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杨波

职称:副教授

毕业院校:浙江大学

邮件:yangbozju@hdu.edu.cn

办公地点:

职务:

研究方向: 微波光子学

个人简介

杨波,男,博士,副教授,硕士生导师。

2004~2008:浙江大学,本科;

2008~2013:浙江大学,博士研究生;

20112012:荷兰埃因霍温科技大学,联合培养博士生;

2019.4至今:杭州电子科技大学通信工程学院,副教授和硕士生导师。

  主要研究兴趣包括微波光子信号处理、光电子器件与系统、无线与光子融合通信等,已在Optics Letters,Optics Express, Photonic Technology Letters等国际知名SCI期刊发表论文50余篇,在研主持国家自然科学基金和浙江省自然科学基金项目,参与国家重点研发计划项目、浙江省重点基金项目。


教育经历
工作经历
社会职务
研究领域
教学与课程

本科生课程:《数学物理方法》,《综合创新实践》,《文献检索与科技写作》,《计算机仿真基础》

研究生课程:《光纤通信原理与系统》


横向科研



纵向科研

1. 浙江省自然科学基金探索项目,基于新型频域锁模光电振荡技术的低噪声毫米波线性调频信号源研究,项目编号:LQ20F010008,时间:20201-202212

2. 国家自然科学基金青年项目,光脉冲辅助稀疏宽带信号压缩采样技术研究,项目编号:62101168,时间20221-202412

3. 国家重点研发计划课题,宽带微波光子信号多信道采集芯片与采样系统,课题编号:2019YFB2203204,时间:20201-202212

4. 浙江省自然科学基金重点项目,光子学高速数模转换(DAC)关键技术研究,项目编号:LZ20F010003,时间:20201-202312


论文

1.       Yang B, Bai B, Chi H, et al. A harmonic active mode-locking optoelectronic oscillator with suppressed supermode noise based on pulse intensity feedback[J]. Optics Letters, 2024, 49(5): 1265-1268.

2.       Yang B, Liu Z, Zhang Y, et al. Photonic distributed compressive sampling of multi-node wideband sparse radio frequency signals[J]. Optics Express, 2023, 31(26): 42878-42886.

3.       Yang B, Xu Q, Chi H, et al. Photonic compressive sampling of wideband sparse radio frequency signals with 1-bit quantization[J]. Optics Express, 2023, 31(11): 18159-18166.

4.       Yang B, Yu J, Chi H, et al. Polarization multiplexed active mode-locking optoelectronic oscillator for frequency tunable dual-band microwave pulse signals generation[J]. Optics Express, 2022, 30(15): 27132-27139.

5.       Yang B, Wu F, Yang S, et al. Resolution-enhanced dynamic waveform spectral analysis based on the inverse temporal Talbot effect[J]. IEEE Photonics Technology Letters, 2022, 34(14): 749-752.

6.       Yang B, Yang S, Cao Z, et al. Photonic compressive sensing of sparse radio frequency signals with a single dual-electrode Mach–Zehnder modulator[J]. Optics Letters, 2020, 45(20): 5708-5711.

7.       Yang B, Zhao H, Cao Z, et al. Active mode-locking optoelectronic oscillator[J]. Optics Express, 2020, 28(22): 33220-33227.

8.       Yang B, Sun J S, Chi H, et al. Joint radar and communication system based on a chaotic optoelectronic oscillator[J]. Optics Communications, 2024, 554: 130123.

9.       Yang B, Ma Z, Yang S, et al. Broadband and linearized photonic time-stretch analog-to-digital converter based on a compact dual-polarization modulator[J]. Applied Optics, 2023, 62(4): 921-926.

10.    Yang B, Xu, Q, Yang, S, and Chi, H. Wideband sparse signal acquisition with ultrahigh sampling compression ratio based on continuous-time photonic time stretch and photonic compressive sampling. Applied Optics, 2022, 61(6), 1344-1348.

11.    Yang B, Zhao H, Chi H, and Yang, S. Wideband Doppler frequency shift measurement and direction discrimination based on optical single sideband modulation with a fixed low-frequency reference signal. Optics Communications, 2021, 499, 127306.

12.    Yang B, Yu, J, Chi, H, Yang, S, Ou, J, and Zhai, Y. Improving the accuracy of distance measurements based on beat frequency detection of a dual-frequency optoelectronic oscillator. Applied Optics, 2021, 60(32), 10109-10113.

13.    Zou F, Zou L, Yang B*, Ma Q, Zou X, Zou J, and Liu H. Optoelectronic oscillator for 5G wireless networks and beyond. Journal of Physics D: Applied Physics, 2021, 54(42), 423002. (通讯作者)

14.    Chi H, Zhou H, Yang S, Ou J, Zhai Y, and Yang B*. Compressive sensing based on optical mixing using a spectral shaper with bipolar coding. Optics Express, 2021, 29(11), 16422-16431.(通讯作者)

15.    Yang S, Wang J, Chi H, Yang B*. Distortion compensation in continuous-time photonic time-stretched ADC based on redundancy detection[J]. Applied Optics, 2021, 60(6): 1646-1652. (通讯作者)

16.    Yang B, Chi H, Yang S, et al. Broadband microwave spectrum sensing based on photonic RF channelization and compressive sampling[J], IEEE Photonics Journal, 2019, 12(1):1-9.

17.    Yang B, Jin X, Chen Y, et al. Photonic microwave up-conversion of vector signals based on an optoelectronic oscillator[J]. IEEE Photonics Technology Letters, 2013, 25(18): 1758-1761.

18.    Yang B, Jin X, Chen Y, et al. A tunable optoelectronic oscillator based on a dispersion-induced microwave photonic filter[J]. IEEE Photonics Technology Letters, 2013, 25(10): 921-924.

19.    Yang B, Jin X, Chi H, et al. Optically tunable frequency-doubling Brillouin optoelectronic oscillator with carrier phase-shifted double sideband modulation[J]. IEEE Photonics Technology Letters, 2012, 24(12): 1051-1053.

20.    Yang B, Jin X, Zhang X, et al. A wideband frequency-tunable optoelectronic oscillator based on a narrowband phase-shifted FBG and wavelength tuning of laser[J]. IEEE Photonics Technology Letters, 2011, 24(1): 73-75.


著作
专利成果

(1) 杨波; 赵红燕; 杨淑娜; 池灏; 欧军; 翟彦蓉; 吕韵欣 ; 主动锁模光电振荡器, 2021-7-30, 中国,

202010111150 .5 (专利)

(2) 杨波; 余纪文; 池灏; 杨淑娜; 翟彦蓉; 欧军 ; 一种基于主动锁模光电振荡器的双频段微波脉冲产生

装置及方法, 2023-04-28, 中国, CN202111645701.7 (专利)

(3) 杨波; 徐清; 池灏; 杨淑娜; 欧军; 翟彦蓉 ; 一种基于单比特量化的光子辅助压缩感知接收器及其实

现方法, 2022-03-25, 中国, CN202011637414.7 (专利)


荣誉及奖励
软件成果