Acceleration of finite difference time domain modeling using GPU and transfer functions with application to channel modeling
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Next generation communication technologies aim to use broadband and/or high frequency systems for commercial communications, including utilizing mmWave frequencies and ultra-wide bands. Channel modeling at these frequencies is currently the focus of extensive measurement campaigns. Application of the Finite Difference Time Domain (FDTD) method at mmWave frequencies is suitable for modeling the broadband system, but several challenges remain between it and practical implementation. This thesis shows practical, simple GPU implementations suitable for FDTD modeling using MATLAB for accelerating ...