Signal Process.183: 108007 (2021)]]>https://dblp.org/rec/journals/sigpro/XuLSQWM21Fri, 01 Jan 2021 00:00:00 +0100A Low-Ripple Charge Pump With Novel Compensator for Transient-Response Improvement in CMOS Image Sensors.https://doi.org/10.1109/TCSII.2020.3033000Jing Gao, Tianyu Gu, Kaiming Nie, Zhiyuan Gao, Jiangtao Xu: A Low-Ripple Charge Pump With Novel Compensator for Transient-Response Improvement in CMOS Image Sensors.IEEE Trans. Circuits Syst. II Express Briefs68(4): 1113-1117 (2021)]]>https://dblp.org/rec/journals/tcasII/0002GNGX21Fri, 01 Jan 2021 00:00:00 +0100High Frame Rate Video Reconstruction and Deblurring Based on Dynamic and Active Pixel Vision Image Sensor.https://doi.org/10.1109/TCSVT.2020.3034148Kaiming Nie, Xiaopei Shi, Silu Cheng, Zhiyuan Gao, Jiangtao Xu: High Frame Rate Video Reconstruction and Deblurring Based on Dynamic and Active Pixel Vision Image Sensor.IEEE Trans. Circuits Syst. Video Technol.31(8): 2938-2952 (2021)]]>https://dblp.org/rec/journals/tcsv/NieSCGX21Fri, 01 Jan 2021 00:00:00 +0100A Denoising Method Based on Pulse Interval Compensation for High-Speed Spike-Based Image Sensor.https://doi.org/10.1109/TCSVT.2020.3034649Jiangtao Xu, Liang Xu, Zhiyuan Gao, Peng Lin, Kaiming Nie: A Denoising Method Based on Pulse Interval Compensation for High-Speed Spike-Based Image Sensor.IEEE Trans. Circuits Syst. Video Technol.31(8): 2966-2980 (2021)]]>https://dblp.org/rec/journals/tcsv/XuXGLN21Fri, 01 Jan 2021 00:00:00 +0100Rearch on quantitative evaluation technology of equipment battlefield environment adaptability.https://doi.org/10.1145/3503047.3503134Hao Chen, Jiajia Wang, Yurong Liu, Jiangtao Xu, Chao Fan: Rearch on quantitative evaluation technology of equipment battlefield environment adaptability.AISS2021: 81:1-81:5]]>https://dblp.org/rec/conf/aiss/ChenWLXF21Fri, 01 Jan 2021 00:00:00 +0100Optimal Trajectory Planning of Electromagnetic Valve-Train Based on Multiple Algorithms for Improving Engine Performance.https://doi.org/10.1109/ACCESS.2019.2959082Tongjun Guo, Siqin Chang, Jiangtao Xu: Optimal Trajectory Planning of Electromagnetic Valve-Train Based on Multiple Algorithms for Improving Engine Performance.IEEE Access8: 4980-4994 (2020)]]>https://dblp.org/rec/journals/access/GuoCX20Wed, 01 Jan 2020 00:00:00 +0100Adaptive NN Backstepping With Considering Integral of Tracking Error.https://doi.org/10.1109/ACCESS.2020.3004401Jiangtao Xu, Yu Fu, Ganghui Cao, Dewei Zhang, Ya Yang: Adaptive NN Backstepping With Considering Integral of Tracking Error.IEEE Access8: 115437-115447 (2020)]]>https://dblp.org/rec/journals/access/XuFCZY20Wed, 01 Jan 2020 00:00:00 +0100Impact of Worst-Case Excitation for DDR interface Signal and Power Integrity Co-Simulation.https://doi.org/10.1007/s10836-020-05875-4Dongzhe Yu, Han Wang, Jiangtao Xu: Impact of Worst-Case Excitation for DDR interface Signal and Power Integrity Co-Simulation.J. Electron. Test.36(3): 365-374 (2020)]]>https://dblp.org/rec/journals/et/YuWX20Wed, 01 Jan 2020 00:00:00 +0100Analysis and Optimization design of the column bus parasitic effects on large-array CMOS image sensor.https://doi.org/10.1016/j.mejo.2019.104681Jing Gao, Dezhi Zhang, Kaiming Nie, Jiangtao Xu: Analysis and Optimization design of the column bus parasitic effects on large-array CMOS image sensor.Microelectron. J.96: 104681 (2020)]]>https://dblp.org/rec/journals/mj/GaoZNX20Wed, 01 Jan 2020 00:00:00 +0100An integrated low-power Binary-PAM based wireless telemetry circuit for implantable cardiac pacemakers.https://doi.org/10.1016/j.mejo.2020.104747Jiangtao Xu, Yujian Zhai, Yang Yang, Ruizhi Zhang, Hong Zhang: An integrated low-power Binary-PAM based wireless telemetry circuit for implantable cardiac pacemakers.Microelectron. J.99: 104747 (2020)]]>https://dblp.org/rec/journals/mj/XuZYZZ20Wed, 01 Jan 2020 00:00:00 +0100A low-power column-parallel cyclic ADC for CMOS image sensor with capacitance and current scaling.https://doi.org/10.1016/j.mejo.2020.104908Jianian Zhu, Jiangtao Xu, Kaiming Nie: A low-power column-parallel cyclic ADC for CMOS image sensor with capacitance and current scaling.Microelectron. J.105: 104908 (2020)]]>https://dblp.org/rec/journals/mj/ZhuXN20Wed, 01 Jan 2020 00:00:00 +0100A Single Slope ADC With Row-Wise Noise Reduction Technique for CMOS Image Sensor.https://doi.org/10.1109/TCSI.2020.2979321Kaiming Nie, Wanbin Zha, Xiaolin Shi, Jiawen Li, Jiangtao Xu, Jianguo Ma: A Single Slope ADC With Row-Wise Noise Reduction Technique for CMOS Image Sensor.IEEE Trans. Circuits Syst. I Regul. Pap.67-I(9): 2873-2882 (2020)]]>https://dblp.org/rec/journals/tcas/NieZSLXM20Wed, 01 Jan 2020 00:00:00 +0100MIRE: A Multitone Identification and Replacement Method for Multitone Spectral Test Without Requiring Coherent Sampling.https://doi.org/10.1109/TIM.2019.2942474Minshun Wu, Cheng Ban, Jiangtao Xu, Li Geng, Degang Chen: MIRE: A Multitone Identification and Replacement Method for Multitone Spectral Test Without Requiring Coherent Sampling.IEEE Trans. Instrum. Meas.69(7): 4578-4591 (2020)]]>https://dblp.org/rec/journals/tim/WuBXGC20Wed, 01 Jan 2020 00:00:00 +0100A Full-duplex Transceiver with Integrated Active Quasi-circulator Achieving Self-interference RF Cancellation over Wide Bandwidth.https://doi.org/10.1109/ICTA50426.2020.9332007Bingjun Tang, Jiangtao Xu, Xiaoyan Gui, Dan Li, Li Geng: A Full-duplex Transceiver with Integrated Active Quasi-circulator Achieving Self-interference RF Cancellation over Wide Bandwidth.ICTA2020: 9-10]]>https://dblp.org/rec/conf/icta3/TangXG0G20Wed, 01 Jan 2020 00:00:00 +0100Modeling and Analysis of Aeroelasticity and Sloshing for Liquid Rocket.https://doi.org/10.1109/ACCESS.2018.2884544Dewei Zhang, Hui Qi, Jiangtao Xu, Ya Yang, Bangsheng Fu: Modeling and Analysis of Aeroelasticity and Sloshing for Liquid Rocket.IEEE Access7: 4453-4465 (2019)]]>https://dblp.org/rec/journals/access/ZhangQXYF19Tue, 01 Jan 2019 00:00:00 +0100Fault Monitoring and Diagnosis of Actuators in Electromagnetic Valve-Train Based on Neural Networks Optimization Algorithm.https://doi.org/10.1109/ACCESS.2019.2933881Tongjun Guo, Siqin Chang, Zhiqiang Chen, Hangang Huang, Jiangtao Xu: Fault Monitoring and Diagnosis of Actuators in Electromagnetic Valve-Train Based on Neural Networks Optimization Algorithm.IEEE Access7: 110616-110627 (2019)]]>https://dblp.org/rec/journals/access/GuoCCHX19Tue, 01 Jan 2019 00:00:00 +0100Image Lag Elimination Algorithm for Pulse-Sequence-Based High-Speed Image Sensor.https://doi.org/10.1109/ACCESS.2019.2948110Jiangtao Xu, Peiwen Zhang, Zhe Yang, Zhiyuan Gao, Kaiming Nie, Jianguo Ma: Image Lag Elimination Algorithm for Pulse-Sequence-Based High-Speed Image Sensor.IEEE Access7: 159575-159583 (2019)]]>https://dblp.org/rec/journals/access/XuZYGNM19Tue, 01 Jan 2019 00:00:00 +0100Data Collection Study Based on Spatio-Temporal Correlation in Event-Driven Sensor Networks.https://doi.org/10.1109/ACCESS.2019.2957450Yongling Lu, Haibo Jiang, Zhenjiang Pang, Zheng Wang, Jiangtao Xu, Yang Liu, Chao Gao, Chengbo Hu, Haiquan Sun: Data Collection Study Based on Spatio-Temporal Correlation in Event-Driven Sensor Networks.IEEE Access7: 175857-175864 (2019)]]>https://dblp.org/rec/journals/access/LuJPWXLGHS19Tue, 01 Jan 2019 00:00:00 +0100A Method to Reduce the Effect on Image Quality Caused by Resistance of Column Bus.https://doi.org/10.1109/TVLSI.2018.2870858Jiangtao Xu, Wei Li, Kaiming Nie, Liqiang Han, Xiyang Zhao: A Method to Reduce the Effect on Image Quality Caused by Resistance of Column Bus.IEEE Trans. Very Large Scale Integr. Syst.27(1): 173-181 (2019)]]>https://dblp.org/rec/journals/tvlsi/XuLNHZ19Tue, 01 Jan 2019 00:00:00 +0100An Accurate and Efficient Method for Eliminating the Requirement of Coherent Sampling in Multi-Tone Test.https://doi.org/10.1109/VTS.2019.8758601Cheng Ban, Minshun Wu, Jiangtao Xu, Li Geng, Degang Chen: An Accurate and Efficient Method for Eliminating the Requirement of Coherent Sampling in Multi-Tone Test.VTS2019: 1-6]]>https://dblp.org/rec/conf/vts/BanWXGC19Tue, 01 Jan 2019 00:00:00 +0100Adaptive Partition-Cluster-Based Median Filter for Random-Valued Impulse Noise Removal.https://doi.org/10.1142/S0218126618501104Ke Pang, Zaifeng Shi, Jiangtao Xu, Suying Yao: Adaptive Partition-Cluster-Based Median Filter for Random-Valued Impulse Noise Removal.J. Circuits Syst. Comput.27(7): 1850110:1-1850110:26 (2018)]]>https://dblp.org/rec/journals/jcsc/PangSXY18Mon, 01 Jan 2018 00:00:00 +0100Low-leakage analog switches for low-speed sample-and-hold circuits.https://doi.org/10.1016/j.mejo.2018.04.008Jiangtao Xu, Xiaolin Shi, Zhiyuan Gao, Kaiming Nie: Low-leakage analog switches for low-speed sample-and-hold circuits.Microelectron. J.76: 22-27 (2018)]]>https://dblp.org/rec/journals/mj/XuSGN18Mon, 01 Jan 2018 00:00:00 +0100A novel MSB-prediction SAR ADC strategy for battery pack voltage detection.https://doi.org/10.1016/j.mejo.2018.08.004Jiangtao Xu, Jinlong Wang, Jing Gao, Zhiyuan Gao: A novel MSB-prediction SAR ADC strategy for battery pack voltage detection.Microelectron. J.80: 46-52 (2018)]]>https://dblp.org/rec/journals/mj/XuWGG18Mon, 01 Jan 2018 00:00:00 +010010-bit Single-Slope ADC with error quantification and double reset technique for CMOS image sensor.https://doi.org/10.1016/j.mejo.2018.10.001Jiangtao Xu, Xiaolin Shi, Shuang Xu, Zhaoyang Yin: 10-bit Single-Slope ADC with error quantification and double reset technique for CMOS image sensor.Microelectron. 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