B.Tech Electrical Engineering · 2023–2027

Harshit
Mishra

Power SystemsControl EngineeringData-Driven Analysis

Driven Electrical Engineering graduate with a strong analytical foundation and practical expertise in power systems, control systems, and data-driven engineering.

I work with MATLAB/Simulink, Python and Power BI to model complex physical systems, run detailed simulation studies and apply statistical analysis — turning transmission data, sensor logs and control models into engineering decisions.

2027
B.Tech EE
UPPTCL
Industrial Intern
3+
Hardware Projects
132kV
Substation Exposure

Kushinagar, Uttar Pradesh, India

Portrait of Harshit Mishra, Electrical Engineering student
Open to jobs  & internships
MATLAB / SimulinkPower SystemsPythonControl SystemsPower BIIoT & SensorsCircuit DesignData AnalysisMATLAB / SimulinkPower SystemsPythonControl SystemsPower BIIoT & SensorsCircuit DesignData Analysis

About Me

Engineering fundamentals, applied with modern computational tools

Driven Electrical Engineering graduate with a strong analytical foundation and practical expertise in power systems, control systems, and data-driven engineering.

Adept at leveraging tools like MATLAB/Simulink, Python, and Power BI to model complex physical systems, perform detailed simulation studies, and optimize operational efficiency.

Combines hands-on experience gained through academic research and industrial training with statistical analysis techniques to solve real-world engineering challenges.

Passionate about applying technical problem-solving to design, implement, and streamline next-generation energy and control solutions.

Snapshot

  • 132/33 kV

    Substation training exposure

  • 3

    Engineering projects delivered

  • MATLAB · Python · Power BI

    Core analysis stack

Focused on smart power systems, grid protection, EV charging technology and data-driven monitoring of electrical assets.

Professional Focus

Power Systems

Transmission, load flow and grid-level behaviour of high-voltage networks.

Control Systems

Closed-loop design, stability analysis and regulation strategies.

Electrical Simulation

MATLAB/Simulink models of converters, machines and power circuits.

System Modeling

Mathematical representation of physical and electrical systems.

Data Analysis

Statistical study of operational logs, load trends and efficiency.

Energy & EV Technologies

Charging architectures, power electronics and next-gen energy systems.

Education

Academic journey

Formal training in electrical engineering, built on a strong mathematics and physics foundation.

  1. 2023 – 2027Current

    Bachelor of Technology in Electrical Engineering

    Rajkiya Engineering College, Bijnor

    Affiliated with Dr. A.P.J. Abdul Kalam Technical University, Lucknow, Uttar Pradesh

  2. 2021 – 2022

    Intermediate Examination

    Nav Jeevan Mission School, Kushinagar, Uttar Pradesh

    Physics, Chemistry & Mathematics

Industrial Experience

Summer Training Intern — UPPTCL, Gorakhpur

Practical industrial training in high-voltage power transmission and substation operations at a 132/33 kV transmission substation.

01

Substation Operations & Layout Analysis

  • Practical exposure to high-voltage grid operations.
  • Analysis of line diagrams, transformer connections and circuit breaker mechanisms at a 132/33 kV transmission substation.
02

Power System Analysis & Monitoring

  • Assisted engineering teams in monitoring real-time load flow, voltage stability and transformer performance metrics.
  • Developed understanding of operational monitoring within regional power networks.
03

Fault Diagnosis & Protection Systems

  • Studied protection relay schemes, busbar arrangements and fault isolation protocols.
  • Learned how protection systems contribute to grid stability and outage reduction.
04

Data Log & Operational Reporting

  • Reviewed daily power consumption logs, peak-load trends and efficiency metrics.
  • Applied statistical analysis concepts to support load-balancing strategies.

Skills

Technical toolkit

Engineering domain knowledge paired with simulation, programming and analytics tooling.

Technical Skills

  • Simulation
  • System Modeling
  • Python
  • Statistics
  • Data Visualization

Engineering & Domain Expertise

  • Power Systems
  • Control Systems
  • Electrical System Simulation
  • Energy Systems
  • EV Technologies
  • Protection Systems
  • Engineering Data Analysis

Tools

  • MATLAB/Simulink
  • Power BI
  • MS Word
  • MS Excel
  • MS PowerPoint

Projects

Simulation, power electronics and IoT engineering work

Each project pairs electrical fundamentals with modelling, control design or data-driven monitoring.

Project 01

Featured

Wireless Electric Vehicle Charging System Using Inductive Power Transfer

  • MATLAB/Simulink
  • EV Charging
  • IPT
  • Power Electronics
  • CC-CV
  • Control Systems

An advanced power-electronics and EV technology project: a contactless charging system built on high-frequency resonant inductive coupling, modelled end-to-end in MATLAB/Simulink.

Main contribution

Complete simulation of the IPT power stage with resonant compensation and closed-loop CC-CV battery charging control.

Inductive Power Transfer Design

  • Designed and simulated a contactless EV charging circuit.
  • Used high-frequency resonant coupling between transmitter and receiver coils.

Power Electronics & Resonant Compensation

  • Implemented high-frequency AC-DC/DC-AC inverter topologies.
  • Developed resonant compensation networks using MATLAB/Simulink.
  • Focused on efficient wireless power transfer.

Battery Charging Control

  • Developed closed-loop Constant Current/Constant Voltage (CC-CV) charging logic.
  • Designed control strategies for safe voltage regulation and improved battery State of Charge (SOC) management.

Project 02

IoT & AI-Based Transformer Health Monitoring System

  • Arduino
  • IoT Sensors
  • Cloud Analytics
  • Predictive Maintenance
  • Protection

A smart predictive-maintenance solution for electrical transformers combining multi-parameter sensing, cloud analytics and automated protection.

Main contribution

Sensor-to-cloud monitoring pipeline with trend-analysis thresholds driving real-time relay protection.

Multi-Parameter Sensor Integration

  • Real-time monitoring using Arduino and voltage, current, temperature and gas sensors.

Cloud Analytics & Predictive Maintenance

  • Live sensor data transmitted to an IoT cloud database.
  • Statistical thresholding and trend-analysis algorithms used to identify potential thermal runaway and insulation-failure conditions.

Automated Fault Protection

  • Real-time relay switching for high-power contactor tripping.
  • Automatic activation of auxiliary cooling fans during over-temperature or over-current conditions.

Project 03

Smart Indoor Service and Surveillance Robot

  • ESP32
  • IoT Sensors
  • Robotics
  • Wi-Fi
  • Automation

An intelligent indoor robotic platform with autonomous navigation, live video streaming and multi-sensor hazard detection.

Main contribution

Embedded navigation and sensor-event logic with a Wi-Fi dashboard for remote control and monitoring.

Autonomous Navigation & Obstacle Avoidance

  • Indoor mobile platform using ultrasonic sensors and motor drivers.
  • Designed for navigation through complex indoor spaces and obstacle avoidance.

Real-Time Video Streaming & Remote Control

  • Integrated ESP32 camera module.
  • Implemented Wi-Fi architecture for live video streaming through a web portal / mobile dashboard.

Safety & Hazard Mitigation

  • Multi-sensor event logic for detecting thermal/fire anomalies.
  • Automated visual/audible alarms and emergency actuator responses.

Engineering Interests

Where I want to build next

Smart Power Systems
Renewable & Next-Generation Energy Systems
Electrical Protection & Grid Stability
Control & Automation
Electric Vehicles
Wireless Power Transfer
Predictive Maintenance
IoT-Based Electrical Monitoring
Data-Driven Engineering

What I Work On

Areas of expertise and project interest

These are the technical areas I actively build and study in — presented as engineering capabilities and project interests, not paid services.

Electrical System Simulation

Building and validating circuit and machine models for design studies.

MATLAB/Simulink Modeling

Block-level modelling of converters, controllers and power stages.

Power System Analysis

Load flow, voltage stability and transmission-network behaviour.

Control-System Development

Closed-loop regulation logic, tuning and stability assessment.

Engineering Data Analysis

Statistical interpretation of operational and sensor datasets.

Electrical Monitoring & Automation

IoT instrumentation, alarms and automated protection responses.

Let's Connect

Open to internships, graduate roles and engineering collaboration

Reach out about power systems, simulation, control engineering or EV technology work — I'd be glad to talk.