An official invitation letter will be provided upon successful registration for your participation in the conference.
학술대회 참가 등록이 정상적으로 완료되면 공식 초청장이 발급됩니다.
Plenary, keynote and parallel sessions.
전체회의, 기조연설 및 분과 세션.
Connect with fellow researchers.
동료 연구자들과의 교류.
Digital certificate of participation.
디지털 참가 증명서 발급.
Official letter after successful registration.
등록 완료 후 공식 초청장 발급.
E-proceedings & resource materials.
전자 논문집 및 참고 자료.
Learn from leading experts & scholars.
저명한 전문가 및 학자들의 강연.
The conference's session tracks effectively support the following SDGs.
본 학술대회의 세션 트랙은 다음의 지속가능발전목표를 효과적으로 지원합니다.
This track focuses on innovative computational techniques for solving complex electromagnetic problems. Contributions may include novel algorithms, numerical methods, and their applications in various fields of electromagnetics.
This session explores the integration of machine learning techniques in the analysis and prediction of wave propagation phenomena. Papers may discuss new models, data-driven approaches, and case studies demonstrating practical applications.
This track highlights the role of high-performance computing in enhancing the efficiency and accuracy of electromagnetic simulations. Contributions should address parallel computing strategies, optimization techniques, and case studies.
This session invites papers that apply statistical modeling techniques to analyze electromagnetic data and phenomena. Topics may include uncertainty quantification, regression models, and Bayesian approaches.
This track focuses on optimization methods tailored for computational electromagnetics applications. Submissions may cover algorithm development, performance evaluation, and real-world applications.
This session addresses the intersection of signal processing and electromagnetics, focusing on techniques for analyzing and interpreting electromagnetic signals. Contributions may include innovative algorithms and applications in communication and radar systems.
This track explores the application of data science methodologies to the study of electromagnetic fields. Papers may discuss data analytics, visualization techniques, and machine learning applications in field analysis.
This session invites contributions on numerical simulation methods for wave propagation analysis. Topics may include finite element methods, finite difference methods, and their applications in various engineering fields.
This track focuses on the computational analysis and design of antennas using advanced numerical methods. Papers may discuss innovative designs, performance optimization, and real-world applications.
This session emphasizes quantitative analysis techniques used in electromagnetic research. Contributions may include statistical evaluations, modeling approaches, and their implications for theoretical and applied studies.
This track explores the role of artificial intelligence in enhancing electromagnetic applications. Papers may cover AI-driven methodologies, case studies, and the impact of AI on traditional computational techniques.