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Senior Software Engineer @Wistron Neweb Corporation
2016 ~ Present
Signal processing engineer
Within three months
Modick Basnet Taiwan [email protected] https://www.linkedin.com/in/modickbasnet As a seasoned DSP engineer with over 7 years of experience, I have honed my skills to not only troubleshoot existing problems but also to innovate new solutions whenever the need arises. From my early days as a student to my current role as an Engineer at WNC, I've consistently applied the foundational skills I acquired to analyze and solve complex challenges. My expertise extends beyond algorithm development and signal processing; I actively contribute to the design
C/C++
Matlab
Signal Processing
Unemployed
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Full-time / Interested in working remotely
6-10 years
Emeritus
Machine Learning
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Senior AI Research/Engineer (part-time) @NeuroBonic Inc.
2022 ~ 2023
AI工程師、機器學習工程師、深度學習工程師、資料科學家、Machine Learning Engineer、Deep Learning Engineer、Data Scientist
Within one month
Python
PyTorch
Machine Learning
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4-6 years
National Yang Ming Chiao Tung University
Computer Science
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DSP演算法工程師 @開酷科技股份有限公司
2022 ~ Present
Algorithm Engineer
Within one year
Digital Signal Processing
Algorithm Development
Signal Processing
Employed
Full-time / Interested in working remotely
4-6 years
National Cheng Kung University
computer science
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Software Engineer @方見科技
2023 ~ Present
Firmware Engineer, Firmware Developer, Embedded Software Engineer
Within one month
C
C++
C#
Employed
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4-6 years
中原大學
電機工程
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產品工程師 測試工程師
Within six months
tester 4.Burn-in test&Relibility (HTOL,ELFRreport automation by VBA & perl 6.non-volatile memory(非揮發性記憶體) 7.volatile memory(DDR2,DDRExperince 2007/JUL/JUL Army 10th Corps Command Headquarters Company Musician 2008/AUG/JNU SPIL Mix-signal unit Product Engineer (in shift ) Job function: 1.Maintain product & test program 2.To monitor the test quality & to verify the abnormal sample 3.Trouble shooting with production line 2009/SEP/OCT KYEC LCP(Logic CP test unit) Product Engineer Job function: 1.
Excel
Outlook
PowerPoint
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6-10 years
逢甲大學
電子工程學系

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臺灣積體電路製造股份有限公司
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Print

李柏豫 Katakura Kazuyuki

  • Majoring at National Cheng Kung University for a Master's degree
  • Graduated from National Chung Cheng University
  • phone:0978916704
  • email:[email protected] 

  Taiwan  

Profile

  I specialize in designing programs and AI models. Massive passion and endurance are the parts that improve my professional ability. When majoring in college,I realized the importance of independence to solve problems while doing experiments on a special topic. Different subjects of communication systems and networks create a lot of challenges for me and fulfill my knowledge.The enthusiasm for learning  is the key part of promotion.

The field of research is communication systems, OFDM, adaptive signal process, DigItal Image Processing in CSP lab.The experience of these theories would enhance the comprehension.


Programing(Competition)


  • C
  • C++(ECC in Wise GUI Industrial Technology Research Institute)
  • Java
  • Java script
  • python
  • Matlab

Language


  • Chinese 
  • Japanese 
  • English 

Knowledge 


  • Digital Signal Process
  • Machine Learning
  • Error Correction Code(ECC)
  • Operation System
  • Control System
  • Computer Organization

Education

2021 - 2023(studying)

National Cheng Kung University

Institute Computer and Communication Engineering Department

Graduate student,Communication Signal Process(CSP) labs,by Prof.Ming -Xian Chang.






2017 - 2021(graduated)

National Chung Cheng University

 Communication Engineering Department

University student,Joint Source Channel Coding labs,by Prof.Chang-Ming Lee


Experience

Satorius - Cell instance Segmentation Competition--Kaggle competition

 

The result of cell segmetation

  Detect and delineate distinct objects of interest in biological images depicting neuronal cell types commonly used in the study of neurological disorders. It applied RCNN model extracts features in the image and learns characteristics through the Neural network.The cell segmentation at high accuracy is one target in this competition.

  In this case, our team use Mask-RCNN model to process the image. To detect the fuzzy cell, adjusting parameters and image preprocessing improve the algorithm in machine learning

Special Topic

Performance of  Polar code applied in VLC(Visual Light Communication)  system

  The topic is the application of Error Correction Code on the Android system. The cellphone transmits the packet of information by QR code. Using grouping skills and adjusting the Fisheyes lens improves the recognition rate. 

  The research focuses on a comparison of performance to ECC, like the Reed-Solomon code, Polar code, LDPC code.The final result of Polar code shows the benefits of BER at a high bit rate . 


Waymo dataset competition( 2D and 3D object detection)

 We use Fast-RCNN and SSD-Resnet to train on the Waymo dataset, which is provided by Google.In this case,we focus on the preprocessing of the data and warm-up the dataset to enhance the performance to predict the  objection.





NOMA Transmission Signal Model


System Model of the MIMO-NOMA



Thesis

  

  Non-orthogonal multiple access (NOMA) is a promising technique for achieving high spectral efficiency in wireless communication systems. Unlike traditional orthogonal multiple access (OMA), NOMA allows multiple users to share the same frequency resources by superimposing their signals. By allocating user's transmit power based on each users channel conditions and combining it with multiple antennas, NOMA can increase system throughput and reduce transmission error rates. However, NOMA also introduces interference between users, which poses significant challenges for signal detection and decoding.


  In this thesis, we propose a novel approach that combines gradient search with interference cancellation to mitigate interference in NOMA systems. We use a multiple-input multiple-output (MIMO) system with non-orthogonal multiple access in the downlink transmission. we propose an algorithm approach that combines gradient search with interference cancellation to alleviate interference in NOMA systems. By utilizing this approach, we aim to enhance the performance of NOMA systems in terms of throughput and error rate, ultimately improving the overall efficiency of wireless communication systems.




Resume
Profile

李柏豫 Katakura Kazuyuki

  • Majoring at National Cheng Kung University for a Master's degree
  • Graduated from National Chung Cheng University
  • phone:0978916704
  • email:[email protected] 

  Taiwan  

Profile

  I specialize in designing programs and AI models. Massive passion and endurance are the parts that improve my professional ability. When majoring in college,I realized the importance of independence to solve problems while doing experiments on a special topic. Different subjects of communication systems and networks create a lot of challenges for me and fulfill my knowledge.The enthusiasm for learning  is the key part of promotion.

The field of research is communication systems, OFDM, adaptive signal process, DigItal Image Processing in CSP lab.The experience of these theories would enhance the comprehension.


Programing(Competition)


  • C
  • C++(ECC in Wise GUI Industrial Technology Research Institute)
  • Java
  • Java script
  • python
  • Matlab

Language


  • Chinese 
  • Japanese 
  • English 

Knowledge 


  • Digital Signal Process
  • Machine Learning
  • Error Correction Code(ECC)
  • Operation System
  • Control System
  • Computer Organization

Education

2021 - 2023(studying)

National Cheng Kung University

Institute Computer and Communication Engineering Department

Graduate student,Communication Signal Process(CSP) labs,by Prof.Ming -Xian Chang.






2017 - 2021(graduated)

National Chung Cheng University

 Communication Engineering Department

University student,Joint Source Channel Coding labs,by Prof.Chang-Ming Lee


Experience

Satorius - Cell instance Segmentation Competition--Kaggle competition

 

The result of cell segmetation

  Detect and delineate distinct objects of interest in biological images depicting neuronal cell types commonly used in the study of neurological disorders. It applied RCNN model extracts features in the image and learns characteristics through the Neural network.The cell segmentation at high accuracy is one target in this competition.

  In this case, our team use Mask-RCNN model to process the image. To detect the fuzzy cell, adjusting parameters and image preprocessing improve the algorithm in machine learning

Special Topic

Performance of  Polar code applied in VLC(Visual Light Communication)  system

  The topic is the application of Error Correction Code on the Android system. The cellphone transmits the packet of information by QR code. Using grouping skills and adjusting the Fisheyes lens improves the recognition rate. 

  The research focuses on a comparison of performance to ECC, like the Reed-Solomon code, Polar code, LDPC code.The final result of Polar code shows the benefits of BER at a high bit rate . 


Waymo dataset competition( 2D and 3D object detection)

 We use Fast-RCNN and SSD-Resnet to train on the Waymo dataset, which is provided by Google.In this case,we focus on the preprocessing of the data and warm-up the dataset to enhance the performance to predict the  objection.





NOMA Transmission Signal Model


System Model of the MIMO-NOMA



Thesis

  

  Non-orthogonal multiple access (NOMA) is a promising technique for achieving high spectral efficiency in wireless communication systems. Unlike traditional orthogonal multiple access (OMA), NOMA allows multiple users to share the same frequency resources by superimposing their signals. By allocating user's transmit power based on each users channel conditions and combining it with multiple antennas, NOMA can increase system throughput and reduce transmission error rates. However, NOMA also introduces interference between users, which poses significant challenges for signal detection and decoding.


  In this thesis, we propose a novel approach that combines gradient search with interference cancellation to mitigate interference in NOMA systems. We use a multiple-input multiple-output (MIMO) system with non-orthogonal multiple access in the downlink transmission. we propose an algorithm approach that combines gradient search with interference cancellation to alleviate interference in NOMA systems. By utilizing this approach, we aim to enhance the performance of NOMA systems in terms of throughput and error rate, ultimately improving the overall efficiency of wireless communication systems.