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Concentrator and lens models for calculating the impulse response on IR‐wireless indoor channels using a ray‐tracing algorithm
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Citations
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References
2003
Year
Wireless CommunicationsImpulse ResponseEngineeringRadio FrequencyOptical Wireless CommunicationChannel ModelingRay‐tracing AlgorithmInstrumentationOptical SystemsRadiation ImagingWireless ModelingIr‐wireless Indoor ChannelsPhotonicsMonte CarloComputer EngineeringRadiometryMicrowave DiagnosticsRadio PropagationSignal ProcessingConcentrator FovIntensity ModulationChannel ModelWireless Propagation
Abstract This paper presents concentrator and lens models for the detector and emitter, respectively, upon which a Monte Carlo ray‐tracing algorithm allows the evaluation of impulse response on infrared (IR) wireless indoor channels. We also present computer simulation results that show the effects of concentrator FOV and reception direction on the impulse response, received optical power, and channel rms delay spread, which allow us to propose structures for angle‐diversity receivers. © 2003 Wiley Periodicals, Inc. Microwave Opt Technol Lett 36: 262–267, 2003; Published online in Wiley InterScience (www.interscience.wiley.com). DOI 10.1002/mop.10738
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