An example aquatic imaging system comprises a light source, a first platform coupled with a image capture device and a second platform that is parallel to the platform, the image capture device having a first field of view, and, the second platform being coupled to a organism tank, first organism tank having an inner wall, outer wall and a base that defines a well capable of retaining water, the base being parallel to the second platform, the organism tank configured to receive a light beam originating from the light source and configured to project at least a portion of the light beam through the well and in a directional plane that is parallel to the base, the image capture device configured to direct the first field of view from the first platform through the well in the organism tank.
42 - Services scientifiques, technologiques et industriels, recherche et conception
Produits et services
Software as a service featuring software for monitoring and imaging of aquatic organisms and vegetation in an aquatic environment; Software as a service featuring software for use in remote monitoring and imaging aquatic organisms and vegetation in an aquatic environment; Software as a service featuring software for use in detecting, monitoring, and tracking changes of aquatic organisms and vegetation in an aquatic environment over time; Software as a service featuring software for use in detecting, monitoring, and tracking behavior of aquatic organisms and vegetation in an aquatic environment over time; Software as a service featuring software for use in remote detecting, monitoring, and tracking of changes of aquatic organisms and vegetation in an aquatic environment over time; Software as a service featuring software for use in remote detecting, monitoring, and tracking of behavior of aquatic organisms and vegetation in an aquatic environment over time; Software as a service featuring software for use in recording and analyzing the change of aquatic organisms and vegetation in an aquatic environment over time; Software as a service featuring software for use in aquatic organism and vegetation management, monitoring, forecasting, and reporting; Software as a service featuring software for use in analyzing, projecting, predicting, and modelling growth of aquatic organisms and vegetation; Software as a service featuring software for use in alerting users of changes of aquatic organisms and vegetation in an aquatic environment over time; Software as a service featuring software for use in alerting users of behavior of aquatic organisms and vegetation in an aquatic environment over time; Software as a service featuring software for use in monitoring properties of an aquatic environment; Software as a service featuring software for use in remote monitoring properties of an aquatic environment
09 - Appareils et instruments scientifiques et électriques
42 - Services scientifiques, technologiques et industriels, recherche et conception
Produits et services
Downloadable software for monitoring and imaging of aquatic organisms and vegetation in an aquatic environment; downloadable software for use in remote monitoring and imaging aquatic organisms and vegetation in an aquatic environment; downloadable software for use in detecting, monitoring, and tracking changes of aquatic organisms and vegetation in an aquatic environment over time; downloadable software for use in detecting, monitoring, and tracking behavior of aquatic organisms and vegetation in an aquatic environment over time; downloadable software for use in remote detecting, monitoring, and tracking of changes of aquatic organisms and vegetation in an aquatic environment over time; downloadable software for use in remote detecting, monitoring, and tracking of behavior of aquatic organisms and vegetation in an aquatic environment over time; downloadable software for use in recording and analyzing the change of aquatic organisms and vegetation in an aquatic environment over time; downloadable software for use in aquatic organism and vegetation management, monitoring, forecasting, and reporting; downloadable software for use in analyzing, projecting, predicting, and modelling growth of aquatic organisms and vegetation; downloadable software for use in alerting users of changes of aquatic organisms and vegetation in an aquatic environment over time; downloadable software for use in alerting users of behavior of aquatic organisms and vegetation in an aquatic environment over time; downloadable software for use in monitoring properties of an aquatic environment; downloadable software for use in remote monitoring properties of an aquatic environment; aquatic tank system comprised of computers, cameras, light sensors and light switches for monitoring and imaging of aquatic organisms and vegetation in an aquatic environment; aquatic tank system comprised of computers, cameras, light sensors and light switches, capable of remote monitoring and imaging aquatic organisms and vegetation in an aquatic environment; aquatic tank system comprised of computers, cameras, light sensors and light switches capable of detecting, monitoring, and tracking changes of aquatic organisms and vegetation in an aquatic environment over time; aquatic tank system comprised of computers, cameras, light sensors and light switches for use in detecting, monitoring, and tracking behavior of aquatic organisms and vegetation in an aquatic environment over time; aquatic tank system comprised of computers, cameras, light sensors and light switches for use in remote detecting, monitoring, and tracking of changes of aquatic organisms and vegetation in an aquatic environment over time; aquatic tank system comprised of computers, cameras, light sensors and light switches for use in remote detecting, monitoring, and tracking of behavior of aquatic organisms and vegetation in an aquatic environment over time; aquatic tank system comprised of computers, cameras, light sensors and light switches for use in recording and analyzing the change of aquatic organisms and vegetation in an aquatic environment over time; aquatic tank system comprised of computers, cameras, light sensors and light switches for use in aquatic organism and vegetation management, monitoring, forecasting, and reporting; aquatic tank system comprised of computers, cameras, light sensors and light switches for use in analyzing, projecting, predicting, and modelling growth of aquatic organisms and vegetation; aquatic tank system comprised of computers, cameras, light sensors and light switches for use in alerting users of changes of aquatic organisms and vegetation in an aquatic environment over time; aquatic tank system comprised of computers, cameras, light sensors and light switches for use in alerting users of behavior of aquatic organisms and vegetation in an aquatic environment over time; aquatic tank system comprised of computers, cameras, light sensors and light switches for use in monitoring properties of an aquatic environment; aquatic tank system comprised of computers, cameras, light sensors and light switches for use in remote monitoring properties of an aquatic environment Software as a service featuring software for monitoring and imaging of aquatic organisms and vegetation in an aquatic environment; Software as a service featuring software for use in remote monitoring and imaging aquatic organisms and vegetation in an aquatic environment; Software as a service featuring software for use in detecting, monitoring, and tracking changes of aquatic organisms and vegetation in an aquatic environment over time; Software as a service featuring software for use in detecting, monitoring, and tracking behavior of aquatic organisms and vegetation in an aquatic environment over time; Software as a service featuring software for use in remote detecting, monitoring, and tracking of changes of aquatic organisms and vegetation in an aquatic environment over time; Software as a service featuring software for use in remote detecting, monitoring, and tracking of behavior of aquatic organisms and vegetation in an aquatic environment over time; Software as a service featuring software for use in recording and analyzing the change of aquatic organisms and vegetation in an aquatic environment over time; Software as a service featuring software for use in aquatic organism and vegetation management, monitoring, forecasting, and reporting; Software as a service featuring software for use in analyzing, projecting, predicting, and modelling growth of aquatic organisms and vegetation; Software as a service featuring software for use in alerting users of changes of aquatic organisms and vegetation in an aquatic environment over time; Software as a service featuring software for use in alerting users of behavior of aquatic organisms and vegetation in an aquatic environment over time; Software as a service featuring software for use in monitoring properties of an aquatic environment; Software as a service featuring software for use in remote monitoring properties of an aquatic environment;
4.
CONTAINER SYSTEM FOR MONITORING AND IMAGING AQUATIC ORGANISMS
A system comprising, an electromagnetic radiation source, the electromagnetic radiation source including at least one collimated electromagnetic radiation beam, a beam expander, the beam expander may expand the at least one collimated electromagnetic radiation beam, a first container including a base plate and at least four side walls, at least two of four side walls being opposite of each other, at least three of the four side walls being perpendicular to the base plate, a fourth side wall including a mirror, the container including a cavity, the mirror including a reflective side facing the cavity, and an image capture device, the image capture device having a field of view, the field of view including at least a portion of the cavity.
A system comprising, an electromagnetic radiation source, the electromagnetic radiation source including at least one collimated electromagnetic radiation beam, a beam expander, the beam expander may expand the at least one collimated electromagnetic radiation beam, a first container including a base plate and at least four side walls, at least two of four side walls being opposite of each other, at least three of the four side walls being perpendicular to the base plate, a fourth side wall including a mirror, the container including a cavity, the mirror including a reflective side facing the cavity, and an image capture device, the image capture device having a field of view, the field of view including at least a portion of the cavity.
The invention is drawn towards a method and apparatus for controlling a consumer based on motion detected in a data stream, comprising: receiving the data stream, extracting motion information from the image data, generating commands and parameters for the consumer according to the motion information and controlling the consumer according to the commands and parameters.
G06T 7/70 - Détermination de la position ou de l'orientation des objets ou des caméras
G06V 10/44 - Extraction de caractéristiques locales par analyse des parties du motif, p. ex. par détection d’arêtes, de contours, de boucles, d’angles, de barres ou d’intersectionsAnalyse de connectivité, p. ex. de composantes connectées
G06V 10/82 - Dispositions pour la reconnaissance ou la compréhension d’images ou de vidéos utilisant la reconnaissance de formes ou l’apprentissage automatique utilisant les réseaux neuronaux
G06V 10/94 - Architectures logicielles ou matérielles spécialement adaptées à la compréhension d’images ou de vidéos
G06V 20/56 - Contexte ou environnement de l’image à l’extérieur d’un véhicule à partir de capteurs embarqués
H04N 5/14 - Circuits de signal d'image pour le domaine des fréquences vidéo
H04N 23/60 - Commande des caméras ou des modules de caméras
H04N 23/68 - Commande des caméras ou des modules de caméras pour une prise de vue stable de la scène, p. ex. en compensant les vibrations du boîtier de l'appareil photo
H04N 23/73 - Circuits de compensation de la variation de luminosité dans la scène en influençant le temps d'exposition
An example aquatic imaging system comprises a light source, a first platform coupled with a image capture device and a second platform that is parallel to the platform, the image capture device having a first field of view, and, the second platform being coupled to a organism tank, first organism tank having an inner wall, outer wall and a base that defines a well capable of retaining water, the base being parallel to the second platform, the organism tank configured to receive a light beam originating from the light source and configured to project at least a portion of the light beam through the well and in a directional plane that is parallel to the base, the image capture device configured to direct the first field of view from the first platform through the well in the organism tank.
An example aquatic imaging system comprises a light source, a first platform coupled with a image capture device and a second platform that is parallel to the platform, the image capture device having a first field of view, and, the second platform being coupled to a organism tank, first organism tank having an inner wall, outer wall and a base that defines a well capable of retaining water, the base being parallel to the second platform, the organism tank configured to receive a light beam originating from the light source and configured to project at least a portion of the light beam through the well and in a directional plane that is parallel to the base, the image capture device configured to direct the first field of view from the first platform through the well in the organism tank.
The invention is drawn towards a method and apparatus for controlling a consumer based on motion detected in a data stream, comprising: receiving the data stream, extracting motion information from the image data, generating commands and parameters for the consumer according to the motion information and controlling the consumer according to the commands and parameters.
H04N 5/14 - Circuits de signal d'image pour le domaine des fréquences vidéo
G06V 10/94 - Architectures logicielles ou matérielles spécialement adaptées à la compréhension d’images ou de vidéos
G06V 10/44 - Extraction de caractéristiques locales par analyse des parties du motif, p. ex. par détection d’arêtes, de contours, de boucles, d’angles, de barres ou d’intersectionsAnalyse de connectivité, p. ex. de composantes connectées
G06V 20/56 - Contexte ou environnement de l’image à l’extérieur d’un véhicule à partir de capteurs embarqués
H04N 23/68 - Commande des caméras ou des modules de caméras pour une prise de vue stable de la scène, p. ex. en compensant les vibrations du boîtier de l'appareil photo
H04N 23/60 - Commande des caméras ou des modules de caméras
H04N 23/73 - Circuits de compensation de la variation de luminosité dans la scène en influençant le temps d'exposition
G06V 10/82 - Dispositions pour la reconnaissance ou la compréhension d’images ou de vidéos utilisant la reconnaissance de formes ou l’apprentissage automatique utilisant les réseaux neuronaux
G06T 7/70 - Détermination de la position ou de l'orientation des objets ou des caméras
B60R 1/00 - Dispositions pour la visibilité optiqueDispositions de visualisation en temps réel pour les conducteurs ou les passagers utilisant des systèmes de capture d’images optiques, p. ex. des caméras ou des systèmes vidéo spécialement adaptés pour être utilisés dans ou sur des véhicules
An example aquatic imaging system comprises a light source, a first platform coupled with a image capture device and a second platform that is parallel to the platform, the image capture device having a first field of view, and, the second platform being coupled to a organism tank, first organism tank having an inner wall, outer wall and a base that defines a well capable of retaining water, the base being parallel to the second platform, the organism tank configured to receive a light beam originating from the light source and configured to project at least a portion of the light beam through the well and in a directional plane that is parallel to the base, the image capture device configured to direct the first field of view from the first platform through the well in the organism tank.
An example aquatic imaging system comprises a light source, a first platform coupled with a image capture device and a second platform that is parallel to the platform, the image capture device having a first field of view, and, the second platform being coupled to a organism tank, first organism tank having an inner wall, outer wall and a base that defines a well capable of retaining water, the base being parallel to the second platform, the organism tank configured to receive a light beam originating from the light source and configured to project at least a portion of the light beam through the well and in a directional plane that is parallel to the base, the image capture device configured to direct the first field of view from the first platform through the well in the organism tank.
The invention is drawn towards a method and apparatus for controlling a consumer based on motion detected in a data stream, comprising: receiving the data stream, extracting motion information from the image data, generating commands and parameters for the consumer according to the motion information and controlling the consumer according to the commands and parameters.
G06V 10/94 - Architectures logicielles ou matérielles spécialement adaptées à la compréhension d’images ou de vidéos
G06V 10/44 - Extraction de caractéristiques locales par analyse des parties du motif, p. ex. par détection d’arêtes, de contours, de boucles, d’angles, de barres ou d’intersectionsAnalyse de connectivité, p. ex. de composantes connectées
G06V 20/56 - Contexte ou environnement de l’image à l’extérieur d’un véhicule à partir de capteurs embarqués
G06T 7/70 - Détermination de la position ou de l'orientation des objets ou des caméras
B60R 1/00 - Dispositions pour la visibilité optiqueDispositions de visualisation en temps réel pour les conducteurs ou les passagers utilisant des systèmes de capture d’images optiques, p. ex. des caméras ou des systèmes vidéo spécialement adaptés pour être utilisés dans ou sur des véhicules
An example aquatic imaging system comprises a light source, a first platform coupled with a image capture device and a second platform that is parallel to the platform, the image capture device having a first field of view, and, the second platform being coupled to a organism tank, first organism tank having an inner wall, outer wall and a base that defines a well capable of retaining water, the base being parallel to the second platform, the organism tank configured to receive a light beam originating from the light source and configured to project at least a portion of the light beam through the well and in a directional plane that is parallel to the base, the image capture device configured to direct the first field of view from the first platform through the well in the organism tank.