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This paper compares knife-edge diffraction, Uniform Theory of Diffraction, and Physical Optics models for predicting human blockage in 60 GHz millimeter-wave communications. See how each approach balances accuracy and scalability against real-world channel measurements, helping engineers optimize ray-tracing simulations.
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Using XFdtd electromagnetic simulations, researchers found that most energy traveling between headphones propagates around — not through — the human head. Explore how headphone configuration, materials, and placement influence coupling, signal behavior, and wireless performance, providing valuable insights for next-generation wearable device and antenna design.
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Discover how modeling and simulation streamline wireless system design, from optimizing complex base station antenna arrays to evaluating real-world field performance. This webinar highlights simulation-driven workflows that help engineers improve coverage, reduce development time, and make more informed design decisions.
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Discover how to design and optimize smart home devices using XFdtd and Wireless InSite in this webinar. Learn about the latest advancements in smart home solutions and how to establish reliable links between various devices.
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Validating modern RF systems through physical prototyping and over-the-air testing alone can be costly, time-consuming, and insufficient for capturing the countless real-world scenarios devices encounter. This presentation explores how integrating XFdtd® and Wireless InSite® creates RF digital twins that improve wireless system validation, reduce physical testing, and accelerate AI-driven design.
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5G And MIMO Simulation Software
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5G has pushed the boundaries of wireless communications and wireless device design. 5G simulation software provides a complete solution to meet these challenges, from system and MIMO antenna design through performance assessment in realistic, simulated environments, and planning for deployment in 5G networks.
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Download Application Note
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• Request Information
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