Nabin Kandel
Final Year Project
About
I possess a strong blend of technical expertise and problem-solving skills that enable me to design, implement, and optimize automated systems. With a background in engineering and a focus on automation, I excel in creating efficient and reliable processes that enhance productivity, reduce manual intervention, and ensure consistent outcomes. My work experience involves collaborating with cross-functional teams to identify areas where automation can make a significant impact. I have a deep understanding of various automation technologies, including PLCs (Programmable Logic Controllers), SCADA (Supervisory Control and Data Acquisition) systems, robotics, and IoT (Internet of Things) devices. This allows me to develop tailored solutions that cater to specific industry needs, whether in manufacturing, energy, healthcare, or other sectors. I am adept at programming and configuring automation systems, developing control algorithms, and integrating sensors and actuators to enable seamless communication between different components. Moreover, my keen eye for detail helps me identify potential bottlenecks or vulnerabilities in processes, enabling me to design robust fail-safe mechanisms. One of my key strengths is my ability to bridge the gap between technical complexity and practical applications. I can effectively communicate complex concepts to both technical and non-technical stakeholders, fostering a collaborative environment where everyone understands the benefits and functionalities of the automated systems I design. My personality is characterized by my passion for innovation and continuous improvement. I am always eager to stay up-to-date with the latest advancements in automation technology, and I enjoy tackling new challenges with creativity and determination. With a track record of successful projects that have streamlined operations, minimized errors, and elevated efficiency, I am dedicated to contributing to the ever-evolving field of Automation Engineering.
China
Hangzhou
Industrial Automation
C (Programming Language), Embedded C, PLC Programming, PLC Siemens, Embedded Systems, Embedded C++, Solid Modeling, Computer-Aided Design (CAD), PyTorch, MySQL, Linux, AIGC, Printed Circuit Board (PCB) Design, SQL, 中文, Chinese language, Data Entry, Customer Service, Writing, Troubleshooting
Experience

Final Year Project
Steering System of Electric Vehicles Model
The primary aim of this project is to address the common issue of faults in electric vehicle distribution networks, mirroring challenges seen in any power distribution system, whether at the supplier's end or the users. The project proposes an innovative fault detection and location model for the steering system of electric vehicles, integrating a microcontroller to advance the analysis digitally. The successful completion of this project involved a comprehensive analysis of the developed fault detection and location model. The project was presented and defended in front of a university committee, with the Head of the Department of Electrical Engineering leading the evaluation process. The committee assessed the project's contribution to electric vehicles and its potential impact on improving safety and reliability.

Semester Project
Communication Protocols
Implementing robust communication protocols to facilitate data exchange between different components of the automation system. This may involve using industry-standard protocols like Modbus or Ethernet/IP.

Semester Project
PLC-based Control System
I am implementing a PLC-based control system to manage and control different manufacturing processes. The PLC will serve as the central control unit, executing logic-based operations to ensure seamless coordination of various tasks.

Semester Project
Button-controlled Siren with different LED transitions
The objectives of this project are: I. To find different siren sounds such as police or ambulance sounds. II. To control different voices in one place.

Semester Project
Sensor using Arduino
Utilizing sensors to collect data from the manufacturing environment and actuators to control physical processes. Examples include proximity sensors, temperature sensors, and motors. The data collected will be used for decision-making and process optimization.
Education
Nabin Kandel's Contact Information
Phone
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