The maximum unambiguous range for time-of-flight range imaging systems is inversely proportional to the chosen modulation frequency. However, increasing the unambiguous range by decreasing the modulation frequency will generally also degrade the range measurement precision. We describe a technique that significantly extends the range of a time-of-flight imaging system without compromising range precision. This is achieved by employing two modulation frequencies simultaneously. The chosen frequencies can be a combination of high and low frequency, or two similarly high frequencies. In this paper we present experimental results comparing single frequency; dual high and low frequency; and dual high frequency operation and demonstrate that rang...
Amplitude modulated continuous wave (AMCW) time of flight (ToF) range imaging provides a full field ...
A range imaging camera produces an output similar to a digital photograph, but every pixel in the im...
Time-of-flight range imaging is typically performed with the amplitude modulated continuous wave met...
The maximum unambiguous range for time-of-flight range imaging systems is inversely proportional to ...
Range imaging systems use a specialised sensor to capture an image where object distance (range) is ...
Time-of-flight range imaging cameras operate by illuminating a scene with amplitude modulated light ...
Abstract—Range imaging is a technology that utilizes an amplitude-modulated light source and gain-mo...
Range imaging cameras measure the distance to objects in the field-of-view (FoV) of the camera, thes...
Range imaging is becoming a popular tool for many applications, with several commercial variants now...
Amplitude modulated continuous wave (AMCW) time-of flight (ToF) range imaging cameras measure distan...
Time-of-flight range imaging sensors acquire an image of a scene, where in addition to standard inte...
A number of full field image sensors have been developed that are capable of simultaneously measurin...
This thesis describes the development of a compact and modularised indirect time of flight range ima...
This article describes the development of a full-field range imaging system employing a high frequen...
Amplitude modulated continuous wave (AMCW) time of flight (ToF) range imaging provides a full field ...
A range imaging camera produces an output similar to a digital photograph, but every pixel in the im...
Time-of-flight range imaging is typically performed with the amplitude modulated continuous wave met...
The maximum unambiguous range for time-of-flight range imaging systems is inversely proportional to ...
Range imaging systems use a specialised sensor to capture an image where object distance (range) is ...
Time-of-flight range imaging cameras operate by illuminating a scene with amplitude modulated light ...
Abstract—Range imaging is a technology that utilizes an amplitude-modulated light source and gain-mo...
Range imaging cameras measure the distance to objects in the field-of-view (FoV) of the camera, thes...
Range imaging is becoming a popular tool for many applications, with several commercial variants now...
Amplitude modulated continuous wave (AMCW) time-of flight (ToF) range imaging cameras measure distan...
Time-of-flight range imaging sensors acquire an image of a scene, where in addition to standard inte...
A number of full field image sensors have been developed that are capable of simultaneously measurin...
This thesis describes the development of a compact and modularised indirect time of flight range ima...
This article describes the development of a full-field range imaging system employing a high frequen...
Amplitude modulated continuous wave (AMCW) time of flight (ToF) range imaging provides a full field ...
A range imaging camera produces an output similar to a digital photograph, but every pixel in the im...
Time-of-flight range imaging is typically performed with the amplitude modulated continuous wave met...