The present invention relates to a detecting device, and more particularly to a detecting device for performing ambient detection by using an active infrared detecting technology. The present invention also relates to an operating method of the detecting device.
Nowadays, an active infrared detecting technology is used for detecting an object by arranging a transmitter and a receiver of a detecting device along a line. Moreover, the transmitter and the receiver are cooperated in a one-to-one manner. That is, the transmitter continuously emits a light beam, and the receiver continuously receives the light beam. A method of performing the active infrared detecting technology will be illustrated as follows. For example, if the optical path of the light beam is interrupted, the detecting device may judge that an object enters a detection zone. Afterwards, a corresponding action is performed. For example, a lighting device is turned on, an alarm is enabled to generate a warning sound, or an image pickup device is enabled to record images.
Conventionally, the use of the active infrared detecting technology is only able to turn on or turn off a corresponding electrical appliance. For example, if the light beam is interrupted, an image pickup device may be turned on. However, since the image pickup device fails to be moved along the moving direction of the object, the image pickup device cannot record the image of the object by tracking the moving object. In other words, the current detecting method is very simple and passive. Moreover, since the transmitter and the receiver are distributed in a line (i.e. in a one dimensional arrangement), the detecting range of the conventional detecting device is very narrow. For increasing the detecting range, it is necessary to install many transmitters and many receivers. Under this circumstance, the cost is increased.
Therefore, there is a need of providing a detecting device with a wide detecting range and reduced cost. Moreover, there is a need of providing a detecting device for enabling an ambient electrical appliance (e.g. a lighting device or an image pickup device) to perform a corresponding action in response to the movement of the object by detecting the moving direction of the object.
For overcoming the drawbacks encountered from the prior art, the present invention provides a detecting device and an operating method of the detecting device by utilizing an active infrared detecting technology to detect a large area.
For overcoming the drawbacks encountered from the prior art, the present invention also provides a detecting device and an operating method of the detecting device for detecting a moving direction of an object. Moreover, an ambient electrical appliance is electrically connected with the detecting device. By tracking the moving object, an ambient electrical appliance of the detecting device can perform a corresponding action such as the action of turning on a lighting device, emitting a sound or recording an image.
In accordance with an aspect of the present invention, there is provided a detecting device for detecting a detection zone. The detecting device includes at least one transmitter and plural receivers. The at least one transmitter is used for emitting plural incident light beams to the detection zone. The plural receivers are used for receiving plural reflected light beams which are reflected from the detection zone in response to the plural incident light beams. When the at least one transmitter emits the plural incident light beams to the detection zone at a first time spot, the plural reflected light beams strike a first part of the plural receivers, so that the plural receivers are in an initial reception configuration. When the at least one transmitter emits the plural incident light beams to the detection zone at a second time spot, if an object is moved within the detection zone, the plural reflected light beams strike a second part of the plural receivers in response to a position change of the object, so that the plural receivers are in a disturbed reception configuration. According to the disturbed reception configuration, the detecting device judges that the object is moved within the detection zone.
In an embodiment, the detecting device further includes a microprocessor. The microprocessor is electrically connected with the plural receivers. A moving direction of the object is calculated by the microprocessor according to projecting areas and/or angles of the reflected light beams relative to the first part and the second part of the plural receivers.
In an embodiment, the transmitter is an active infrared transmitter.
In an embodiment, each of the plural receivers is selected from an active infrared receiver, a charge coupled device with an infrared filter or a complementary metal-oxide-semiconductor with an infrared filter.
In an embodiment, the detecting device further includes an image pickup device, which is electrically connected with the plural receivers. When the plural receivers are in the disturbed reception configuration, the plural receivers issue a signal to the image pickup device, thereby enabling the image pickup device.
In an embodiment, the image pickup device is moved along the moving direction of the object for recording an image of the object. By analyzing and judging a distance between the object and the image pickup device, the microprocessor allows the image pickup device to be focused on the object.
In an embodiment, the detecting device further includes at least one lighting device, which is electrically connected with the plural receivers. When the plural receivers are in the disturbed reception configuration, the plural receivers issue a signal to the at least one lighting device, thereby enabling the at least one lighting device.
In an embodiment, the lighting device is a light bulb, a light tube, a lamp or a work light. The lamp is a ceiling lamp or a garden lamp, and the work light is a work light with a spraying function or a work light with a humidifying function.
In an embodiment, the detecting device further includes a lighting group. The lighting group includes at least one first lighting device and a second lighting device. The at least one first lighting device and the second lighting device are in communication with each other through a communication channel.
In an embodiment, the first lighting device is a master control lighting device, and the second lighting device has a controlled function. According to a result of detecting the detection zone, the first lighting device is actively controlled to be turned on or turned off, and the second lighting device is passively controlled to be turned on or turned off in response to a control command from the first lighting device.
In an embodiment, each of the first lighting device and the second lighting device has both of a master control function and a controlled function. When a lighting control program is executed, the first lighting device and the second lighting device are controlled to be turned on or turned off.
In an embodiment, the detecting device further includes an alarm, which is electrically connected with the plural receivers. When the plural receivers are in the disturbed reception configuration, the plural receivers issue a signal to the alarm, thereby enabling the alarm.
In an embodiment, the plural receivers are distributed in an array arrangement or a linear arrangement.
In accordance with another aspect of the present invention, there is provided an operating method of a detecting device. Firstly, at least one transmitter emits plural incident light beams to the detection zone at a first time spot, and plural receivers receive plural reflected light beams which are reflected from the detection zone in response to the plural incident light beams. The plural reflected light beams strike a first part of the plural receivers, so that the plural receivers are in an initial reception configuration. Then, the at least one transmitter emits the plural incident light beams to the detection zone at a second time spot, and the plural receivers to receive the plural reflected light beams which are reflected from the detection zone in response to the plural incident light beams. If an object is moved within the detection zone, the plural reflected light beams are disturbed by the object and deflected to a second part of the plural receivers, so that the plural receivers are in a disturbed reception configuration. If no object is moved within the detection zone, the plural reflected light beams still strike the first part of the plural receivers, so that the plural receivers are in the initial reception configuration. Afterwards, a spatial status of the detection zone is determined according to a reception configuration change between the first time spot and the second time spot.
In an embodiment, the detecting device further includes a microprocessor, which is electrically connected with the plural receivers. A moving direction is calculated by the microprocessor according to projecting areas and/or angles of the reflected light beams relative to the first part and the second part of the plural receivers.
In an embodiment, the transmitter is an active infrared transmitter.
In an embodiment, each of the plural receivers is selected from an active infrared receiver, a charge coupled device with an infrared filter or a complementary metal-oxide-semiconductor with an infrared filter.
From the above descriptions, the present invention provides a detecting device with at least one transmitter and plural receivers. After the at least one transmitter emits plural incident light beams to a detection zone, plural reflected light beams reflected from the detection zone are received by the plural receivers. Moreover, if the spatial status of the detection zone is changed, the reflected light beams are received by the plural receivers in various reception configurations. In other words, the current one dimensional detecting mechanism is improved as the three dimensional detecting mechanism of the present invention. Consequently, the detectable range is largely increased, and therefore the total number of the at least one transmitter and the plural receivers is reduced, so that the cost is reduced. Moreover, after the reception configuration of the receivers is received by the microprocessor, the moving direction and the displacement of the object can be realized. Consequently, the ambient electrical appliance of the detecting device can perform a corresponding action by tracking the movement of the object.
The above objects and advantages of the present invention will become more readily apparent to those ordinarily skilled in the art after reviewing the following detailed description and accompanying drawings, in which:
In
The number of the sub-zone of the detection zone 5, the number of the at least one transmitter 10 and the number of the plural receivers 11 may be determined by the manufacturer according to the practical requirements. For example, the detecting device 1 may comprise one transmitter 10 and one receiver 11, or comprise one transmitter 10 and two receivers 11, or comprise one transmitter 10 and four receivers 11, or comprise two transmitters 10 and two receivers 11, or comprise two transmitters 10 and four receivers 11. Hereinafter, the present invention will be illustrated by referring to the detecting device 1 with two transmitters 101, 102 and nine receivers 11. Moreover, the detection zone 5 is divided into two sub-zones 51 and 52. It is noted that the numbers of the transmitters and the receivers may be varied according to the practical requirements. Moreover, the plural receivers 11 may be distributed in an array arrangement or a linear arrangement, and the arrangement of the receivers 11 is not limited thereto.
As shown in
Then, the incident light beams 107 are continuously emitted by the transmitters 10, and thus the reflected light beams 108 are continuously received by the receivers 11. Alternatively, the incident light beams 107 are periodically emitted by the transmitters 10 every a preset time interval (e.g. every 1 millisecond), and the reflected light beams 108 are periodically received by the receivers 11 every the preset time interval. Consequently, as long as no object is moved within the detection zone 5, the reflected light beams 108 are continuously or periodically received by the first part 11a of the receivers 11. Under this circumstance, the receivers 11 are maintained in the initial reception configuration.
As shown in
Please refer to
Moreover, in a preferred embodiment, the transmitter 10 of the detecting device 1 is selected from an active infrared transmitter, and the receiver 11 of the detecting device 1 is an active infrared receiver, a charge coupled device (CCD) with an infrared filter or a complementary metal-oxide-semiconductor (CMOS) with an infrared filter.
Moreover, the minimum numbers of the at least one transmitter 10 and the plural receivers 11 used in the detecting device 1 of the present invention may be determined according to precision requirement of the detecting device 1. For example, for performing the simplest detection to enable or disable an electrical appliance, the detecting device 1 may at least comprise one transmitter 10 and one receiver 11. Consequently, when the incident light beams 107 from the transmitter 10 strike the detection zone 5, the plural reflected light beams 108 reflected from the transmitter 5 are continuously received by the receiver 11. On the other hand, if the plural reflected light beams 108 are not received by the receiver 11, an enabling signal or a disabling signal is generated. Alternatively, for detecting the linear motion of the object 9, the detecting device 1 may at least comprise one transmitter 10 and two receivers 11. At a first time spot, one of the two receivers 11 is irradiated by the reflected light beams 108 but the other one of the two receivers 11 is not irradiated by the reflected light beams 108. At a second time spot, both of the two receivers are irradiated or not irradiated by the reflected light beams 108. Then, by judging the reception configuration of the receivers, the microprocessor 13 issues a corresponding signal according to the judging result. In response to the signal, an electrical appliance electrically connected with the detecting device 1 is correspondingly enabled, disabled or shifted. Alternatively, for detecting the planar motion of the object 9, the detecting device 1 may at least comprise one transmitter 10 and four receivers 11. After a computation is performed, a moving direction and a displacement of the object 9 within the planar detection zone can be calculated.
Alternatively, in some other embodiments, the receiver 11 is an image receiver. By comparing the difference between a first image at a first time spot and a second image at a second time spot, the image receiver 11 can further calculate the moving direction of the object 9. In this situation, the detecting device 1 may at least only comprise one transmitter 10 and one image receiver.
Alternatively, in some other embodiments, the detecting device 1 further comprises an alarm (not shown). The alarm is electrically connected with the plural receivers 11. In case that the plural receivers 11 are in the disturbed reception configuration, the plural receivers 11 issue a signal to the alarm. In response to the signal, the alarm is enabled. Moreover, any other electrical appliance to be automatically enabled may be electrically connected with the detecting device 1. The examples of the electrical appliances are presented herein for purpose of illustration and description only and are not intended to limit the scope of the present invention.
Each of the lighting devices 72˜75 is a non-master control lighting device (e.g. an ordinary lighting device) with an electromagnetic wireless communication module (not shown). Moreover, each of the lighting devices 72˜75 has a controlled function. That is, each of the lighting devices 72˜75 can be passively controlled in response to a wireless lighting control, but each of the lighting devices 72˜75 cannot actively issue a control command. In this embodiment, according to the result of detecting the detection zone 7 by the detecting device 1, the lighting device 71 issues a control command C1 to the lighting devices 72˜75 with the controlled function.
Moreover, each of the lighting devices 81˜85 includes an additional microprocessor (not shown). The additional microprocessor is in wireless communication with the plural receivers 11 of the detecting device 1. An active detecting and scanning result between the transmitter 10 and the plural receivers 11 of the detecting device 1 may be inputted into and judged by the additional microprocessor. Moreover, a lighting control program may be executed by the additional microprocessors of these lighting devices 81˜85 collaboratively.
By the above design, the lighting devices 81˜85 can be individually in wireless communication with the receivers 11. Moreover, in response to a wireless signal, the lighting devices 81˜85 are individually turned on or turned off. That is, according to the result of detecting the detection zone 7 by the detecting device 1, the lighting devices 81˜85 are individually turned on or turned off. Furthermore, the lighting devices 81˜85 may be in wireless communication with each other through electromagnetic waves in order to transmit a lighting control command C2 to or back the other lighting devices. Consequently, a more elaborate light tracking mechanism can be coordinated.
Hereinafter, the operating method of the detecting device of the present invention will be illustrated with reference to
From the above descriptions, the present invention provides a detecting device with at least one transmitter and plural receivers. After the at least one transmitter emits plural incident light beams to a detection zone, plural reflected light beams reflected from the detection zone are received by the plural receivers. Moreover, if the spatial status of the detection zone is changed, the reflected light beams are received by the plural receivers in various reception configurations. In other words, the current one dimensional detecting mechanism is improved as the three dimensional detecting mechanism of the present invention. Consequently, the detectable range is largely increased. Moreover, since the total number of the at least one transmitter and the plural receivers is reduced, the detecting device of the present invention is reduced. Moreover, after the reception configuration of the receivers is received by the microprocessor, the moving direction and the displacement of the object can be realized. Consequently, the ambient electrical appliance of the detecting device can perform a corresponding action by tracking the movement of the object.
While the invention has been described in terms of what is presently considered to be the most practical and preferred embodiments, it is to be understood that the invention needs not be limited to the disclosed embodiment. On the contrary, it is intended to cover various modifications and similar arrangements included within the spirit and scope of the appended claims which are to be accorded with the broadest interpretation so as to encompass all such modifications and similar structures.
Number | Date | Country | Kind |
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201210118585.8 | Apr 2012 | CN | national |