Abstract:
Ein Luftfahrzeug (10) weist eine Kommunikationsschnittstelle (12), welche dazu eingerichtet ist, eine Information, die ein Verkehrssystem (100) betrifft, von einem Kommunikationsendgerät (20) zu erlangen, eine Antriebseinheit (13) zum Fliegen, und eine Steuereinrichtung (11), welche dazu eingerichtet ist, die Antriebseinheit (13) zu steuern, auf. Die Steuereinrichtung (11) gibt die Information, welche das Verkehrssystem (100) betrifft, durch Steuern mindestens einer von der Antriebseinheit (13) und der Kommunikationsschnittstelle (12) aus.
Abstract:
In one of aspects, a mobile electronic device that is configured to determine transportation thereof comprises at least one controller that is configured to, while a predetermined vibration is being detected, determine that the transportation is a train when a predetermined change in magnetic field strength is detected within a predetermined period of time. On the other hand, the at least one controller is configured to determine that the transportation is an automobile when the predetermined change in the magnetic field strength is not detected within the predetermined period of time. The at least one controller is further configured to determine that, when predetermined information regarding rotation of the mobile electronic device is detected, the transportation is an automobile even when the predetermined change in the magnetic field strength has been detected within the predetermined period of time.
Abstract:
An electronic apparatus that may be enabled by a user's simple operation to a touch panel, a control method of the electronic apparatus, and a control program of the electronic apparatus are provided. An electronic apparatus 1 includes a contact detector 30 for detecting a contact, an acceleration detector 50 for detecting acceleration, a display 40 for displaying an image, and controllers (12 and 14) for controlling, when the acceleration detector 50 detects predetermined acceleration caused by a first tap and, within a predetermined period therefrom, the contact detector 30 detects a contact caused by a second touch, to carry out an operation based on the contact.
Abstract:
A smartphone (1) according to an embodiment of the present disclosure includes an acceleration sensor (15) and at least one controller (10). The acceleration sensor (15) detects accelerations in three axes. The at least one controller (10) controls various functions based on the accelerations in the three axes of the acceleration sensor (15). Based on accelerations in two axes out of the three axes, the at least one controller (10) changes an offset of an acceleration in the remaining one axis. The at least one controller (10) determines a moving state from a plurality of moving states based on the accelerations and, when the determined moving state is a predetermined moving state, based on the accelerations in the two axes out of the three axes, changes the offset of the acceleration in the remaining one axis.
Abstract:
In one of aspects of the invention, a mobile electronic device includes a first sensor that detects a proximity to an own device, a second sensor that detects a body reaction, and a controller that determines, when the proximity to the own device is detected by the first sensor and the body reaction is detected by the second sensor, that the own device is in a storage part provided on clothes. When it is determined that the own device is in the storage part provided on the clothes, the controller determines whether the clothes correspond to upper-body clothing or lower-body clothing of a user based on rotation information of the own device. Therefore, the mobile electronic device according to one of the aspects can detect a situation where the own device is in the storage part of the clothes, as a situation where the mobile electronic device is placed, and can determine whether the clothes correspond to the upper-body clothing or the lower-body clothing.
Abstract:
An electronic device (1a) includes an acceleration sensor (16) configured to detect an acceleration value, an atmospheric pressure sensor (17) configured to detect an atmospheric pressure value, and a controller (19). The controller (19) is configured to calculate the amount of activity or the number of steps based on the acceleration value detected by the acceleration sensor (16) and the atmospheric pressure value detected by the atmospheric pressure sensor (17).
Abstract:
A mobile electronic device includes an acceleration sensor configured to detect acceleration value, a communication processing unit configured to perform communication, and a controller configured to determine a moving state and a stopped state based on the acceleration value detected by the acceleration sensor, wherein the controller is configured to cause a communication function of the communication processing unit to turn on when the mobile electronic device changes from the moving state to the stopped state and then does not change from the stopped state from the moving state again for a predetermined period of time.
Abstract:
Conventional mobile electronic devices have a room for improvement in control on a plurality of sensors to detect information. For example, a mobile electronic device 1 includes a plurality of sensors, a detector that detects a biological reaction by one of the sensors, and at least one controller 10 that performs control to change a detection cycle of other sensors according to whether the biological reaction is detected. For example, the controller 10 changes the detection cycle used when the biological reaction is detected to a detection cycle shorter than the detection cycle used when no biological reaction is detected.
Abstract:
In an aspect, an electronic device (1) includes: a display unit (2) configured to display a guide route to a destination; an operation part (3) configured to receive an input of the destination; and a controller (10) configured to simultaneously display a plurality of moving routes to the destination using a plurality of moving means on the display unit (2) when the destination is input via the operation part (3). Specifically, the controller (10) searches a route from a departure place to a destination for each of a plurality of predetermined moving means by a function provided from a route search unit (21a) of a navigation program (21). Then, the controller (10) simultaneously displays the searched plurality of routes on the display unit (2) by a function provided from a display controller (21c) of the navigation program (21).
Abstract:
In one aspect, a mobile electronic device (1) includes a first sensor (5) configured to detect proximity to an own device, a second sensor (16) configured to detect a biological response, and a controller (10) configured to determine that the own device is present within a storing part provided on clothing when the biological response is detected by the second sensor (16) in a case where proximity to the own device has been detected by the first sensor (5). Consequently, the mobile electronic device (1) according to the one aspect can detect a situation of the own device being present within a storing part on clothing as a situation where the mobile electronic device (1) is put.