1. Technical Field
Embodiments of the present disclosure relate generally to monitoring methods, and more particularly, to an image monitoring device and method.
2. Description of Related Art
Video monitoring systems may be used to report motion by objects, for example, people or vehicles, to monitor activity in specific locations. However, some such systems may require personnel to monitor display screens, which is an inconvenient and unreliable methodology.
The disclosure, including the accompanying drawings, is illustrated by way of example and not by way of limitation. It should be noted that references to “an” or “one” embodiment in this disclosure are not necessarily to the same embodiment, and such references mean at least one.
The image capture device 2 captures images of a target area monitored by the computing device 1. As an example, in
The light detection device 3 is installed in the target area to detect an illumination intensity of the target area. The light detection device 3 may be a photometer, for example. The alarm device 4 may be a voice alarm device, or a telephone alarm device, for example. Details of the light detection device 3 and the alarm device 4 follow.
The storage system 11 stores one or more programs, such as programs of an operating system, and other applications of the computing device 1. In one embodiment, the storage system 11 may be random access memory (RAM) for temporary storage of information, and/or a read only memory (ROM) for permanent storage of information. In other embodiments, the storage system 11 may also be an external storage device, such as a hard disk, a storage card, or a data storage medium. The processor 12 executes computerized operations of the computing device 1 and other applications, to provide functions of the computing device 1.
The monitoring system 10 may include a plurality of functional modules comprising one or more computerized instructions that are stored in the storage system 11 or a computer-readable medium of the computing device 1, and executed by the processor 12 to perform operations of the computing device 1. In one embodiment, the monitoring system 10 includes an image obtaining module 101, a light detection module 102, an acquisition module 103, an image analysis module 104, and an execution module 105. In general, the word “module”, as used herein, refers to logic embodied in hardware or firmware, or to a collection of software instructions, written in a programming language, such as, Java, C, or Assembly. One or more software instructions in the modules may be embedded in firmware, such as EPROM. The modules described herein may be implemented as either software and/or hardware modules and may be stored in any type of computer-readable medium or other storage device.
The image obtaining module 101 is operable to obtain a current image of the target area using the image capture device 2. In one embodiment, the image obtaining module 101 may obtain multiple images at regular intervals. For example, the image obtaining module 101 may direct the image capture device 2 to capture images of the target area every two seconds, three seconds, or five seconds.
The light detection module 102 is operable to detect an illumination intensity of the target area using the light detection device 3.
The acquisition module 103 is operable to acquire a standard image of the target area from the storage system 11 according to the illumination intensity. In one embodiment, a group of standard images of the target area based on various illumination intensities are captured by the image capture device 2 in advance, and stored in the storage system 11. For example, if the illumination intensity of the target area is between 400 lumens and 450 lumens, the standard image of the target area based on the illumination intensity is stored as a first standard image. If the illumination intensity of the target area is between 400 lumens and 450 lumens, the standard image of the target area is stored as a second standard image. In the embodiment, the light detection device 3 is equipped to overcome the influence due to the illumination intensity changes of the light, so as to strengthen the reliability of the monitoring system 10.
The image analysis module 104 is operable to compare the current image with the standard image of the target area, and detect presence of unwanted activity of the target area according to the comparison.
In one embodiment, the image analysis module 104 may compare a RGB value of each pixel of the current image with a RGB value of each corresponding pixel of the standard image. The RGB value is consist of a red value, a green value, and a blue value of a pixel. The red value, the green value, and the blue value may be a value of 0 to 255. In the embodiment, if RGB values of some pixels, such as, 15% of all of the pixels of the current image are different from that of the standard image, the unwanted activity, such as, a car is drove into the target area, may be detected. In other embodiments, the image analysis module 104 may analyze the current image of the target area using other image analysis methods, such as an intensity coefficient analysis method, for example.
The execution module 105 is operable to trigger the alarm device 4 to alarm when the unwanted activity is detected. In one embodiment, when the alarm device 4 is triggered, the alarm device 4 may output audio alarms or dial a preset telephone number to inform relevant persons to handle the presence of unwanted activity of the target area. Additionally, the execution module 105 is further operable to display the current image of the target area on a display screen of the computing device 1, so that the relevant persons may know in detail of the target area.
In block S01, the image obtaining module 101 obtains a current image of a target area using the image capture device 2. In one embodiment, the image obtaining module 101 may obtain the current image of the target area at a regular interval. The target area may be a region around a wall M1 of
In block S02, the light detection module 102 detects an illumination intensity of the target area using the light detection device 3.
In block S03, the acquisition module 103 acquires a standard image of the target area from the storage system 11 according to the illumination intensity. In one embodiment, a group of standard images of the target area based on various illumination intensities are captured by the image capture device 2 in advance, and stored in the storage system 11.
In block S04, the image analysis module 104 compares the current image with the standard image of the target area, and detects presence of unwanted activity of the target area according to the comparison. In block S05, the image analysis module 104 determines if unwanted activity is detected. If unwanted activity is detected, block S06 is implemented. Otherwise, if no unwanted activity is detected, block S01 is repeated.
In block S06, the execution module 105 triggers the alarm device 4 to alarm in response to the presence of unwanted activity. In one embodiment, when the alarm device 4 is triggered, the alarm device 4 may output audio alarms or dials a preset telephone number to inform relevant persons to handle the presence of unwanted activity of the target area. Additionally, in order to show details of the target area to the relevant persons, the execution module 105 further displays the current image of the target area on a display screen of the computing device 1.
Although certain embodiments of the present disclosure have been specifically described, the present disclosure is not to be construed as being limited thereto. Various changes or modifications may be made to the present disclosure without departing from the scope and spirit of the present disclosure.
Number | Date | Country | Kind |
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99119308 | Jun 2010 | TW | national |