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Titlebook: MRTD (Multi Resolution Time Domain) Method in Electromagnetics; Nathan A. Bushyager,Manos M. Tentzeris Book 2005 Springer Nature Switzerla

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Nathan A. Bushyager,Manos M. Tentzerisbiologists, molecular breeders, plant physiologists and biochemists, developmental biologists, and those interested in plant-microbe interactions.978-1-4939-6024-8978-1-62703-613-9Series ISSN 1064-3745 Series E-ISSN 1940-6029
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Nathan A. Bushyager,Manos M. Tentzerisbiologists, molecular breeders, plant physiologists and biochemists, developmental biologists, and those interested in plant-microbe interactions.978-1-4939-6024-8978-1-62703-613-9Series ISSN 1064-3745 Series E-ISSN 1940-6029
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MRTD Simulation Examples,n an MRTD simulation can be significantly larger. Using the method presented here, any structure that can be simulated in FDTD can be simulated with MRTD. In addition, the MRTD time-and-space adaptive grid can be applied to allow fewer grid points in the MRTD case.
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1932-1252 plicable to general structures. The multiresolution time-domain (MRTD) technique, as it is often called, is presented for general basis functions. Additional techniques that are presented here allow the modeling of complex structures using a subcell representation that permits the modeling discrete
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Introduction,gn time for each generation decreases while performance demands increase. Design turnaround and performance gains traditional to the semiconductor device market are being expected of RF circuits. This in turn leads to increased demands on the RF designer and all associated tools, such as EM simulators.
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Book 2005o general structures. The multiresolution time-domain (MRTD) technique, as it is often called, is presented for general basis functions. Additional techniques that are presented here allow the modeling of complex structures using a subcell representation that permits the modeling discrete electromag
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Background,asics, including wavelet basis functions and the method of moments, followed by a discussion of two specific areas, PML and PEC modeling. After these topics are addressed, an overview of FDTD, focusing on its similarities and differences with MRTD, is presented.
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Other Techniques Necessary for Simulation: UPML, Variable Gridding, Source Excitation and Time/Spacielectric media. In addition, it is shown that the method can be generalized to allow the modeling of several other subcell effects; a specific example is provided for lumped elements. The MRTD method that includes subcell elements and varying dielectrics within individual
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