Publication | Open Access
Fast-Fourier-transform based numerical integration method for the Rayleigh-Sommerfeld diffraction formula
323
Citations
16
References
2006
Year
Numerical AnalysisNumerical Method For Partial Differential EquationRayleigh-sommerfeld Diffraction IntegralNumerical ComputationEngineeringPhysicsDirect IntegrationWave ScatteringFft-based Angular SpectrumHigh-frequency ApproximationComputational ElectromagneticsComputational MechanicsNumerical Integration MethodApproximation TheoryBoundary Element MethodDiffractive Optic
The numerical calculation of the Rayleigh-Sommerfeld diffraction integral is investigated. The implementation of a fast-Fourier-transform (FFT) based direct integration (FFT-DI) method is presented, and Simpson's rule is used to improve the calculation accuracy. The sampling interval, the size of the computation window, and their influence on numerical accuracy and on computational complexity are discussed for the FFT-DI and the FFT-based angular spectrum (FFT-AS) methods. The performance of the FFT-DI method is verified by numerical simulation and compared with that of the FFT-AS method.
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