The New ADE-TLM Algorithm for Modeling Debye Medium

IF 0.8 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC International Journal of Electrical and Computer Engineering Systems Pub Date : 2023-12-12 DOI:10.32985/ijeces.14.10.5
E. H. El ouardy, Hanan El Faylali
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Abstract

In this paper, we present a novel approach to simulating the interaction between electromagnetic waves and a Debye medium utilizing a Transmission Line Matrix (TLM) algorithm with the symmetrical condensed node (SCN-TLM) technique. The proposed method utilizes the polarization current within the media and incorporates the auxiliary differential equation (ADE) technique to handle scattering following the conventional discretization process. The averaged approximation is employed to utilize the polarization current density J and the electric voltage. By reducing the number of operations required per iteration, the New ADE- TLM method has successfully decreased the computational time compared to time convolution techniques. Despite this reduction in computational time, the New ADE-TLM method maintains a numerical accuracy that is comparable to that of time convolution techniques. The efficiency and precision of this approach are confirmed by the agreement between the results obtained and those predicted by the analytic model.
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用于德拜介质建模的新型 ADE-TLM 算法
在本文中,我们提出了一种模拟电磁波与德拜介质之间相互作用的新方法,即利用对称凝聚节点(SCN-TLM)技术的传输线矩阵(TLM)算法。所提出的方法利用了介质中的极化电流,并结合了辅助微分方程 (ADE) 技术来处理传统离散化过程中的散射问题。平均近似用于利用极化电流密度 J 和电压。通过减少每次迭代所需的运算次数,与时间卷积技术相比,新 ADE- TLM 方法成功地减少了计算时间。尽管计算时间减少了,但新 ADE-TLM 方法的数值精度仍与时间卷积技术相当。获得的结果与分析模型预测的结果之间的一致性证实了这种方法的效率和精确性。
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来源期刊
CiteScore
1.20
自引率
11.80%
发文量
69
期刊介绍: The International Journal of Electrical and Computer Engineering Systems publishes original research in the form of full papers, case studies, reviews and surveys. It covers theory and application of electrical and computer engineering, synergy of computer systems and computational methods with electrical and electronic systems, as well as interdisciplinary research. Power systems Renewable electricity production Power electronics Electrical drives Industrial electronics Communication systems Advanced modulation techniques RFID devices and systems Signal and data processing Image processing Multimedia systems Microelectronics Instrumentation and measurement Control systems Robotics Modeling and simulation Modern computer architectures Computer networks Embedded systems High-performance computing Engineering education Parallel and distributed computer systems Human-computer systems Intelligent systems Multi-agent and holonic systems Real-time systems Software engineering Internet and web applications and systems Applications of computer systems in engineering and related disciplines Mathematical models of engineering systems Engineering management.
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