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Showing posts from December, 2025

Capacitive Power Transfer (CPT) Simulation in ANSYS Maxwell | Wireless P...

Capacitive Power Transfer (CPT) Simulation in ANSYS Maxwell | Wireless Power Transfer FEM Analysis 📞 ANSYS / Maxwell Project & Research Support 🌐 Website: www.matlabprojectscode.com 📧 Email: matlabprojectscode@gmail.com 📱 WhatsApp: +91 8300015425 This video demonstrates a Capacitive Power Transfer (CPT) system simulated using ANSYS Maxwell, focusing on electric-field-based wireless power transfer between capacitive coupling plates. The simulation explains how power is transferred through displacement current using electrostatic coupling, making CPT suitable for low-power wireless charging and contactless energy transfer applications. The model includes multi-plate capacitive couplers, excitation setup, electrostatic field analysis, voltage and electric potential distribution, capacitance extraction, coupling behavior, and power transfer characteristics. ANSYS Maxwell is used to visualize electric field intensity, surface charge distribution, and potential contours, providin...

Circular Microstrip Patch Antenna with Dual Band-Notched Characteristics...

This video presents the design and simulation of a Circular Microstrip Patch Antenna with Dual Band-Notched Characteristics developed for Ultra-Wideband (UWB) communication systems. The antenna is designed to operate over the UWB frequency range while effectively rejecting two specific interference bands using band-notch techniques. The proposed antenna employs a circular radiating patch structure with embedded slots / parasitic elements to achieve dual band-notched behavior, ensuring immunity from interference caused by WLAN, WiMAX, and other narrowband wireless systems. The antenna performance is analyzed using full-wave electromagnetic simulation tools (HFSS / CST / ANSYS), and key parameters such as S-parameters (S11), VSWR, radiation patterns, gain, efficiency, surface current distribution, and notch bandwidths are evaluated. This project is highly suitable for final-year engineering students, MTech/MS theses, PhD research, and IEEE journal-oriented antenna design studies in UW...

Design of a Hybrid Metasurface Dual-Band Circularly Polarized Antenna fo...

Design of a Hybrid Metasurface Dual-Band Circularly Polarized Antenna for Sub-6 GHz 5G Applications 📞 Antenna Design & Research Support 🌐 Website: www.matlabprojectscode.com 📧 Email: matlabprojectscode@gmail.com 📱 WhatsApp: +91 8300015425 This video presents the design and simulation of a Hybrid Metasurface-Based Dual-Band Circularly Polarized (CP) Antenna developed for Sub-6 GHz 5G communication applications. The antenna utilizes a metasurface structure combined with a compact radiating element to achieve dual-band operation, circular polarization, enhanced gain, and improved impedance bandwidth. The proposed antenna is designed and analyzed using full-wave electromagnetic simulation tools (such as HFSS/CST/ANSYS), and key performance parameters including S-parameters (S11), axial ratio (AR), radiation patterns, gain, efficiency, and surface current distribution are evaluated. Hybrid metasurface integration significantly improves polarization purity, bandwidth, and radiat...