This Application claims priority of Taiwan Patent Application No. 101125744, filed on Jul. 18, 2012, the entirety of which is incorporated by reference herein.
1. Field of the Invention
The present invention relates to a surveillance system, and in particular, relates to a serial transmitting module of a video camera and a serial receiving module of a central control machine (wherein the two modules may be jointly named SERDES).
2. Description of the Related Art
A surveillance system, generally, requires fairly long cables for connecting video cameras to a central control machine.
Further, cables with wider caliber are required for today's advanced video cameras, to safely convey high quality images. When upgrading the surveillance system for high resolution video surveillance, the existing cables in a building have to be replaced entirely. It is very expensive, and, large-diameter cables cost a lot.
A surveillance system, an image compression serializer and an image decompression deserializer are disclosed.
A surveillance system established in accordance with an exemplary embodiment of the invention comprises a video camera, a coaxial cable and a central control machine. The video camera provides a real time record and has an image compression serializer. The central control machine comprises an image decompression deserializer. The image compression serializer compresses a digital image captured by the video camera to a specific resolution and converts the digital image that has been compressed to the specific resolution into a serial format. The coaxial cable couples the image compression serializer to the image decompression deserializer to convey the digital image that is in the specific resolution and in the serial format to the image decompression deserializer. The digital image conveyed by the coaxial cable and received by the image decompression deserializer is converted into a parallel format and decompressed by the image decompression deserializer, to be video encoded.
An image compression serializer comprises a digital image decoder, an image compressor, and a serializer. By the digital image decoder, a digital image of a first data format is decoded. The image compressor receives the digital image output from the digital image decoder and compresses the digital image down to a specific resolution. The serializer is coupled to the image compressor to convert the digital image of the specific resolution into a serial format and thereby the digital image to be conveyed by the coaxial cable is in a second data format.
In another exemplary embodiment, an image decompression deserializer is shown. The image decompression deserializer is operative to recover a digital image back to a first data format. The image decompression deserializer comprises a deserializer, an image decompressor and a digital image encoder. The deserializer receives and converts a digital image of a second data format into a parallel format. Note that second data format is compatible with transmission via a coaxial cable. The image decompressor is coupled to the deserializer for data decompression. The digital image decompressed by the image decompressor is recovered by the digital image encoder back to the first data format.
A detailed description is given in the following embodiments with reference to the accompanying drawings.
The present invention can be more fully understood by reading the subsequent detailed description and examples with references made to the accompanying drawings, wherein:
The following description shows several exemplary embodiments carrying out the invention. This description is made for the purpose of illustrating the general principles of the invention and should not be taken in a limiting sense. The scope of the invention is best determined by reference to the appended claims.
The video cameras 102_1, 102_2 . . . 102_N are capable of capturing high quality images. For example, the video cameras 102_1, 102_2 . . . 102_N may be SDI cameras (serial digital interface cameras), SD-SDI cameras (of 480i60 or 576i50), HD-SDI cameras (of 720P60, 720P50, 1080i60 or 1080i50), or 3G-SDI cameras (of 1080P60 or 1080P50) and so on.
Note that normal-diameter cables are adequate for implementing the coaxial cables of the disclosure (e.g. Coaxial_Cable). Any coaxial cable capable of conveying SD images (with standard definition) is adequate to implement the coaxial cable Coaxial_Cable.
To use normal-diameter coaxial cables in a high image quality surveillance system, the serial transmitting modules in the video cameras 102_1, 102_2 . . . 102_N and the serial receiving modules in the central control machine 104 are specially designed and detailed in the following paragraphs. The pair of modules may be jointly named SERDES.
The video camera 202 captures images by an image sensor 212 and an image signal processor 214 and further comprises an image compression serializer SMART_SER. By the image compression serializer SMART_SER, the captured digital image may bed compressed down to a specific resolution and then converted into a serial format. The coaxial cable Coaxial_Cable couples the image compression serializer SMART_SER of the video camera 202 to the central control machine 204 and thereby the digital image in the specific resolution and the serial format is conveyed into the central control machine 204. The central control machine 204 comprises an image decompression deserializer SMART_DES by which the digital image in the specific resolution and serial format is converted into a parallel format and is decompressed for data recovery. As shown, in the central control machine 204, a digital video recording controller 216 may be coupled after the image decompression deserializer SMART_DES for the video encoder (e.g. based H.264 or other video encoding techniques). The signal which has been processed by the digital video recording controller 216 may be output by the central control machine 204 and conveyed to a screen (e.g. 106 of
As shown in
In the exemplary embodiment of
To summarize, low priced coaxial cables (Coaxial_Cable) may be utilized in a high image quality surveillance system because of the image compressor 224 of the image compression serializer SMART_SER and the image decompressor 234 of the image decompression deserializer SMART_DES. For example, the image quality is maintained above a certain level when the bit rate of a high quality image is converted from 1.5 Gbps/3 Gbps down to 270 Mbps. Thus, inexpensive coaxial cables that can transmit signals at low bit rates may be used in a high image quality surveillance system.
The first data format may be a BT1120 data format and the second data format may be an SD-SDI data format (not intended to be limited thereto). The second data format may be any serial data format compatible with a coaxial cable. The first data format may be any parallel data format with a resolution higher the second data format.
In an exemplary embodiment, the signal conveyed via the coaxial cable Coaxial_Cable is an SD-SDI signal, To meet the minimum requirements for the bi-state toggle rate of an SD-SDI signal, the hi-state toggle-rate-controlled encoder 226 and the bi-state toggle-rate-controlled decoder 232 are designed with respect to each other, which are discussed later.
The image compressor 224 and the image decompressor 234 have various embodiments, for example, they may be implemented by PEG, H.264 or MPEG4 or any image compression/decompression technique.
The bi-state toggle-rate-controlled encoder 226 and the bi-state toggle-rate-controlled decoder 232 may be designed with respect to the JPEG (Joint Photographic Experts Group) technique, which is discussed later.
As shown in
Note that the architecture shown in
While the invention has been described by way of example and in terms of the preferred embodiments, it is to be understood that the invention is not limited to the disclosed embodiments. To the contrary, it is intended to cover various modifications and similar arrangements (as would be apparent to those skilled in the art). Therefore, the scope of the appended claims should be accorded the broadest interpretation so as to encompass all such modifications and similar arrangements.
| Number | Date | Country | Kind |
|---|---|---|---|
| 101125744 | Jul 2012 | TW | national |