Abstract:
An animal information management system includes a storage and an information processor. The information processor causes an imaging device to perform tracking imaging of a pig, and accumulates still pictures including the pig in the storage, the still pictures being obtained during the tracking imaging. The information processor brings the imaging device into a zoom-in state having a zooming magnification higher than that during the tracking imaging when a predetermined requirement for the accumulated still pictures is satisfied, obtains the identification information of the pig by causing the imaging device in the zoom-in state to capture an image of the pig, and stores the identification information in the storage, in association with the accumulated still pictures.
Abstract:
A livestock house monitoring method includes: capturing a moving image of an inside of a poultry house; converting a plurality of images included in the moving image captured into black-and-white images; and generating an image for monitoring purposes showing a distribution of chickens inside the poultry house by performing statistical processing on the plurality of images converted into the black-and-white images. The poultry house is an example of a livestock house, and chickens are an example of livestock.
Abstract:
An animal information management system includes an identification information obtaining unit which obtains identification information of an animal included in a first image, based on the first image captured by an imaging device during patrol imaging of a predetermined region in a first zoom setting in which only part of the predetermined region is an imaging target, the animal being included in animals present in the predetermined region; and a control unit which causes the imaging device to capture a second image including the animal in a second zoom setting having a zooming magnification lower than that of the first zoom setting when the identification information is obtained.
Abstract:
An infrared detection element includes first and second pyroelectric elements which are arranged in a single pyroelectric substrate. First pyroelectric element includes a first surface electrode. a first back face electrode, and a first portion interposed between first surface and back face electrodes. First portion is provided as part of pyroelectric substrate. Second pyroelectric element includes a second surface electrode, a second back face electrode, and a second portion interposed between second surface and back face electrodes. Second portion is provided as part of pyroelectric substrate. Pyroelectric substrate is provided in part thereof surrounding first pyroelectric element with a slit shaped along an outer periphery of first pyroelectric element. Slit is formed out of regions in which a first surface wiring and a first back face wiring are disposed. Part of pyroelectric substrate surrounding second pyroelectric element is continuously formed over an entire circumference of second portion.
Abstract:
A weight estimation system includes: an image capturer that captures an image of an inside of a poultry house; a calculator that calculates a flocking behavior feature quantity of chickens in the poultry house by performing image processing on the image captured by the image capturer; and an estimator that estimates a weight for each chicken in the poultry house, based on the flocking behavior feature quantity calculated.
Abstract:
An animal individual identification member includes a first base brought into contact with a body of an animal, a second base including an identification portion indicating identification information of the animal by a sequence of mutually different adjacent colors, and an adhesive layer which is located between the first base and the second base and bonds the first base and the second base. The first base, the second base, and the adhesive layer have identical resin skeletons.