Assignment Experts
Advanced PhD Research Projects in MATLAB, Simulink, EV Systems, Power Electronics, and Control Engineering.
Supporting researchers and graduate students worldwide.
π www.phdresearchlabs.com
βPhD Research Simulations | MATLAB | EV | Power Electronics"
10/09/2026
Adaptive RBF Neural Network MPPT for Hybrid PV Wind Battery Supercapacitor DC Microgrid MATLAB
https://youtu.be/A8umLmhK_bs
Explore the modeling and simulation of a hybrid PV-Wind-Battery-Supercapacitor DC microgrid using an Adaptive Radial Basis Function (RBF) Neural Network for intelligent MPPT control. The simulation focuses on renewable energy integration, maximum power extraction, DC-link voltage regulation, battery-supercapacitor energy management, and dynamic microgrid performance.
Research Highlights:
β’ Hybrid PV-Wind renewable energy system
β’ Adaptive RBF Neural Network MPPT
β’ Battery and supercapacitor energy storage
β’ DC microgrid modeling
β’ Renewable power extraction and optimization
β’ DC-link voltage regulation
β’ Energy management and power balancing
β’ MATLAB Simulink simulation
Research Projects:
https://www.phdresearchlabs.com/projects.html
Email: [email protected]
WhatsApp: +91 86107 86880
Keywords:
Adaptive RBF Neural Network MPPT, RBF Neural Network MPPT, hybrid PV wind system, PV wind battery supercapacitor, DC microgrid, renewable energy microgrid, AI MPPT control, intelligent MPPT, adaptive MPPT, battery supercapacitor energy storage, hybrid renewable energy system, MATLAB Simulink, DC microgrid simulation, renewable energy integration, energy management system, power electronics research, PhD renewable energy project
Adaptive RBF Neural Network MPPT for Hybrid PV Wind Battery Supercapacitor DC Microgrid MATLAB Explore the modeling and simulation of a hybrid PV-Wind-Battery-Sup...
10/09/2026
IEEE 14 Bus Low Inertia Solar Grid with VSG Control Frequency & RoCoF Stability Analysis
https://youtu.be/JgJU9EOZmqk
IEEE 14-Bus Low-Inertia Solar Grid with VSG Control | Frequency & RoCoF Stability Analysis
Explore the modeling and stability analysis of an IEEE 14-Bus low-inertia solar power grid using Virtual Synchronous Generator (VSG) control. The simulation focuses on frequency stability, Rate of Change of Frequency (RoCoF), inertia support, renewable-grid integration, and dynamic response.
Key Research Areas:
β’ IEEE 14-Bus power system
β’ Low-inertia solar grid
β’ VSG control
β’ Frequency stability
β’ RoCoF analysis
β’ Virtual inertia and inertia emulation
β’ Renewable energy integration
β’ Grid-forming control
β’ Power-system dynamic stability
Research Projects:
https://www.phdresearchlabs.com/projects.html
Email: [email protected]
WhatsApp: +91 86107 86880
Keywords:
IEEE 14 bus solar grid, low inertia power system, VSG control, virtual synchronous generator, RoCoF stability analysis, frequency stability, solar grid stability, grid forming control, renewable energy integration, virtual inertia, inertia emulation, frequency regulation, power system dynamics, IEEE 14 bus system, inverter based resources, renewable power systems, power system stability, DIgSILENT PowerFactory, MATLAB Simulink, PhD power system research
IEEE 14 Bus Low Inertia Solar Grid with VSG Control Frequency & RoCoF Stability Analysis IEEE 14-Bus Low-Inertia Solar Grid with VSG Control | Frequency & R...
10/09/2026
PID Controlled Active Suspension for Enhanced Vehicle Ride Comfort MATLAB Simulink
https://youtu.be/mw-m7Whqa6U
PID-Based Active Vehicle Suspension for Ride Comfort & Vibration Reduction | MATLAB Simulink Simulation
Explore PID-controlled active suspension modeling and simulation for enhanced vehicle ride comfort using MATLAB Simulink.
This research-oriented simulation demonstrates how PID control can actively regulate suspension behavior to reduce vehicle body vibrations, vertical acceleration, suspension deflection, and road-induced disturbances.
Explore more research projects:
https://www.phdresearchlabs.com/projects.html
Email: [email protected]
WhatsApp: +91 86107 86880
PID Controlled Active Suspension for Enhanced Vehicle Ride Comfort MATLAB Simulink PID-Based Active Vehicle Suspension for Ride Comfort & Vibration Re...
10/09/2026
PSO-Optimized BESS Placement & Sizing for Solar EV Fast-Charging Microgrid | DIgSILENT PowerFactory
https://youtu.be/v689S0HKL1Q
Optimize Battery Energy Storage System (BESS) placement and sizing for a solar-powered EV fast-charging microgrid using Particle Swarm Optimization (PSO) in DIgSILENT PowerFactory 2024.
This research-focused simulation demonstrates how PSO can identify an optimal BESS location and capacity while supporting EV fast-charging demand, solar power integration, voltage stability, power-flow performance, and microgrid operation.
πΉ Research Highlights
PSO-based optimal BESS placement
BESS capacity sizing optimization
Solar PV integrated EV fast-charging microgrid
EV charging demand analysis
Power-flow and voltage analysis
Battery energy storage operation
Loss and system-performance evaluation
DIgSILENT PowerFactory 2024 modeling
Optimization-based microgrid planning
π Useful for:
PhD Researchers β’ Research Scholars β’ Electrical Engineering Students β’ EV Researchers β’ Smart Grid Researchers β’ Renewable Energy Researchers β’ Power System Researchers
π PhD Research Labs
www.phdresearchlabs.com
π§ [email protected]
π± WhatsApp: +91 86107 86880
PSO BESS placement, BESS sizing optimization, optimal BESS placement, solar EV fast charging microgrid, EV charging microgrid, Particle Swarm Optimization BESS, DIgSILENT PowerFactory 2024, PowerFactory BESS simulation, solar microgrid optimization, battery energy storage optimization, EV fast charging station, renewable energy microgrid, BESS planning, smart grid optimization, power system optimization, microgrid energy storage, EV charging research, PhD electrical engineering project
PSO-Optimized BESS Placement & Sizing for Solar EV Fast-Charging Microgrid | DIgSILENT PowerFactory Optimize Battery Energy Storage System (BESS) placement and sizing ...
10/09/2026
Python-Based Microgrid Fault Protection & Analysis | DIgSILENT PowerFactory 2024
https://youtu.be/LpY1R86cKrs
Learn how to implement Python-based microgrid fault protection and fault analysis using DIgSILENT PowerFactory 2024.
This research-oriented simulation demonstrates fault modeling, fault detection, protection logic, system response, and post-fault analysis in a microgrid environment using Python automation and DIgSILENT PowerFactory.
Microgrid fault modeling and simulation
Python-based PowerFactory automation
Fault detection and protection logic
Short-circuit and fault response analysis
Protection operation and fault isolation
Pre-fault and post-fault system comparison
Voltage, current and system response analysis
Power-system protection research workflow
π Useful for:
PhD Researchers | Research Scholars | Electrical Engineering Students | Microgrid Researchers | Power System Protection Researchers | MATLAB/DIgSILENT Researchers
π PhD Research Labs:
www.phdresearchlabs.com
π§ Email: [email protected]
π± WhatsApp: +91 86107 86880
Python Microgrid Fault Protection, Microgrid Fault Analysis, DIgSILENT PowerFactory 2024, PowerFactory Python, Python PowerFactory Automation, Microgrid Protection Simulation, Fault Detection Microgrid, Power System Fault Analysis, Short Circuit Analysis PowerFactory, Microgrid Protection Research, DIgSILENT Python Tutorial, Power System Protection, Microgrid Simulation, PhD Electrical Engineering Project, PowerFactory Research Project
04/09/2026
Hybrid PV-Battery-Supercapacitor EV with BLDC Motor Control | MATLAB Simulink Simulation
https://youtu.be/mvAlfzF74pg
Explore a hybrid PV-battery-supercapacitor electric vehicle system with BLDC motor control using MATLAB Simulink. The model demonstrates renewable energy integration, hybrid energy storage, battery/supercapacitor power management, and BLDC motor operation.
π¬ Key Features:
β’ PV Energy Integration
β’ Battery & Supercapacitor Hybrid Storage
β’ BLDC Motor Control
β’ EV Powertrain Modeling
β’ Energy Management & Power Flow
β’ MATLAB Simulink Simulation
π Ideal for PhD Researchers | Research Scholars | EV & Renewable Energy Researchers
π www.phdresearchlabs.com
π§ [email protected]
π² WhatsApp: +91 86107 86880
Hybrid PV Battery Supercapacitor EV, PV Battery EV, Supercapacitor EV, BLDC Motor Control, BLDC Motor MATLAB Simulink, EV Powertrain MATLAB, Hybrid Energy Storage System, PV Powered Electric Vehicle, MATLAB Simulink EV, EV Energy Management, Renewable Energy EV, Electric Vehicle Research
Hybrid PV-Battery-Supercapacitor EV with BLDC Motor Control | MATLAB Simulink Simulation Explore a hybrid PV-battery-supercapacitor electric vehicle system ...
04/09/2026
Grid-Forming Inverter Control for Islanded Microgrid Stability using MATLAB Simulink
https://youtu.be/Jd0gRZR-opk
This simulation demonstrates grid-forming inverter control for an islanded microgrid, focusing on voltage regulation, frequency stability, power sharing, and dynamic performance under load variations and disturbances.
π¬ Simulation Highlights:
Grid-forming inverter modeling
Islanded microgrid operation
Voltage and frequency regulation
Active & reactive power control
Load variation and disturbance analysis
Microgrid dynamic stability
MATLAB Simulink modeling and simulation
π Useful for:
PhD Researchers | Research Scholars | M.Tech/MS Students | Electrical Engineering Projects | Microgrid Research | IEEE Research
π Explore research projects:
www.phdresearchlabs.com
π§ [email protected]
π² WhatsApp: +91 86107 86880
Grid Forming Inverter, Grid Forming Inverter Control, Islanded Microgrid, Microgrid Stability, Grid Forming Control, GFM Inverter, Microgrid MATLAB Simulink, MATLAB Simulink Microgrid, Inverter Control MATLAB, Voltage Frequency Regulation, Islanded Microgrid Control, Microgrid Simulation, Renewable Energy Microgrid, Power Electronics, PhD Research Project, Electrical Engineering Project, IEEE Microgrid Research, MATLAB Research Project
Grid-Forming Inverter Control for Islanded Microgrid Stability | MATLAB Simulink Simulation Grid-Forming Inverter Control for Islanded Microgrid Stability usin...
01/09/2026
Droop-Controlled Grid-Forming Inverter for Islanded Microgrid Voltage & Frequency Regulation β‘
https://youtu.be/0izq_B2-nGM
This MATLAB Simulink simulation demonstrates a grid-forming (GFM) inverter with droop control for maintaining voltage and frequency stability in an islanded microgrid.
π¬ Simulation Highlights:
Grid-forming inverter modeling
Pβf and QβV droop control
Islanded microgrid operation
Voltage regulation
Frequency regulation
Active and reactive power control
Dynamic response and stability analysis
Renewable-energy-based microgrid applications
π Research Applications:
Useful for PhD research, thesis projects, journal publications, microgrid research, renewable energy integration, power electronics, inverter control, and MATLAB Simulink studies.
π Explore more engineering research projects:
www.phdresearchlabs.com
π§ [email protected]
droop control grid forming inverter, grid forming inverter MATLAB Simulink, islanded microgrid voltage regulation, islanded microgrid frequency regulation, droop controlled inverter, GFM inverter simulation, microgrid droop control, P-f Q-V droop control, inverter-based microgrid, renewable energy microgrid, microgrid stability analysis, voltage frequency control, MATLAB Simulink microgrid, power electronics research, PhD microgrid research
Droop-Controlled Grid-Forming Inverter for Islanded Microgrid Voltage & Frequency Regulation-MATLAB Droop-Controlled Grid-Forming Inverter for Islanded Microgrid Volta...
01/09/2026
CFD-Based Wind Flow & Aerodynamic Analysis of High-Rise Buildings | Simulation Study
https://youtu.be/6EbT2Ch1mTE
How does wind flow around a high-rise building, and where do critical aerodynamic effects occur? π¬οΈποΈ
This CFD-based simulation study investigates wind interaction with high-rise building structures, including airflow patterns, velocity distribution, pressure variation, flow separation, turbulence, and aerodynamic behavior.
π¬ Simulation Highlights
Wind Flow Around High-Rise Buildings
CFD-Based Aerodynamic Analysis
Velocity & Pressure Distribution
Flow Separation & Wake Formation
Turbulence Analysis
Building Aerodynamic Performance
Wind-Structure Interaction Study
Engineering Simulation & Visualization
π Research Applications
Useful for PhD researchers, civil engineering researchers, structural engineers, architectural engineering, CFD studies, wind engineering, thesis projects, and academic simulation research.
π‘ This type of CFD study can support research into building design optimization, wind-load assessment, urban aerodynamics, structural safety, and high-rise building performance.
CFD wind flow analysis, high rise building CFD, wind flow around buildings, aerodynamic analysis high rise building, CFD simulation building, computational fluid dynamics building, wind pressure analysis, building wind load simulation, high rise building aerodynamics, wind engineering CFD, turbulence analysis building, flow separation building, wake flow analysis, civil engineering CFD, structural engineering simulation, PhD CFD research, high rise building simulation, aerodynamic simulation study
CFD-Based Wind Flow & Aerodynamic Analysis of High-Rise Buildings | Simulation Study How does wind flow around a high-rise building, and where do critic...
26/08/2026
AI-Driven Spectrum Sensing in Cognitive Radio Networks | MATLAB Tutorial + Code
https://youtu.be/6hccynn74Pk
Explore AI-Based Spectrum Sensing for Cognitive Radio Networks with a complete MATLAB implementation. This research-oriented project demonstrates AI/ML-based spectrum occupancy detection, feature extraction, classifier training, SNR analysis, detection probability, and false-alarm evaluation.
π¬ Key Research Areas
AI & Machine Learning
Cognitive Radio Networks
Spectrum Sensing
Wireless Communication
MATLAB Implementation
Signal Processing
Detection Probability & SNR Analysis
PhD Research & Thesis Projects
π For PhD Researchers & Engineering Scholars
PhD Research Labs provides research-oriented simulation implementation and technical support across MATLAB Simulink, Python, AI/ML, wireless communication, power systems, EV, renewable energy, COMSOL, ANSYS, HFSS/CST and other engineering domains.
π Explore PhD Research Labs:
www.phdresearchlabs.com
π Project Link
π AI-Based Spectrum Sensing β Complete MATLAB Tutorial + Code:
View Project & MATLAB Implementation
https://www.phdresearchlabs.com/projects/ai-driven-spectrum-sensing-in-cognitive-radio-networks-complete-matlab-tutorial-plus-code.html
π¬ Related Research Projects
1. Wireless Communication System Design Using ADALM-PLUTO SDR in MATLAB
Useful for researchers working on SDR, wireless communication and MATLAB-based communication-system development.
View Related Project
2. Double-Sided LCC Compensation Network for Wireless Power Transfer
A related wireless/power-transfer research topic using MATLAB Simulink.
View Related Project
3. PhD Engineering Project Library
Browse additional research projects across AI/ML, wireless communication, MATLAB, power systems, EV, renewable energy and other engineering domains.
Explore All Research Projects
USA | UK | Australia | Canada | UAE | Germany | Singapore | India | Global PhD Scholars
π§ [email protected]
π± WhatsApp: +91 86107 86880
AI-Driven Spectrum Sensing in Cognitive Radio Networks | MATLAB Tutorial + Code Explore AI-Based Spectrum Sensing for Cognitive Radio Networks with...
Click here to claim your Sponsored Listing.
Category
Contact the school
Website
Address
London