Abstract:
There are provided an information processing apparatus, an information processing method, a guide system, and a guide method that can set optimum movement routes depending on a situation. The guide method includes: a step of taking an image; a step of detecting persons from the taken image; a step of digitizing and estimating states of the detected persons; a step of creating map data in which the states of the persons are shown on a map according to positions of the persons in the taken image; a first area estimation step that estimates a first area on the basis of the map data; a step of setting movement routes for persons of the first area and/or persons of a second area other than the first area; a step of transmitting information about the set movement routes; and a step of receiving the transmitted information about the movement routes and presenting the received information about the movement routes and/or guidance information about routes based on the information about the movement routes.
Abstract:
Provided are an information processing system and an information processing method which can easily grasp a state of a person in a predetermined area. The information processing system includes a first imaging unit that images a performer, a second imaging unit that images a person in a predetermined area, a first recognition unit that recognizes a scene based on an image captured by the first imaging unit, a second recognition unit that recognizes expression of the person based on an image captured by the second imaging unit, a calculation unit that calculates a state index of the person according to the scene based on a recognition result of the scene and a recognition result of the expression of the person, a heat map creation unit that creates a heat map representing the state index of the person in association with a position of the person in the predetermined area, and an output unit that outputs the heat map.
Abstract:
An imaging device (pan/tilt camera) includes an imaging unit including an imaging lens and an imaging element, a pan/tilt mechanism that rotates the imaging unit in the horizontal direction and the vertical direction with respect to a camera body, an object detection unit that detects an object, which is a tracking target, from a moving image captured by the imaging unit, a pan/tilt control unit that controls the pan/tilt mechanism such that the object detected by the object detection unit is tracked, a motion sensor that detects a physical amount related to the movement of the camera body, and an operation control unit that stops the pan/tilt mechanism in a case in which the physical amount detected by the motion sensor is equal to or greater than a first threshold value.
Abstract:
A multi-imaging apparatus includes: a display unit; an internal imaging device that acquires a first live view image or a first image captured by a main imaging operation thereof; a wireless communication unit that performs wireless communication with an external imaging device that acquires a second live view image or a second image captured by a main imaging operation thereof; and a controller. Here, the controller receives an input of the first live view image from the internal imaging device, receives the second live view image from the external imaging device through the wireless communication unit, and causes the display unit to display the input first live view image and the received second live view image as a multi-live view.
Abstract:
An imaging control device 100 includes a control communication unit 110 that communicates with a plurality of imaging devices and an overall control unit 101. The overall control unit 101 transmits an imaging preparation command to prepare imaging to each of the plurality of imaging devices 10 through the control communication unit 110 in response to an instruction received through an instruction receiving unit, receives preparation completion information indicating the completion of preparation for imaging from each of the plurality of imaging devices 10 through the control communication unit 110, and transmits a captured image acquisition command to acquire a captured image to each of the plurality of imaging devices 10 through the control communication unit 110 after receiving the preparation completion information from the plurality of imaging devices 10.
Abstract:
A digital camera functioning as an information presentation device is provided with a CG superimposition unit 17 which functions so that a virtual object is superimposed on a real space image captured by an imaging element 3, and is displayed on a display unit 23; a visual line detection unit 12 which detects a visual line of a person included in the real space image captured by the imaging element 3; and a superimposing position determination unit 11 which determines a superimposing position of the virtual object on the basis of the visual line detected by the visual line detection unit 12.
Abstract:
An image display device includes a beam splitter that splits an incident light entering from a subject side, an imaging device that converts a first optical image generated by an one-side incident light split by the beam splitter into an electrical signal and outputs the converted electrical signal as a capture image, a synthesis image generating unit that generates an electronic information image, a display panel that displays the electronic information image, and an optical prism that emits an optical image of the electronic information image projected from the display panel to be superimposed on a second optical image generated by the other-side split incident light.
Abstract:
Provided is a polymerizable liquid crystal composition used for formation of an optically anisotropic film having excellent durability, an optically anisotropic film, an optical film, a polarizing plate, and an image display device. The polymerizable liquid crystal composition contains a polymerizable liquid crystal compound represented by Formula (1) and an acidic compound, in which a pKa of the acidic compound is more than −10 and 5 or less, and a content of the acidic compound is 20 parts by mass or less with respect to 100 parts by mass of the polymerizable liquid crystal compound.
Abstract:
An object of the present invention is to provide a composition capable of forming a thermally conductive material having excellent thermally conductive properties and excellent handleability in a semi-cured state. In addition, another object of the present invention is to provide a thermally conductive material, a thermally conductive sheet, and a device with a thermally conductive layer. The composition of the present invention contains a phenolic compound, an epoxy compound, a compound represented by Formula (1), and an inorganic nitride.
Abstract:
A polymerizable liquid crystal composition having excellent solubility, used for formation of an optically anisotropic film having excellent durability. The polymerizable liquid crystal composition contains a polymerizable liquid crystal compound P1 represented by Formula (1): A-Ar-A, a polymerizable liquid crystal compound P2 represented by Formula (2): A-Ar-B, and a polymerizable liquid crystal compound P3 represented by Formula (3): B-Ar-B. In Formulae (1) and (2), A's represent predetermined side chains, all of which exhibit the same C log P value, and in Formulae (2) and (3), B's represent predetermined side chains, all of which exhibit the same C log P value. It should be noted that A and B represent side chains having C log P values different from each other, in which the C log P value of A is larger than the C log P value of B and the C log P value of at least one of A or B is 3.3 or more.