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Binary Video Codec for Data Reduction in Wireless Visual Sensor Networks

机译:二进制视频编解码器,用于减少无线视觉传感器网络中的数据

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Wireless Visual Sensor Networks (WVSN) is formed by deploying many Visual Sensor Nodes (VSNs) in the field. Typical applications of WVSN include environmental monitoring, health care, industrial process monitoring, stadium/airports monitoring for security reasons and many more. The energy budget in the outdoor applications of WVSN is limited to the batteries and the frequent replacement of batteries is usually not desirable. So the processing as well as the communication energy consumption of the VSN needs to be optimized in such a way that the network remains functional for longer duration. The images captured by VSN contain huge amount of data and require efficient computational resources for processing the images and wide communication bandwidth for the transmission of the results. Image processing algorithms must be designed and developed in such a way that they are computationally less complex and must provide high compression rate. For some applications of WVSN, the captured images can be segmented into bi-level images and hence bi-level image coding methods will efficiently reduce the information amount in these segmented images. But the compression rate of the bi-level image coding methods is limited by the underlined compression algorithm. Hence there is a need for designing other intelligent and efficient algorithms which are computationally less complex and provide better compression rate than that of bi-level image coding methods. Change coding is one such algorithm which is computationally less complex (require only exclusive OR operations) and provide better compression efficiency compared to image coding but it is effective for applications having slight changes between adjacent frames of the video. The detection and coding of the Region of Interest (ROIs) in the change frame efficiently reduce the information amount in the change frame. But, if the number of objects in the change frames is higher than a certain level then the compression efficiency of both the change coding and ROI coding becomes worse than that of image coding. This paper explores the compression efficiency of the Binary Video Codec (BVC) for the data reduction in WVSN. We proposed to implement all the three compression techniques i.e. image coding, change coding and ROI coding at the VSN and then select the smallest bit stream among the results of the three compression techniques. In this way the compression performance of the BVC will never become worse than that of image coding. We concluded that the compression efficiency of BVC is always better than that of change coding and is always better than or equal that of ROI coding and image coding.
机译:无线视觉传感器网络(WVSN)是通过在现场部署许多视觉传感器节点(VSN)形成的。 WVSN的典型应用包括环境监控,医疗保健,工业过程监控,出于安全原因的体育场/机场监控等等。 WVSN的户外应用中的能量预算仅限于电池,通常不希望频繁更换电池。因此,需要以这种方式优化VSN的处理以及通信能耗,以使网络在更长的时间内保持正常运行。 VSN捕获的图像包含大量数据,并且需要高效的计算资源来处理图像,并需要较宽的通信带宽来传输结果。图像处理算法的设计和开发必须使它们在计算上不那么复杂,并且必须提供高压缩率。对于WVSN的某些应用,可以将捕获的图像分割为两层图像,因此,两层图像编码方法将有效地减少这些分割图像中的信息量。但是,带下划线的压缩算法限制了双层图像编码方法的压缩率。因此,需要设计其他智能且高效的算法,该算法比双级图像编码方法在计算上较不复杂并且提供更好的压缩率。变更编码是一种这样的算法,与图像编码相比,其运算量较小(仅要求“异或”运算),并且压缩效率更高,但是对于在视频的相邻帧之间有微小变化的应用而言,它是有效的。改变帧中的感兴趣区域(ROI)的检测和编码有效地减少了改变帧中的信息量。但是,如果变化帧中的对象数大于一定水平,则变化编码和ROI编码的压缩效率都变得比图像编码的压缩效率差。本文探讨了用于WVSN数据压缩的二进制视频编解码器(BVC)的压缩效率。我们提议在VSN上实现所有三种压缩技术,即图像编码,更改编码和ROI编码,然后在这三种压缩技术的结果中选择最小的比特流。这样,BVC的压缩性能将永远不会比图像编码的性能更差。我们得出的结论是,BVC的压缩效率始终优于更改编码,并且始终优于或等于ROI编码和图像编码。

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