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About Me


Shangyang Wu

Email: wushangyang2018@163.com

Github: https://github.com/CaesarCaser

Homepage: www.wushangyang.cn


Education Background

  • NORTHEASTERN UNIVERSITY(NEU), CHINA
    • Ph.D. Candidate. in Computer Science and Technology(2024-now)
    • M.E. in Computer Science and Technology(2022-2024)
    • B.E. in Electronic information engineering GPA:3.6/5.0(2018-2022)

Internship

  • Data communication network business products department of HUAWEI(2023.07-2024.07)
    • Software Development Engineer, Integration Verification & Delivery Group
    • Responsible for the research and development of large-scale SRv6 network test tools, and the design and implementation of cluster deployment scheme

Project Experience

  • Design and Implementation of Distributed Scheduling Mechanism for Large-scale SRv6 Network(2023.07-2024.07)
    • Design a Graph segmentation algorithm to improve the simulation efficiency of large-scale SRv6 network topology
    • Design a distributed SDN controller framework based on Opendaylight to improve the bottleneck of large-scale SRv6 network service
  • Research on Intelligent Routing Mechanism Based on Deep Reinforcement Learning(2022.03-2023.06)
    • Design a routing forwarding strategy based on DDPG, the optimization goal is end-to-end delay and throughput
    • S. Wu, B. Yi, Y. Song and X. Wang, “An Intelligent Routing Mechanism Based on Deep Reinforcement Learning,” 2023 15th International Conference on Communication Software and Networks (ICCSN), Shenyang, China, 2023, pp. 1-5, doi: 10.1109/ICCSN57992.2023.10297377.
  • Weak signal detection device(2021.07-2021.08)
    • The main idea of the device is that the weak signal and the noise form the weak signal with noise through the adder, and then output to the eighth-order band-pass filter for filtering. The filter is respectively output to the follower and comparator to obtain a sinusoidal signal and a square wave signal in phase with it, which respectively enter the switch multiplier to output a semi-rectified signal, and then through the integrator, output a DC signal to the single chip microcomputer, which gives the amplitude of the detected signal. The measurement accuracy can reach within 100uV
  • Research Device for Nonlinear Distortion of Amplifier Based on MSP430G5529(2020.10-2020.11)
    • The whole system uses touch screen, MSP430g2553 chip and analog switch to control the output waveform and measure the output voltage. The final result can perfectly output various distortion waveforms through touch screen control and display THD (Total Harmonic Distortion Analysis) on the screen
    • First Prize of Electronic Design Competition for Undergraduate Students in Liaoning Province

Awards

  • First Prize of Electronic Design Competition for Undergraduate Students in Liaoning Province(2020)
  • Provincial Third Prize of the Ninth National Digital Art Design Competition for Colleges and Universities(2021)
  • The third prize of the 8th “Datang Cup” National College Students’ Mobile Communication 5G Technology Competition(2021)
  • Northeastern University First Class Scholarship(2023)
  • Smart Base Scholarship(2023)

Skills

  • Familiar with BGP, ISIS, SDN, SRv6
  • Programming languages: Java, Python, C++, C, Mathlab, Assembly
  • Languages:
    • Major: Chinese
    • Second: English(CET-6)

Social Practice

  • Volunteers of Hainan Small Animal Protection Association
  • Excellent Photography Team of National College Student Volunteers in Summer “三下乡” Social Practice(2020)
  • Member of Shaanxi Social Practice Group of Computer College, National Excellent Team of Summer Social Practice(2020)
  • President of Kendo Society of Northeastern University(2020-2021)
  • Vice Minister of Information Department of Youth League Committee, School of Computer Science, Northeastern University(2019-2020)

Hobbies

  • Badminton and Kendo
  • Video game and Board game
  • Programming, Reading, Cooking and Listening Music

吴尚洋

Email: wushangyang2018@163.com

Github: https://github.com/CaesarCaser

Homepage: www.wushangyang.cn


教育背景

  • 东北大学(NEU), 中国
    • 博士研究生 计算机科学与技术(2024-至今)
    • 硕士研究生 计算机科学与技术(2022-2024)
    • 本科 电子信息工程(2018-2022)

实习经历

  • 数据通信网络业务产品部,华为(2023.07-2024.07)
    • 软件开发工程师, 集成校验&交付组
    • 负责大规模SRv6网络测试工具的研发,与集群部署方案的设计与实现

项目经历

  • 面向大规模SRv6网络的分布式调度机制的设计与实现(2023.07-2024.07)
    • 设计一种图分割算法以提高大规模SRv6网络拓扑仿真效率
    • 基于Opendaylight设计分布式SDN控制器框架,改善大规模SRv6网络服务瓶颈
  • 基于深度强化学习的智能路由机制研究(2022.03-2023.06)
    • 设计了一种基于DDPG的路由转发策略,优化目标是端到端时延和吞吐量
    • S. Wu, B. Yi, Y. Song and X. Wang, “An Intelligent Routing Mechanism Based on Deep Reinforcement Learning,” 2023 15th International Conference on Communication Software and Networks (ICCSN), Shenyang, China, 2023, pp. 1-5, doi: 10.1109/ICCSN57992.2023.10297377.
  • 微弱信号检测装置(2021.07-2021.08)
    • 该装置旨在检测被噪声淹没的微弱信号,主要思路为将微弱信号和噪声通过加法器形成带噪微弱信号,再输出至八阶带通滤波器中进行滤波,滤波器分别输出至跟随器和比较器当中,得到一个正弦信号和一个与其同相的方波信号,分别进入开关乘法器,输出一个半整流信号,进而通过积分器,输出一个直流信号送至单片机,由单片机给出被检信号的幅值,经测量精度可达到100uV之内
  • 基于MSP430G5529的放大器非线性失真研究装置(2020.10-2020.11)
    • 整个系统通过触摸屏、MSP430g2553芯片以及模拟开关来控制输出的波形以及对输出电压的测量。最终结果可以完美地通过触摸屏控制输出各种失真波形并且在屏幕上显示THD(总谐波失真分析)
    • 辽宁省普通高等学校本科大学生电子设计竞赛省一等奖

所获奖项

  • 辽宁省普通高等学校本科大学生电子设计竞赛省一等奖(2020)
  • 第九届全国高校数字艺术设计大赛省三等奖(2021)
  • 第八届“大唐杯”全国大学生移动通信5G技术大赛省三等奖(2021)
  • 东北大学一等学业奖学金(2023)
  • 智能基座奖学金(2023)

个人技能

  • 熟悉BGP,ISIS协议,以及SDN框架和SRv6
  • 编程语言: Java, Python, C++, C, Mathlab, 汇编
  • 语言:
    • 母语: 中文,海南话(会一点点)
    • 第二语言: 英语(CET-6)

社会实践

  • 海南省小动物保护协会志愿者
  • 全国大中专学生志愿者暑期“三下乡”社会实践优秀摄影团队(2020)
  • 暑期社会实践国家优秀团队计算机学院赴陕西社会实践团成员(2020)
  • 东北大学剑道社社长(2020-2021)
  • 东北大学计算机科学与工程学院团委新闻部副部长(2019-2020)

兴趣爱好

  • 羽毛球和剑道
  • 电子游戏和桌游
  • 编程,阅读,做菜和听音乐