Abstract:
A robot management system includes a control device including a robot control section configured to control a robot, a program storing section configured to store a program for controlling the robot, and a backup generating section configured to generate backup data of the program and a managing device coupled to the control device and configured to manage the control device. The managing device includes an acquiring section configured to acquire generation time when the backup generating section generates the backup data and a display control section configured to, when a difference between the generation time and present time is equal to or larger than a first predetermined value, cause a display section to display notification content.
Abstract:
A biological information processing system includes a processor including hardware. The processor performs: acquisition processing in which pulse wave information is acquired; processing in which analysis processing on the pulse wave information is performed to generate analysis result information; and output processing in which the analysis result information that is generated is outputted. The processor generates the analysis result information for identifiably displaying a pulse wave abnormality period detected on the basis of the analysis processing and for displaying at least one of action information, psychological state information, external environment information and location information of a user.
Abstract:
A pulse wave measurement apparatus includes a light emitting device that applies light to a measurement position at which a pulse wave is measured, and a plurality of light receiving devices that output measurement signals based on the amount of received light which is applied from the light emitting device and is reflected from the measurement position. The control unit of the pulse wave measurement apparatus performs the independent component analysis on the measurement signals output from the plurality of light receiving devices, and calculates the weighting factors of each component when each of the measurement signals is divided into a plurality of components. The control unit calculates the dispersion of the calculated weighting factors for each component, and specifies a component in which the calculated dispersion is the smallest. The control unit generates pulse wave information indicative of the pulse wave based on the specified component.
Abstract:
A sensor unit, a biological information detection device, an electronic apparatus, a biological information detection method, and the like, capable of acquiring highly accurate pulse wave information on the basis of a plurality of signals having different characteristics. The sensor unit includes a first light emitting portion that emits light toward a subject, a second light emitting portion that emits light toward the subject, and a light receiving portion that receives light from the subject, in which, in a case where a height of a contact position or a contact region with the subject in a position or a region corresponding to the first light emitting portion is indicated by H1, and a height of a contact position or a contact region with the subject in a position or a region corresponding to the second light emitting portion is indicated by H2, a relationship of H1>H2 is satisfied.
Abstract:
A physiological information measuring apparatus includes a first detection unit, having a first light emitting unit and a first light receiving unit, separated from one another by a first distance. A second detection unit of the physiological information measuring apparatus has a second light emitting unit and a second light receiving unit, separated from one another by a second, different distance. Alternatively, the second detection unit shares the first light emitting unit with the first detection unit and has a second light receiving unit. Alternatively, the second detection unit shares the first light receiving unit with the first detection unit and has a second light emitting unit. A measuring unit of the physiological information measuring apparatus measures the physiological information of a user based on light received by the light receiving unit or light receiving units.
Abstract:
To provide a biological-information analyzing device, a biological-information analyzing system, and a biological-information analyzing method that can appropriately measure biological information even in a user having an athlete's heart. A biological-information analyzing device includes a biological-information detecting section configured to detect biological information of a user, a user determining section configured to determine an exercise capability of the user, an information setting section configured to set, when it is determined that the exercise capability of the user satisfies a predetermined condition, analysis information corresponding to the exercise capability of the user, and an analyzing section configured to analyze the biological information on the basis of the set analysis information.
Abstract:
A physiological information measuring apparatus includes a first detection unit, having a first light emitting unit and a first light receiving unit, separated from one another by a first distance. A second detection unit of the physiological information measuring apparatus has a second light emitting unit and a second light receiving unit, separated from one another by a second, different distance. Alternatively, the second detection unit shares the first light emitting unit with the first detection unit and has a second light receiving unit. Alternatively, the second detection unit shares the first light receiving unit with the first detection unit and has a second light emitting unit. A measuring unit of the physiological information measuring apparatus measures the physiological information of a user based on light received by the light receiving unit or light receiving units.