Abstract:
An unmanned aircraft structure evaluation system includes a computer system with an input unit, a display unit, one or more processors, and one or more non-transitory computer readable medium. Image display and analysis software causes the one or more processors to generate unmanned aircraft information. The unmanned aircraft information includes flight path information configured to direct an unmanned aircraft to fly a flight path around the structure.
Abstract:
An unmanned aircraft structure evaluation system includes a computer system with an input unit, a display unit, one or more processors, and one or more non-transitory computer readable medium. Image display and analysis software causes the one or more processors to generate unmanned aircraft information. The unmanned aircraft information includes flight path information configured to direct an unmanned aircraft to fly a flight path around the structure.
Abstract:
An unmanned aircraft structure evaluation system includes a computer system with an input unit, a display unit, one or more processors, and one or more non-transitory computer readable medium. Image display and analysis software causes the one or more processors to generate unmanned aircraft information. The unmanned aircraft information includes flight path information configured to direct an unmanned aircraft to fly a flight path around the structure.
Abstract:
An unmanned aircraft structure evaluation system includes a computer system with an input unit, a display unit, one or more processors, and one or more non-transitory computer readable medium. Image display and analysis software causes the one or more processors to generate unmanned aircraft information. The unmanned aircraft information includes flight path information configured to direct an unmanned aircraft to fly a flight path around the structure.
Abstract:
A computerized method performed by an unmanned aerial vehicle (UAV) comprising one or more processors, the method comprising: receiving, by the UAV, a flight plan comprising a plurality of inspection locations for a structure, wherein the plurality of inspection locations each comprise a waypoint having a geospatial reference; navigating the UAV to ascend to a first altitude above the structure; conducting an inspection for an object of interest in at least one of the plurality of inspection locations according to the flight plan, the inspection comprising: navigating the UAV to a position above a surface of the structure associated with the object of interest based on monitoring an active sensor; and obtaining, while the UAV is within a particular distance from the surface of the structure, information from one or more sensors describing the structure such that obtained information includes at least a particular level of detail; navigating the UAV to another inspection location of the plurality of inspection locations; and navigating the UAV to a landing location.
Abstract:
Un sistema informático, que comprende: un sistema informático que tiene una unidad de entrada, una unidad de visualización, uno o más procesadores y uno o más medios legibles por ordenador no transitorios, uno o más procesadores que ejecutan software de visualización y análisis de imágenes para hacer que el o los procesadores: reciban una identificación de una estructura de la unidad de entrada, la estructura tiene múltiples lados y un contorno; obtengan datos indicativos de múltiples posiciones geográficas pertenecientes a un esquema de una estructura con múltiples lados e información sobre la altura de la estructura; obtengan las características de una cámara montada en una aeronave no tripulada; generen información de aeronaves no tripuladas que incluye: la información de la trayectoria de vuelo configurada para dirigir la aeronave no tripulada para volar una trayectoria de vuelo alrededor de la estructura que está desplazada lateral y verticalmente de las posiciones geográficas del contorno de la estructura, las desviaciones lateral y vertical dependiendo de la información de altura de la estructura, una orientación de la cámara en relación con la aeronave no tripulada, y las características de la cámara; y, almacenen la información de la aeronaves no tripulada en uno o más medios legibles por ordenador no transitorios.
Abstract:
An unmanned aircraft structure evaluation system includes a computer system with an input unit, a display unit, one or more processors, and one or more non-transitory computer readable medium. Image display and analysis software causes the one or more processors to generate unmanned aircraft information. The unmanned aircraft information includes flight path information configured to direct an unmanned aircraft to fly a flight path around the structure.
Abstract:
An unmanned aircraft structure evaluation system includes a computer system with an input unit, a display unit, one or more processors, and one or more non-transitory computer readable medium. Image display and analysis software causes the one or more processors to generate unmanned aircraft information. The unmanned aircraft information includes flight path information configured to direct an unmanned aircraft to fly a flight path around the structure.
Abstract:
A computerized method performed by an unmanned aerial vehicle (UAV) comprising one or more processors, the method comprising: receiving, by the UAV, a flight plan comprising a plurality of inspection locations for a structure, wherein the plurality of inspection locations each comprise a waypoint having a geospatial reference; navigating the UAV to ascend to a first altitude above the structure; conducting an inspection for an object of interest in at least one of the plurality of inspection locations according to the flight plan, the inspection comprising: navigating the UAV to a position above a surface of the structure associated with the object of interest based on monitoring an active sensor; and obtaining, while the UAV is within a particular distance from the surface of the structure, information from one or more sensors describing the structure such that obtained information includes at least a particular level of detail; navigating the UAV to another inspection location of the plurality of inspection locations; and navigating the UAV to a landing location.
Abstract:
A computerized method performed by an unmanned aerial vehicle (UAV) comprising one or more processors, the method comprising: receiving, by the UAV, a flight plan comprising a plurality of inspection locations for a structure, wherein the plurality of inspection locations each comprise a waypoint having a geospatial reference; navigating the UAV to ascend to a first altitude above the structure; conducting an inspection for an object of interest in at least one of the plurality of inspection locations according to the flight plan, the inspection comprising: navigating the UAV to a position above a surface of the structure associated with the object of interest based on monitoring an active sensor; and obtaining, while the UAV is within a particular distance from the surface of the structure, information from one or more sensors describing the structure such that obtained information includes at least a particular level of detail; navigating the UAV to another inspection location of the plurality of inspection locations; and navigating the UAV to a landing location.