Abstract:
A learning device is configured to perform learning of a decision tree, and includes: a plurality of learning units each corresponding to a data memory of a plurality of data memories, and being configured to perform learning at a first node using learning data acquired by using first addresses related to a storage destination of the learning data corresponding to the first node of the decision tree in the data memory, and output a second address related to a storage destination of each piece of the learning data branched from the first node; and a plurality of managers each corresponding to a learning unit of the plurality of learning units, and being configured to calculate third addresses related to storage destinations of learning data corresponding to second nodes being next nodes of the first node using the first addresses and the second address output from the learning unit.
Abstract:
A generative model learning method includes learning a first generative model by unsupervised learning based on train data prepared beforehand, generating generated data by the first generative model, and learning a second generative model by supervised learning based on the train data and the generated data determined as undesirable by a user.
Abstract:
An object of the present invention is to realize an OLED capable of attaining high luminescence luminance and easy to manufacture. An organic electroluminescence device (1) of the present invention includes a luminescent layer (7) between an anode (3) and a cathode (9). The luminescent layer (7) contains an organic luminescent material. The organic electroluminescence device includes: a hole transportation layer (6) formed between the anode (3) and the luminescent layer (7); a metal nano particle layer between the anode (3) and the hole transportation layer (6), the metal nano particle layer being a layer in which metal nano particles (5) are dispersedly distributed. The metal nano particle layer is such that gaps between the metal nano particles (5) dispersedly distributed are filled with a hole transportation material. The metal nano particles (5) causes resonance with excited electrons in the luminescent layer (7), thereby reinforcing the luminescence by surface plasmon.
Abstract:
A purpose of the invention is to provide an electronic magnifier that can facilitate grasping of a position when a display portion is moved in a magnified display state and can improve the visibility. An image capturing section 11 captures an image of a target object such as a character or the like, and a display section 17 displays the captured image of the target object. An operation state determining section 14 determines an operation state based on an acceleration of a device body detected by an acceleration sensor 13. A display control section 16 changes a display magnification of the captured image of the target object based on a determination signal from the operation state determining section 14. Here, when an acceleration being equal to or greater than a predetermined value is detected, it is determined that an operation of high speed moving is carried out and a display state is changed to a normal display state in which the display magnification is decreased. When a predetermined time period has elapsed or an acceleration being equal to or less than a predetermined value is detected, the display magnification is gradually increased so as to change the display state to a magnified display state.
Abstract:
The present invention provides a plain bearing having improved bearing properties, especially anti-seizure property, initial conformability and cavitation resistance. According to the present invention, a sliding layer is provided on a surface of a bearing alloy layer comprising of a copper-based or aluminum-based alloy, thereby the sliding layer is so structured that, to a polyamide-imide resin of a main constituent, a polyamide resin is added and mixed under a high shear force to form a polymer-alloyed resin binder, in which 1 to 75% by mass of a solid lubricant is dispersed. The sliding layer can have high toughness and strength, as well as improved anti-seizure property, initial conformability and cavitation resistance.
Abstract:
An information service providing method with higher security. When a request from an information terminal is received through a first communication line, a reply to this request is sent to the information terminal through not only the first communication line but also a second communication line different from the first communication line depending on the content of the request.
Abstract:
The present invention provides a wavelength division multiplexing filter that requires lower costs, a smaller size, and a smaller amount of fiber routing operations. According to the present invention, a first module constitutes a first filter. A second module constituting a second filter is produced by connecting together circuits identical in number to a plurality of output ports of the first module, the circuits each comprising a combination of directional couplers and Bragg gratings both formed of silica-based-glass waveguides, the circuits each having a wavelength selection characteristic so as to correspond to each of the output ports. The second module is connected to the first module via an 8-fiber ribbon to simplify the integration and connection of the circuits.
Abstract:
A belt clamp includes a belt portion 10 and a buckle portion 20. The belt portion 10 is provided with a series of cogs 12 on the rear side along the longitudinal direction. The buckle portion 20 is provided with a tongue piece 30 having a through hole 22 adapted to permit said belt portion 10 to pass therethrough and pawls 32 adapted to engage with the cogs 12. The tongue piece 30 is formed on an end of a base plate 24 formed on the buckle portion so that only the pawls 32 project on the interior of the through hole 22. Thus, the distance between a wire harness after bundling and the top face of a panel becomes small, and the belt clamp requires a small mounting space and causes little backlash.
Abstract:
A learning device includes a data storage unit configured to store learning data for learning a decision tree; a learning unit configured to determine whether to cause learning data stored in the data storage unit to branch to one node or to the other node of lower nodes of a node based on a branch condition for the node of the decision tree; and a first buffer unit and a second buffer unit configured to buffer learning data determined to branch to the one node and the other node, respectively, by the learning unit up to capacity determined in advance. The first buffer unit and the second buffer unit are configured to, in response to buffering learning data up to the capacity determined in advance, write the learning data into continuous addresses of the data storage unit for each predetermined block.
Abstract:
A learning classification device includes a data memory, a learning unit, and a classification unit. The data memory is configured to store training data for learning a decision tree. The learning unit is configured to read a plurality of feature quantities included in the training data from the data memory by single access and derive data of a node based on the plurality of feature quantities, to learn the decision tree. The classification unit is configured to determine where the training data read from the data memory is to be split to from the node, based on the data of the node derived by the learning unit.