Uses of Package
com.irurueta.navigation.indoor.radiosource
Packages that use com.irurueta.navigation.indoor.radiosource
Package
Description
Estimates radio sources using Wi-Fi/Beacons signals.
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Classes in com.irurueta.navigation.indoor.radiosource used by com.irurueta.navigation.indoor.radiosourceClassDescriptionThis is an abstract class to robustly estimate position, transmitted power and path loss exponent of a radio source (e.g.Listener defining events of RangingAndRssiRadioSourceEstimatorException raised if radio source estimation fails.Estimates a radio source.Listener defining events of RssiRadioSourceEstimatorEstimates position, transmitted power and path loss exponent of a radio source (e.g.Estimates 2D position, transmitted power and path loss exponent of a radio source (e.g.Estimates 3D position, transmitted power and path loss exponent of a radio source (e.g.Listener defining events of RangingAndRssiRadioSourceEstimatorEstimates position of a radio source (e.g.Estimates position of a radio source (e.g.Estimates position of a radio source (e.g.Listener defining events of RangingRadioSourceEstimatorRobustly estimates a radio source.Listener to be notified of events produced by a robust radio source estimator when estimation starts, ends or when progress changes.This is an abstract class to robustly estimate position, transmitted power and path-loss exponent of a radio source (e.g.Contains a solution obtained during robust estimation for a subset of samples.This is an abstract class to robustly estimate 2D position, transmitted power and path-loss exponent of a radio source (e.g.This is an abstract class to robustly estimate 3D position, transmitted power and path-loss exponent of a radio source (e.g.Listener to be notified of events produced by a ranging and RSSI robust radio source estimator when estimation starts, ends or when progress changes.This is an abstract class to robustly estimate position of a radio source (e.g.Contains a solution obtained during robust estimation for a subset of samples.This is an abstract class to robustly estimate 2D position of a radio source (e.g.This is an abstract class to robustly estimate 3D position of a radio source (e.g.Listener to be notified of events produced by a ranging robust radio source estimator when estimation starts, ends or when progress changes.This is an abstract class to robustly estimate position, transmitted power and path-loss exponent of a radio source (e.g.Contains a solution obtained during robust estimation for a subset of samples.This is an abstract class to robustly estimate 2D position, transmitted power and path-loss exponent of a radio source (e.g.This is an abstract class to robustly estimate 3D position, transmitted power and path-loss exponent of a radio source (e.g.Listener to be notified of events produced by an RSSI robust radio source estimator when estimation starts, ends or when progress changes.Estimates position, transmitted power and path loss exponent of a radio source (e.g.Estimates 2D position, transmitted power and path-loss exponent of a radio source assuming that the radio source emits isotropically following the expression below: Pr = Pt*Gt*Gr*lambda^2 / (4*pi*d)^2, where Pr is the received power (expressed in mW), Gt is the Gain of the transmission antenna Gr is the Gain of the receiver antenna d is the distance between emitter and receiver and lambda is the wavelength and is equal to: lambda = c / f, where c is the speed of light and f is the carrier frequency of the radio signal.Estimates 3D position and transmitted power of a radio source assuming that the radio source emits isotropically following the expression below: Pr = Pt*Gt*Gr*lambda^2 / (4*pi*d)^2, where Pr is the received power (expressed in mW), Gt is the Gain of the transmission antenna Gr is the Gain of the receiver antenna d is the distance between emitter and receiver and lambda is the wavelength and is equal to: lambda = c / f, where c is the speed of light and f is the carrier frequency of the Wi-Fi signal.Listener defining events of RssiRadioSourceEstimatorThis is an abstract class to robustly estimate position, transmitted power and path-loss exponent of a radio source (e.g.Listener to be notified of events produced by a sequential robust radio source estimator using mixed readings when estimation starts, ends or when progress changes.This is an abstract class to robustly estimate position, transmitted power and path-loss exponent of a radio source (e.g.Listener to be notified of events produced by a sequential robust radio source estimator when estimation starts, ends or when progress changes.