摘要:
A given visual field is divided into a plurality of areas, and brightness information in the areas is detected at predetermined time intervals and stored as information of a mobile body in a memory of a motor vehicle monitoring apparatus on a motor vehicle. The bright information detected in the areas at different times is then read from the memory, and a motion of the brightness information between adjacent ones of the areas is detected as a one-dimensional optical flow. The detected one-dimensional optical flow is compared with a one-dimensional optical flow generated from a road due to the speed of the motor vehicle, for thereby detecting another motor vehicle which is moving toward the motor vehicle.
摘要:
The hydroplaning-occurring speed of a vehicle is estimated by detecting an amount of water on a wet road surface on which the vehicle is traveling, and estimating a speed of the vehicle at and above which a hydroplaning phenomenon can occur, based on the detected amount of water. The possibility of occurrence of a hydroplaning phenomenon of a vehicle is detected by detecting an amount of water on a wet road surface on which the vehicle is traveling, detecting the speed of the vehicle, and determining whether there is a possibility that a hydroplaning phenomenon can occur, based on the detected amount of water and the detected speed of the vehicle.
摘要:
According to the present invention, a substrate processing method has (a) the step of predetermining initial conditions for cassettes and substrates before processing is started, (b) the step of setting the cassettes in which the substrates are stored, in the loading/unloading section on the basis of the initial conditions, (c) the step of detecting the states of the cassettes set in the loading/unloading section and checking, on the basis of the detection results, whether the cassettes are set in the states set in the step (a), (d) the step of displaying the states of the cassettes when it is determined in the step (c) that the state of at least one cassette is not the state set in the step (a), (e) the step of resetting the cassette in the state set in the step (a) on the basis of the display in the step (d), (f) the step of detecting the substrates which are present in the cassettes set in the loading/unloading section and obtaining mapping data on the basis of the detection results, (g) the step of selecting a substrate from the cassettes in the loading/unloading section on the basis of the mapping data and the initial conditions, (h) the step of extracting the selected substrate from the cassettes, conveying the substrate to a processing section, and processing the substrate according to the initial conditions, and (i) the step of storing the processed substrate in a cassette set in the loading/unloading section.
摘要:
A seal space is formed between first and second metal separators of a power generation cell. A device body is disposed in the seal space. The device body includes a voltage measurement sensor and a transmission mechanism. The voltage measurement sensor measures the voltage generated during operation of the power generation cell. The transmission mechanism transmits information of the voltage measured by the voltage measurement sensor via wireless communication. The voltage measurement sensor and the transmission mechanism are embedded in an electromagnetic/heat resistant shield member, and attached to a surface of the second metal separator.
摘要:
A seal space is formed between first and second metal separators of a power generation cell. A device body is disposed in the seal space. The device body includes a voltage measurement sensor and a transmission mechanism. The voltage measurement sensor measures the voltage generated during operation of the power generation cell. The transmission mechanism transmits information of the voltage measured by the voltage measurement sensor via wireless communication. The voltage measurement sensor and the transmission mechanism are embedded in an electromagnetic/heat resistant shield member, and attached to a surface of the second metal separator.
摘要:
A road surface condition-detecting system for a vehicle detects a road surface condition from road noise generated by a vehicle wheel. The road surface condition is determined based on parameter data of frequency components of the road noise, by a neural network. The road noise may be corrected by eliminating therefrom a disturbance, such as audio output and exhaust noise. A present state of the road surface condition may be determined based on at least two consecutive determinations made based on the road noise detected at regular time intervals. Exclusive neural networks may be used for respective road surface condition types. One of a plurality of neural networks provided for respective vehicle speed ranges may be selected according to an actual vehicle speed. Detected sound pressure levels of the road noise extracted by frequency analysis may be normalized within respective ranges defined by upper and lower limits set corresponding to predetermined frequency ranges before being supplied to the neural network.