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通信工程系教师

刘维

发布日期 :2018-06-06作者 :点击 :

姓名 刘维 民族

出生日期 1986年 工作单位 通信工程系
党派 无党派人士 专业 通信与信息系统
职称 教授
任职时间 2025年9月
硕导/博导 博士导师
聘任时间 2025年9月
行政职务
担任时间
办公电话
个人主页 暂无
电子信箱 [email protected]
主要学历:


2005.09-2009.06 无码破解 通信工程专业 学士

2010.09-2015.06 无码破解 通信与信息系统专业 博士


主要学术经历:


2015.10-2017.12 无码破解 地球物理学专业 博士后

2017.12-2018.9 无码破解 讲师

2018.10-2025.9 无码破解 副教授

2025.9 -至今 无码破解 教授


研究方向及主要研究内容介绍:


1.自由空间光通信大气信道补偿技术研究

2.太空态势感知技术


兼职情况:


Optics Express,OPTICS AND LASER TECHNOLOGY,OPTICS LETTERS等国际期刊审稿人。


承担的教学任务及授课对象:


本科生课程:通信原理、通信原理综合实验、数字信号处理综合实验

研究生课程:通信网


培养研究生情况:


在读硕士5人。

毕业硕士4人。


承担过的主要科研项目:


1、基于全息波前传感的相干自由空间光通信信道补偿技术研究,国家青年基金(项目负责人);

2、基于无波前传感的机载测绘激光雷达大气补偿技术研究,国家博士后基金项目(项目负责人);

3、基于KCF算法的图像跟踪软件设计,横向课题(项目负责人);

4、面向海量在轨遥感数据的低轨小卫星组网协同传输机理及关键技术研究,国家自然科学基金(项目负责人);

5、小型ATP二维伺服转台,横向课题(项目负责人);

6、ATP控制系统,横向课题(项目负责人);

7、低空光电侦测技术及设备的研究与开发,横向课题(项目负责人);

8、小型ATP机构研制,横向课题(项目负责人);

9、大气环境参数测量系统应用软件开发,横向课题(项目负责人);


获得主要科研成果:


论文:

1.Performance analysis of the optimized equilibrium optimizer algorithm using linear population size reduction in the coherent free-space optical communication system[J]. Optics Express,2025,Vol.33(5): 11317-11335.(Corresponding Author)

2.Performance analysis of optimized equilibrium optimizer algorithm in coherent free-space optical communication system[J]. Optics Communications,2025,Vol.574: 131115.(Corresponding Author)

3.Numerical Simulation of Performance Improvement of Coherent LiDAR Based on SPGD Algorithm[J]. IEEE Photonics Journal,2024,Vol.16(6): 1-7.

4.Performance analysis of free space optical communications with FOA-WFS[J]. Optics Express,2024,Vol.32(16): 28937-28952.(Corresponding Author)

5.Investigating the angular distortion impact on vehicular optical camera communication (OCC) systems[J]. Optics Express,2024,Vol.32(11): 19697-19715.

6.Design Guidelines for Optical Camera Communication Systems: A Tutorial[J]. IEEE Photonics Journal,2024,Vol.16(4): 1-25.

7. Residual network-based aberration correction in a sensor-less adaptive optics system[J]. Optics Communications,2023,Vol.545: 129707.(Lead Author)

8.Decoding algorithm with multiple features based on optical camera communication system[J]. Optoelectronics Letters,2023,Vol.19(2): 65-71.

9.Characterization of Optical Camera Communication Based on a Comprehensive System Model[J]. Journal of Lightwave Technology,2022,Vol.40(18): 1-14.(Corresponding Author)

10.Application of AdamSPGD algorithm to sensor-less adaptive optics in coherent free-space optical communication system[J]. Optics express,2022,Vol.30(5): 7477-7490.

11.Performance analysis of coherent optical communication based on hybrid algorithm[J]. Optics and Laser Technology,2022,Vol.149: 107878.(Lead Author)

12.Implementation and decoding method of OCC system based on MIMO[J]. Optoelectronics Letters,2022,18(1): 18-23.(Corresponding Author)

13.Computation Offloading and Shunting Scheme in Wireless Wireline Internetwork[J]. IEEE Transactions on Communications,2021,Vol.69(10): 6808-6821.(Corresponding Author)

14.An LED Detection and Recognition Method Based on Deep Learning in Vehicle Optical Camera Communication[J]. IEEE Access,2021,Vol.9: 1.(Corresponding Author)

15.Performance Analysis of Two-Way Full-Duplex Relay Mixed RF/FSO System With Self-Interference[J]. IEEE Communications Letters,2021,Vol.25(1): 209-213.

16.Success Probability in Random Distance Bipolar Wireless Networks[J]. IEEE Communications Letters,2020,Vol.24(12): 2984-2988.

17.An algorithm combining convolutional neural networks with SPGD for SLAO in FSOC.[J]. Optics Communications,2020,Vol.475: 126243.

18.Performance analysis of full duplex relay assisted mixed RF/FSO system(Article)[J]. Optics Communications,2020,Vol.474: 126170.

19.Resource allocation for hybrid RF/FSO multi-channel multi-radio wireless mesh networks[J]. IEEE Access,2020,Vol.8: 9358-9370.

20.Performance Analysis of Hybrid SIMO-RF/FSO Communication System with Fixed Gain AF Relay[J]. Current Optics and Photonics,2019,Vol.3(5): 365-373.(Corresponding Author)

21.Performance analysis of 349-element adaptive optics unit for a coherent free space optical communication system[J]. Scientific Reports,2019,Vol.1(1): 13150.

22.Performance analysis of mixed RF/FSO system with spatial diversity.[J]. Optics Communications,2019,Vol.443: 230-237.

23.An Auction Scheme for Computing Resource Allocation in D2D-assisted Mobile Edge Computing[C]//IEEE Global Communications Conference (IEEE GLOBECOM). 2019.(Corresponding Author)

24.Further Study and Application for One-Dimensional Homography Matrix(Article)[J]. Guangxue Xuebao/Acta Optica Sinica,2018,Vol.38(7): 0715003.

25.Methods based on 1D homography for camera calibration with 1D objects[J]. Applied Optics,2018,Vol.57(9): 2155-2164.

26.BER Analysis of Coherent Free-Space Optical Communication Systems with a Focal-Plane-Based Wavefront Sensor[J]. Journal of the Korean Physical Society,2018,Vol.72(5): 555-560.

27.Performance analysis of coherent free space optical communications with sequential pyramid wavefront sensor[J]. OPTICS AND LASER TECHNOLOGY,2018,Vol.100: 332-341.(Lead Author)

28.Model-free correction algorithm for wireless power transmission with adaptive optics system(Article)[J]. Optik,2018,Vol.172: 368-382.

29.Kidney Protection Effect of Ginsenoside Re and Its Underlying Mechanisms on Cisplatin-Induced Kidney Injury.[J]. Cellular Physiology & Biochemistry (Karger AG),2018,Vol.48(5): 2219-2229.

30.Modified artificial fish school algorithm for free space optical communication with sensor-less adaptive optics system[J]. Journal of the Korean Physical Society,2017,Vol.71(10): 636-646.

31.Joint Transmission Slot Assignment, FSO Links Allocation and Power Control for Hybrid RF/FSO Wireless Mesh Networks[J]. Current Optics and Photonics,2017,Vol.1(2): 325-335.

32.Performance analysis of a coherent free space optical communication system based on experiment(Article)[J]. Optics Express,2017,Vol.25(13): 15299-15312.

33.BER Analysis of Coherent Free Space Optical Communication Systems with Holographic Modal Wavefront Sensor[J]. Current Optics and Photonics,2019,Vol.3(7): 1.(Lead Author)

34.Liu, W (Liu, Wei),et al. Efficiency analysis of homodyne detection for a coherent lidar with adaptive optics(Article)[J]. Journal of the Korean Physical Society,2016,Vol.69(12): 1750-1754.(Lead Author)

35.Performance evaluation of coherent free space optical communications with a double-stage fast-steering-mirror adaptive optics system depending on the Greenwood frequency[J]. Optics express,2016,Vol.24(12): 13288-13302.(Lead Author)

36.Swarm intelligence for atmospheric compensation in free space optical communication - Modified shuffled frog leaping algorithm(Review)[J]. Optics and Laser Technology,2015,Vol.66: 89-97.

37.Atmospheric compensation in free space optical communication with simulated annealing algorithm(Note)[J]. Optics Communications,2015,Vol.338: 11-21.

38.Model-based tabu search algorithm for free-space optical communication with a novel parallel wavefront correction system(Article)[J]. Journal of the Optical Society of Korea,2015,Vol.19(1): 45-54.

39.Comparison of swarm intelligence algorithms in atmospheric compensation for free space optical communication[J]. SELECTED PAPERS FROM CONFERENCES OF THE PHOTOELECTRONIC TECHNOLOGY COMMITTEE OF THE CHINESE SOCIETY OF ASTRONAUTICS 2014, PT I,2015,Vol.9521.

40.A new robust 2D camera calibration method using RANSAC[J]. Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic,2015,Vol.126(24): 4910-4915.

41.Hybrid polarization-division-multiplexed quadrature phase-shift keying and multi-pulse pulse position modulation for free space optical communication(Article)[J]. Optics Communications,2015,Vol.334: 63-73.

42.Fiber coupling efficiency analysis of free space optical communication systems with holographic modal wave-front sensor(Article)[J]. Optics and Laser Technology,2014,Vol.60: 116-123.(Lead Author)

43.Combinational-deformable-mirror adaptive optics system for atmospheric compensation in free space communication(Article)[J]. Optics Communications,2014,Vol.320: 162-168.

44.Stochastic parallel gradient descent laser beam control algorithm for atmospheric compensation in free space optical communication[J]. Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic,2014,Vol.125(20): 6142-6147.

45.Bit error rate analysis with real-time pointing errors correction in free space optical communication systems[J]. Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic,2014,Vol.125(1): 324-328.(Lead Author)

46.Free space optical communication performance analysis with focal plane based wavefront measurement(Article)[J]. Optics Communications,2013,Vol.309: 212-220.(Lead Author)

47.A novel method of camera pose estimation by parabolic motion[J]. Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic,2013,Vol.124(24): 6840-6845.(Lead Author)

48.Pose estimation of a single circle based on 1D homography(Conference Paper)[J]. Proceedings of SPIE - The International Society for Optical Engineering,2019,Vol.11179. (Corresponding Author)

49.Closed-loop adaptive optics system with a single liquid crystal spatial light modulator[J]. Optics Express,2014,Vol.22(14): 17216-17226.

专利:

1.无码破解 .基于RBMGC优化算法的相干自由空间光通信系统:202510954904.6[P].2025-09-16.(第一发明人)

2.无码破解 .基于FOA波前传感器的波前重构方法及相干自由空间光通信系统:202411002902.9[P].2025-10-03.(第一发明人)

3.无码破解 .基于 ShuffleNet 网络的 AO 系统波前矫正方法:202310864757.4[P]. 2025-09-25.(第一发明人)

4.无码破解 .一种基于统计流形的心律失常分类方法:202510439127.1[P].2025-07-22.

5.无码破解 .基于OCC的车对车通信系统发射机和接收机:202010347416.6[P].2023-04-14.

6.无码破解 .基于OCC双曝光时长相机接收模式与距离感知的车辆间通信实现方法:202110028783.4[P].2021-12-10.

7.无码破解 .一种分数阶混合模式通用二阶滤波器的设计方法:202110934281.8[P].2023-11-03.

8.无码破解 .一种基于激励机制的移动边缘计算资源分配方法:201910139645.6[P].2021-04-30.



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