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On
4 到 6 年
6 到 10 年
10 到 15 年
15 年以上
Avatar of Sayed Mohammad Ahmadi.
Avatar of Sayed Mohammad Ahmadi.
Data Analyst & IoT Software Developer @FARAZ ERTEBAT
2021 ~ 现在
Computer Vision / Deep Learning
一個月內
AI and computer vision. Data Scientist | Software Developer | Machine Learning | Deep Learning | Computer Vision | Object Detection | Face Recognition | TensorFlow | PyTorch | Django | C# | WCF | Micro-Services | MicroControllers | Arduino | IoT Work Experience Data Analyst & IoT Software Developer • FARAZ ERTEBAT AugustPresent - Software Developer using C++ and Python - Working with Qt - Including projects such as: • Development of 3G, 4G, and 5G mobile core • Artificial intelligence-based detection of toxins or healthiness of fish aquariums • Cargo vehicle tracking and IoT-based navigation technologies. Phd Student Lecturer • University of Qom SeptemberJulyPhD Student 2. Thesis Title: ""Control the accuracy reduction rate
C#
C/C++
MySQL
就职中
目前会考虑了解新的机会
全职 / 对远端工作有兴趣
4 到 6 年
University of Qom
Information Technology | Face Recognition
Avatar of 施啟華 (Scott).
Avatar of 施啟華 (Scott).
產品研發高級工程師 (Software Engineer) @USI環鴻科技
2019 ~ 现在
資深軟體工程師
三個月內
Other: Android App, Android framework, Linux driver porting, UBoot, Bluetooth printer, SQLite, Wi-Fi Languages: Chinese, English(TOEIC 550, A2) Project POC project Sprinkler (Raspberry Pi + LoRa device) Pen Display (Type-C DP/PD+Novatek NT68863+STM32F401+EMR sensor) Kiosk (NXP i.MX8m + QT GUI + USB NFC card reader + USB Camera) Thermostat (ESP32-WROOM+Ti CC1312R Sub 1GHz) e-Paper (i.MX7D/i.MXRT1060 +E-ink E-Paper) Streaming system (i.MX8m + Linux+ GStreamer + USB Camera) Pen display (Novatek NTEMR Sensor" LCD
JAVA
中打75-100
英打30/分
就职中
全职 / 对远端工作有兴趣
10 到 15 年
靜宜大學
資訊工程
Avatar of the user.
Avatar of the user.
系統設計師 @聯強國際
2017 ~ 现在
軟體工程師
超過一年
C
JAVA
Android app Developer
就职中
目前没有兴趣寻找新的机会
全职 / 对远端工作有兴趣
6 到 10 年
真理大學
資訊工程學系
Avatar of the user.
Avatar of the user.
曾任
Senior C++ QT Developer @Tood, Michael and James, Inc.
2019 ~ 2020
Senior Software Engineer
超過一年
Qt
Qt Creator
Visual C++
待业中
全职 / 我只想远端工作
6 到 10 年
University of Phoenix
Avatar of the user.
Avatar of the user.
Product Manager @FLUX Inc.
2020 ~ 现在
Product Manager
一個月內
Adobe XD
Qt Creator
Balsamiq Wireframes
就职中
全职 / 对远端工作有兴趣
6 到 10 年
國立台灣藝術大學 National Taiwan University of Arts
Department of Multimedia and Animation
Avatar of Taric.
Avatar of Taric.
技術Leader @日本LYC株式會社
2016 ~ 现在
專案主管
超過一年
人工智能分析現況,重新分配可用資源. 3 雷達系統、聲納系統程式語言:C/C++,平台:Linux(嵌入式系統)開發環境:Visual studio2019/Qt creator現況即時快速表示。 日本IT-FUTURE株式會社, 工程師, Jun 2016 ~ Aug 2016 跨國匯款系統之開發 程式語言:C,平台:Windows 資料庫:Oracle 旺矽科技
TOEIC
Excel
全职 / 对远端工作有兴趣
6 到 10 年
清華大學
動力機械所
Avatar of Taric Wu.
Avatar of Taric Wu.
Lead Software Engineer @LYC Corporation
2016 ~ 现在
超過一年
. Processable media: magnetic coupon, IC card, QR CODE paper coupon Trading method: cash, IC card, credit card According to current situation analysis , redistributing resources by AI. 3. Radar system, sonar system Programming language: C/C++, platform: Linux (embedded system) Development environment: Visual studio2019/Qt creator display of real-time status, quick indication, map, image, etc. Real-time big data processing IT-FUTURE, Software engineer, Jun 2016 ~ Aug 2016 Development of a multinational remittance system Programming language: C, platform: Windows7 Database: Oracle MPI Corporation, Software engineer, Oct 2013 ~ May 2016 Development of semiconductor
Excel
Word
Google Drive
全职 / 对远端工作有兴趣
6 到 10 年
National TsingHua University
Power Machanical Engineering

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职场能力评价定义

专业技能
该领域中具备哪些专业能力(例如熟悉 SEO 操作,且会使用相关工具)。
问题解决能力
能洞察、分析问题,并拟定方案有效解决问题。
变通能力
遇到突发事件能冷静应对,并随时调整专案、客户、技术的相对优先序。
沟通能力
有效传达个人想法,且愿意倾听他人意见并给予反馈。
时间管理能力
了解工作项目的优先顺序,有效运用时间,准时完成工作内容。
团队合作能力
具有向心力与团队责任感,愿意倾听他人意见并主动沟通协调。
领导力
专注于团队发展,有效引领团队采取行动,达成共同目标。
超過一年
台灣台南市
专业背景
目前状态
就学中
求职阶段
专业
前端开发人员
产业
软件
工作年资
小於 1 年
管理经历
技能
Python
Docker
Linux
C++
C#
Qt Creator
ROS
Tensorflow
Pandas Numpy
git版本控制系統
语言能力
English
进阶
求职偏好
希望获得的职位
AI工程師
预期工作模式
全职
期望的工作地点
台灣台北市, 台灣新竹市,
远端工作意愿
暂不考虑远端工作
接案服务
学历
学校
國立交通大學
主修科系
AI學院 智慧應用與系統
列印
Izouoqbu4hzzqxnyvrhr

LIU, YU-TING

Male | Age : 23  | Not in service

Once served as a summer intern in the Industrial Technology Research Institute, and also have two industry-university cooperation project experiences, and have practical experience in AI applications and ROS systems. The current thesis is the indoor and outdoor positioning system of GPS, Wifi and geomagnetism. In January 2021, I am expected to go to Norway as an exchange student to cultivate international team communication skills.

National Chiao Tung University | Institute of Intelligent Systems

AI engineer、 software engineer
Taichung,TW ,No. 40-6, Yongchun E. 2nd Rd., Nantun Dist.

+886 0972932761
[email protected] 


Skills


Programming language : Python 、C++、Verilog


AI design tool : Tensorflow 、 Pytorch


UI design tool : QT Creator 、 C#


Robot system : ROS


Virtual machine : Docker


Virsion control : Github

Educational background

NCTU, Master degree, Institute of Intelligent Systems, 2019 ~ 2021

The teaching content of the college emphasizes practical ability, and the courses mainly use practical results to score students.

Ogdhty0jbe9hrzqv3enp

NCU, Bachelor degree , Electrical Engineering , 2015 ~ 2019

Learn the basic knowledge of crystal circuit design, and find the enthusiasm for programming.

Jwmv6j78pbltvhlvguu0

Work experience

ITRI, Smart Front End Innovation Service Department, summer intern, 2019 年 7 月 - 2019 年 8 月

  •  Test Han Lai company's warehouse robot and developed a set of UI interface with C#.
  • Analyze the ROS navigation code and find out how to import the newly developed positioning algorithm into the original system.
  • Have the ability of independent development, active analysis and problem solving.

Experiences 00 00@2x

 Topic and Project Experience


Junior Independent Study
Intelligent seat belt warning system


2017 / 7  - 2018 / 6 

Design an APP program that combines magnetic induction and wifi technology, and make an external small sensor device attached to the seat belt, so that the car driver can use this intelligent seat belt warning device system to control the safety of the passengers at any time.


Senior Industry-University Cooperation Project
Automated guided vehicle near-end positioning
system

2018 / 3  - 2018 / 11 

Set up remote control through MODBUS communication protocol and ssh network transmission protocol, rewrite the register data of two servo motors, and manipulate the AGV. Using opencv and apriltag technology, the AGV can know the x, y, and the target position through the image. The z-coordinate offset and the quaternion are transferred between programs via ROS, and the Euler angle is calculated according to the conversion of the obtained quaternion, so as to know the angle with the vertical plane of the tag for near-end path planning.


Master Independent Study

Unmanned Overtaking System

2019 / 9  - 2020 / 1 

At present, most of the driverless systems we see on the market can only follow cars and single-lane automatic driving, and cannot change lanes or even overtake. Therefore, we use ROS robots to try to simulate the overtaking situation of self-driving cars. We train decision tree parameters through genetic algorithm, so that the self-driving car can use the ultrasonic sensor to judge the overtaking time by itself without external control, so as to complete the flexibility of automatic driving.

Paragraph image 06 00@2x
Paragraph image 06 01@2x
Paragraph image 06 02@2x

Master Independent Study

Collision warning system

2020 / 3  - 2020 / 6 

From some research on the "active safety protection system", we found that this system has considerable results in preventing accidents. However, the current vehicles on the road are mostly old cars that do not have this system installed. Therefore, we design an APP Use Tensorflow lite to perform vehicle identification and distance estimation on mobile phones, and give drivers voice reminders at appropriate times, in order to improve the driving safety of old cars.


Master Industry-University Cooperation Project

UAV swarm automatic tracking system

2020 / 7  - 2020 / 12

Through the UAV image, the UAV swarm can detect all the people appearing in a field, and the UAV swarm can share the identification results, so that different UAVs can see the same person and give the same ID, and when necessary, let the drone group track the moving path of the target person. The development content involves Re-ID within a single camera and Re-ID between multiple cameras, and is still under continuous development.


Paragraph image 06 00@2x
Paragraph image 06 01@2x

Language ability


English

Listening: Proficient | Speaking: Proficient | Reading: Proficient | Writing: Proficient

TOEIC 885 

Autobiololgy

       I am Liu, Yu-Ting, and I grew up in a warm family of four. My parents gave me enough support and freedom during my growing up and studying, shaped my independent and responsible personality, and allowed me to develop toward my interests and goals. I became interested in the application of software and language programming at the university, and the continuous exploration of interest led me to study at the Intelligent System and Application Institute of AI College of Jiaotong University.


 【Education experience】


        During my studies, what brought me the most growth was the experience of topic and industry-university cooperation projects.


         Before I studied the graduation topic "Intelligent Seat Belt Warning System", I was very new to arduino and app design, but thinking that this is an interesting topic, I started to find information from the Internet to learn, in each stage of development , Seeing that the system operates as we expected gave me a full sense of accomplishment. After finding the interest to invest in it, I completed the topic and was affirmed by the excellent work of Wanrun 2018 Innovation and Creativity Competition.


        The industry-university cooperation project of the senior gave me access to the linux system, python language and ROS operating system. With the previous experience in the topic, I can learn online and discuss with classmates if I don’t understand it. It only takes half a year to complete " Automated guided vehicle near-end positioning system ".


         The above experience made me no longer afraid to get in touch with new knowledge, so I started to take AI-related courses offered by the Institute of Information Technology, the Institute of Electrical Engineering, and Institute of Communication in the fourth year. Most of these courses require the payment of programming tasks, which also improved my practice. Ability.


         Study for Master degree, I came to AI academy. The academy emphasizes practical ability, and has to submit a independent study every semester, and with no restriction to the topic. It allows me to do whatever I want to try. I tried to use genetic algorithms to train decision tree parameters for the independent study of the first semester when I am master of first grade, "Unmanned Overtaking System", and successfully made our ROS robot achieve the desired action in the environment we set. The next semester's independent study "Collision Warning System" is to try to use tensorflow lite to allow the mobile phone to run neural network operations, and finally actually drive on the road to verify the feasibility of our study.


        The development of the "UAV swarm automatic tracking system" is a relatively innovative idea, so during the research process, I also cultivated my ability to read a lot of papers, find methods and integrate different paper programs. 


 【Interests】


        In my spare time, I often go out of school and play badminton with my golf friends. I also often go outdoors with my friends during holidays. Try not to let myself stay at home for a long time and keep in touch with others. This keeps my mind and body at their best. The state of being able to face and handle any affairs with an optimistic and positive attitude.


【Growth experience】


        During my studies, I cultivated the ability to learn independently, as well as the ability to communicate in teamwork and discussion. I think this is the key to maintaining competitiveness in the technological industry where technology is constantly advancing. Self-help learning allows me to constantly update my knowledge, and the cooperation and communication with others keeps my ideas from being limited. I have always been able to complete various studies and projects with the support of partners, and the teachers who continue to advise me to prevent me from getting lost in the process of growing up. 


【Future wish】 


        At present, the mainstream AI application is still in image processing, but in fact, some AI applications have recently been seen to accelerate the simulation speed or adjust the traditional PID parameters. These make me think that AI still has a lot of places that can come in handy. No one goes to research, therefore, in the future, I hope to continue to strengthen my capabilities, develop more AI-related applications, and bring more innovation to the company.

Thesis research

        The research direction of my thesis is an indoor and outdoor positioning system that combines GNSS, Wifi and geomagnetism. The goal is to judge the user's movement near the building door only through the information received in the user's mobile phone.


        My idea is to input the GNSS signal, the Wifi signal and the geomagnetic signal into three different AutoEncoders to get the Latent Code of the same dimension, then combine the three Latent Codes and input them into the LSTM, and locates the user’s current location every five seconds. The collection of training data is to combine the concept of fingerprint positioning. Several grids are defined near the entrance of the building. In each grid, GNSS, Wifi and geomagnetic signals are collected for a period of time. After training, the entire system needs to solve the grid ID where the user is located.


        For the GNSS part, I do not simply use the latitude and longitude given by the positioning system as location judgment information, but use GNSS raw data to calculate the pseudorange, ECEF, and lla coordinates of each satellite. For the Wifi part, I add noise to the RSSI value, and use the normalized value as the input of the neural network. The geomagnetism uses the three-dimensional Tesla intensity received by the mobile phone, take data that has done coordinate-corrected information with gravitational acceleration as input.


        The current progress is that I can use the GNSS raw data to figure out the pseudorange and use the satellite time stamp to enter the nasa ftp to download the ephemeris information closest to the current time. Through the ephemeris information, I can figure out the satellite’s current lla coordinates, wifi and the geomagnetic signal has also been pre-processed. The processed data is sent to three AutoEncoder + Fully connect layer models I designed for multi-task learning. After the latent code output by the encoder, it is reduced by pca through tsne, it is already possible to see that the data received at each location is effectively converging. The next stage will be a lstm positioning study combining three signals.

简历
个人档案
Izouoqbu4hzzqxnyvrhr

LIU, YU-TING

Male | Age : 23  | Not in service

Once served as a summer intern in the Industrial Technology Research Institute, and also have two industry-university cooperation project experiences, and have practical experience in AI applications and ROS systems. The current thesis is the indoor and outdoor positioning system of GPS, Wifi and geomagnetism. In January 2021, I am expected to go to Norway as an exchange student to cultivate international team communication skills.

National Chiao Tung University | Institute of Intelligent Systems

AI engineer、 software engineer
Taichung,TW ,No. 40-6, Yongchun E. 2nd Rd., Nantun Dist.

+886 0972932761
[email protected] 


Skills


Programming language : Python 、C++、Verilog


AI design tool : Tensorflow 、 Pytorch


UI design tool : QT Creator 、 C#


Robot system : ROS


Virtual machine : Docker


Virsion control : Github

Educational background

NCTU, Master degree, Institute of Intelligent Systems, 2019 ~ 2021

The teaching content of the college emphasizes practical ability, and the courses mainly use practical results to score students.

Ogdhty0jbe9hrzqv3enp

NCU, Bachelor degree , Electrical Engineering , 2015 ~ 2019

Learn the basic knowledge of crystal circuit design, and find the enthusiasm for programming.

Jwmv6j78pbltvhlvguu0

Work experience

ITRI, Smart Front End Innovation Service Department, summer intern, 2019 年 7 月 - 2019 年 8 月

  •  Test Han Lai company's warehouse robot and developed a set of UI interface with C#.
  • Analyze the ROS navigation code and find out how to import the newly developed positioning algorithm into the original system.
  • Have the ability of independent development, active analysis and problem solving.

Experiences 00 00@2x

 Topic and Project Experience


Junior Independent Study
Intelligent seat belt warning system


2017 / 7  - 2018 / 6 

Design an APP program that combines magnetic induction and wifi technology, and make an external small sensor device attached to the seat belt, so that the car driver can use this intelligent seat belt warning device system to control the safety of the passengers at any time.


Senior Industry-University Cooperation Project
Automated guided vehicle near-end positioning
system

2018 / 3  - 2018 / 11 

Set up remote control through MODBUS communication protocol and ssh network transmission protocol, rewrite the register data of two servo motors, and manipulate the AGV. Using opencv and apriltag technology, the AGV can know the x, y, and the target position through the image. The z-coordinate offset and the quaternion are transferred between programs via ROS, and the Euler angle is calculated according to the conversion of the obtained quaternion, so as to know the angle with the vertical plane of the tag for near-end path planning.


Master Independent Study

Unmanned Overtaking System

2019 / 9  - 2020 / 1 

At present, most of the driverless systems we see on the market can only follow cars and single-lane automatic driving, and cannot change lanes or even overtake. Therefore, we use ROS robots to try to simulate the overtaking situation of self-driving cars. We train decision tree parameters through genetic algorithm, so that the self-driving car can use the ultrasonic sensor to judge the overtaking time by itself without external control, so as to complete the flexibility of automatic driving.

Paragraph image 06 00@2x
Paragraph image 06 01@2x
Paragraph image 06 02@2x

Master Independent Study

Collision warning system

2020 / 3  - 2020 / 6 

From some research on the "active safety protection system", we found that this system has considerable results in preventing accidents. However, the current vehicles on the road are mostly old cars that do not have this system installed. Therefore, we design an APP Use Tensorflow lite to perform vehicle identification and distance estimation on mobile phones, and give drivers voice reminders at appropriate times, in order to improve the driving safety of old cars.


Master Industry-University Cooperation Project

UAV swarm automatic tracking system

2020 / 7  - 2020 / 12

Through the UAV image, the UAV swarm can detect all the people appearing in a field, and the UAV swarm can share the identification results, so that different UAVs can see the same person and give the same ID, and when necessary, let the drone group track the moving path of the target person. The development content involves Re-ID within a single camera and Re-ID between multiple cameras, and is still under continuous development.


Paragraph image 06 00@2x
Paragraph image 06 01@2x

Language ability


English

Listening: Proficient | Speaking: Proficient | Reading: Proficient | Writing: Proficient

TOEIC 885 

Autobiololgy

       I am Liu, Yu-Ting, and I grew up in a warm family of four. My parents gave me enough support and freedom during my growing up and studying, shaped my independent and responsible personality, and allowed me to develop toward my interests and goals. I became interested in the application of software and language programming at the university, and the continuous exploration of interest led me to study at the Intelligent System and Application Institute of AI College of Jiaotong University.


 【Education experience】


        During my studies, what brought me the most growth was the experience of topic and industry-university cooperation projects.


         Before I studied the graduation topic "Intelligent Seat Belt Warning System", I was very new to arduino and app design, but thinking that this is an interesting topic, I started to find information from the Internet to learn, in each stage of development , Seeing that the system operates as we expected gave me a full sense of accomplishment. After finding the interest to invest in it, I completed the topic and was affirmed by the excellent work of Wanrun 2018 Innovation and Creativity Competition.


        The industry-university cooperation project of the senior gave me access to the linux system, python language and ROS operating system. With the previous experience in the topic, I can learn online and discuss with classmates if I don’t understand it. It only takes half a year to complete " Automated guided vehicle near-end positioning system ".


         The above experience made me no longer afraid to get in touch with new knowledge, so I started to take AI-related courses offered by the Institute of Information Technology, the Institute of Electrical Engineering, and Institute of Communication in the fourth year. Most of these courses require the payment of programming tasks, which also improved my practice. Ability.


         Study for Master degree, I came to AI academy. The academy emphasizes practical ability, and has to submit a independent study every semester, and with no restriction to the topic. It allows me to do whatever I want to try. I tried to use genetic algorithms to train decision tree parameters for the independent study of the first semester when I am master of first grade, "Unmanned Overtaking System", and successfully made our ROS robot achieve the desired action in the environment we set. The next semester's independent study "Collision Warning System" is to try to use tensorflow lite to allow the mobile phone to run neural network operations, and finally actually drive on the road to verify the feasibility of our study.


        The development of the "UAV swarm automatic tracking system" is a relatively innovative idea, so during the research process, I also cultivated my ability to read a lot of papers, find methods and integrate different paper programs. 


 【Interests】


        In my spare time, I often go out of school and play badminton with my golf friends. I also often go outdoors with my friends during holidays. Try not to let myself stay at home for a long time and keep in touch with others. This keeps my mind and body at their best. The state of being able to face and handle any affairs with an optimistic and positive attitude.


【Growth experience】


        During my studies, I cultivated the ability to learn independently, as well as the ability to communicate in teamwork and discussion. I think this is the key to maintaining competitiveness in the technological industry where technology is constantly advancing. Self-help learning allows me to constantly update my knowledge, and the cooperation and communication with others keeps my ideas from being limited. I have always been able to complete various studies and projects with the support of partners, and the teachers who continue to advise me to prevent me from getting lost in the process of growing up. 


【Future wish】 


        At present, the mainstream AI application is still in image processing, but in fact, some AI applications have recently been seen to accelerate the simulation speed or adjust the traditional PID parameters. These make me think that AI still has a lot of places that can come in handy. No one goes to research, therefore, in the future, I hope to continue to strengthen my capabilities, develop more AI-related applications, and bring more innovation to the company.

Thesis research

        The research direction of my thesis is an indoor and outdoor positioning system that combines GNSS, Wifi and geomagnetism. The goal is to judge the user's movement near the building door only through the information received in the user's mobile phone.


        My idea is to input the GNSS signal, the Wifi signal and the geomagnetic signal into three different AutoEncoders to get the Latent Code of the same dimension, then combine the three Latent Codes and input them into the LSTM, and locates the user’s current location every five seconds. The collection of training data is to combine the concept of fingerprint positioning. Several grids are defined near the entrance of the building. In each grid, GNSS, Wifi and geomagnetic signals are collected for a period of time. After training, the entire system needs to solve the grid ID where the user is located.


        For the GNSS part, I do not simply use the latitude and longitude given by the positioning system as location judgment information, but use GNSS raw data to calculate the pseudorange, ECEF, and lla coordinates of each satellite. For the Wifi part, I add noise to the RSSI value, and use the normalized value as the input of the neural network. The geomagnetism uses the three-dimensional Tesla intensity received by the mobile phone, take data that has done coordinate-corrected information with gravitational acceleration as input.


        The current progress is that I can use the GNSS raw data to figure out the pseudorange and use the satellite time stamp to enter the nasa ftp to download the ephemeris information closest to the current time. Through the ephemeris information, I can figure out the satellite’s current lla coordinates, wifi and the geomagnetic signal has also been pre-processed. The processed data is sent to three AutoEncoder + Fully connect layer models I designed for multi-task learning. After the latent code output by the encoder, it is reduced by pca through tsne, it is already possible to see that the data received at each location is effectively converging. The next stage will be a lstm positioning study combining three signals.