The present application is based on, and claims priority from, Taiwan Application Serial Number 94109661, filed Mar. 28, 2005, the disclosure of which is hereby incorporated by reference herein in its entirety.
1. Field of Invention
The present invention relates to a surveillance system and a surveillance method. More particularly, the present invention relates to a surveillance system and a surveillance method having a multi-area motion-detection function.
2. Description of Related Art
In a surveillance system, it will take a huge amount of storage capacities when the surveillance system continues to capture continuous surveillance videos for a long time; therefore, a technology of motion-detection is developed. The technology of motion-detection is capable of detecting an instant surveillance video. When a motion is occurred on the surveillance video, the surveillance video will be recorded or a warning message will be sent out by the surveillance system, if not; the surveillance video will not be recorded or a warning message will not be sent out by the surveillance system.
However, according to the conventional technology of motion-detection, an erroneous judgment is often happened in the condition of motion-detection. For a surveillance system arranged in a room as an example, the surveillance video would be affected because the variation of weather or sunshine outside the room would be frequently through the window, so that the mechanism of motion-detection would assume that the surveillance video need to be recorded or need to send out a warning message and thus an erroneous judgment is made.
There are the same troublesome matters for an exterior surveillance system, for example the cars ran on the road and the pedestrians walked on the street not only usually cause the mechanism of motion-detection to make an erroneous judgment, but also the troublesome matters are produced due to those unnecessary surveillance videos often to be recorded.
According to the foregoing description, a surveillance system and a surveillance method capable of saving a capacity of a storage medium and preventing an erroneous judgment occurred in the mechanism of motion-detection are needed.
It is therefore an objective of the present invention to provide a surveillance system and a surveillance method having a multi-area motion-detection function, which are able to merely monitor an object with a motion-detection operation while not to be affected by the motion of other objects.
It is another objective of the present invention to provide a surveillance system and a surveillance method having a multi-area motion-detection function, which are able to prevent those unwanted variations of images to be recorded or send out a wrong warning message by the surveillance system.
It is still another objective of the present invention to provide a surveillance system and a surveillance method having a multi-area motion-detection function, which allows a user to decide the divides of the monitored areas and to set a motion-detection sensitivity for each area.
According to the foregoing objectives of the invention, the present invention provides a surveillance system having a multi-area motion-detection function. According to a preferred embodiment of the present invention, the surveillance system having a multi-area motion-detection function comprises a display, an area selection device and a threshold input device. The display displays a surveillance video. The area selection device selects a first area and a second area on the surveillance video. The threshold input device sets a motion-detection threshold of the first area and a motion-detection threshold of the second area. When the result of the motion-detection of the first area exceeds the motion-detection threshold of the first area, the surveillance video is stored in a storage medium. When the result of the motion-detection of the second area exceeds the motion-detection threshold of the second area, the surveillance video is stored in the storage medium.
In another embodiment, when the result of the motion-detection of the first area exceeds the motion-detection threshold of the first area and the result of the motion-detection of the second area exceeds the motion-detection threshold of the second area, the surveillance video is stored in the storage medium.
According to an object of the invention, the present invention provides a surveillance method having a multi-area motion-detection function. According to a preferred embodiment of the present invention, the surveillance method comprises the steps of framing a plurality of areas including a first area and a second area on a surveillance video and setting a motion-detection sensitivity for each area.
The step of setting a motion-detection sensitivity may comprises the steps of selecting a first area and a second area on the surveillance video, setting a motion-detection threshold of the first area, setting a motion-detection threshold of the second area, when the result of the motion-detection of the first area exceeds the motion-detection threshold of the first area, the surveillance video is stored in a storage medium, and when the result of the motion-detection of the second area exceeds the motion-detection threshold of the second area, the surveillance video is stored in the storage medium.
The present invention at least comprises the following advantages, wherein each embodiment may comprises one or more advantages. The surveillance system and the surveillance method having a multi-area motion-detection function of the present invention are able to merely monitor an object with a motion-detection operation while not to be affected by the motion of other objects. The surveillance system and the surveillance method of the present invention are able to prevent those unwanted variations of images to be recorded or send out a wrong warning message by the surveillance system. According to the surveillance system and the surveillance method of the present invention, which allow a user to decide the divides of the monitored areas and to set a motion-detection sensitivity for each area.
It is to be understood that both the foregoing general description and the following detailed description are by examples and are intended to provide further explanation of the invention as claimed.
These and other features, aspects, and advantages of the present invention will become better understood with regard to the following description, appended claims, and accompanying drawings where:
Reference will now be made in detail to the present preferred embodiments of the invention, examples of which are illustrated in the accompanying drawings. Wherever possible, the same reference numbers are used in the drawings and the description to refer to the same or like parts.
In one embodiment, the user can use a mouse to frame the first area 104, the second area 106 and the third area 108. The second area 106 is not a rectangle and the second area 106 could be formed by framing many times and combined together, as shown in
In one embodiment, the step of setting a motion-detection sensitivity includes sets a motion-detection threshold of the first area 104 and a motion-detection threshold of the second area 106. When the result of the motion-detection of the first area 104 exceeds the motion-detection threshold of the first area 104, the surveillance video 102 is stored in a storage medium. When the result of the motion-detection of the second area 106 exceeds the motion-detection threshold of the second area 106, the surveillance video 102 is stored in the storage medium. The storage medium is a hard disk, for example.
In another embodiment, when the result of the motion-detection of the first area 104 exceeds the motion-detection threshold of the first area 104 and the result of the motion-detection of the second area 106 exceeds the motion-detection threshold of the second area 106, the surveillance video 102 is stored in a storage medium.
In the first area 104, for example, the method of the motion-detection includes compares a difference between each pixel in two different videos such as a previous video and a current video, after the difference is calculated and a calculation is generated, then compares the calculation with the motion-detection threshold. If the calculation is higher than the motion-detection threshold, it represents that the object captured in the first area 104 was likely be moved and the surveillance system starts to record the video. If the calculation is lower than the motion-detection threshold, the surveillance system will not record the video.
Similarly, the second area 106 is also set to have a motion-detection threshold. According to the threshold, the second area 106 compares a difference between a calculation and the motion-detection threshold and determines whether to record a video. The motion-detection could be any of algorithms or mathematics and the above threshold merely represents a parameter could be set by a user in these all kinds of algorithms, wherein the parameter is not limited to a calculation of a difference between pixels. A parameter used in the other algorithms could be as a threshold.
In one embodiment, a motion-detection threshold of the first area 104 would be adjusted by shifting a selection bar 112. A motion-detection threshold of the second area 106 would be adjusted by shifting a selection bar 114. Similarly, a motion-detection threshold of the third area 108 would be adjusted by shifting a selection bar 116 and a motion-detection threshold of the N area 110 would be adjusted by shifting a selection bar 118.
In another embodiment, the motion-detection threshold of the first area 104 and the motion-detection threshold of the second area 106 are inputted through a screen. For example, a block corresponding to the first area 104 is displayed on the screen and a user is able to input a motion-detection threshold. For example, the user can input a number from 0 to 255, wherein the number represents a motion-detection threshold and sensitivity. Similarly, the second area 106, the third area 108 or the N area 110 could be set to have a motion-detection threshold by inputting a number, respectively.
Referring to
The present invention at least comprises the following advantages, wherein each embodiment may comprises one or more advantages. The surveillance system and the surveillance method having a multi-area motion-detection function of the present invention are able to merely monitor an object with a motion-detection operation while not to be affected by the motion of other objects. The surveillance system and the surveillance method of the present invention are able to prevent those unwanted variations of images to be recorded or send out a wrong warning message by the surveillance system. According to the surveillance system and the surveillance method of the present invention, the user is able to decide the divides of the monitored areas and to set a motion-detection sensitivity for each area.
It will be apparent to those skilled in the art that various modifications and variations can be made to the structure of the present invention without departing from the scope or spirit of the invention. In view of the foregoing, it is intended that the present invention cover modifications and variations of this invention provided they fall within the scope of the following claims and their equivalents.
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