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A Support Vector Machine Approach for Detection and Localization of Transmission Errors Within Standard H.263++ Decoders

机译:支持向量机方法,用于在标准H.263 ++解码器中检测和定位传输错误

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摘要

Wireless multimedia services are increasingly becoming popular boosting the need for better quality-of-experience (QoE) with minimal costs. The standard codecs employed by these systems remove spatio-temporal redundancies to minimize the bandwidth required. However, this increases the exposure of the system to transmission errors, thus presenting a significant degradation in perceptual quality of the reconstructed video sequences. A number of mechanisms were investigated in the past to make these codecs more robust against transmission errors. Nevertheless, these techniques achieved little success, forcing the transmission to be held at lower bit-error rates (BERs) to guarantee acceptable quality. This paper presents a novel solution to this problem based on the error detection capabilities of the transport protocols to identify potentially corrupted group-of-blocks (GOBs). The algorithm uses a support vector machine (SVM) at its core to localize visually impaired macroblocks (MBs) that require concealment within these GOBs. Hence, this method drastically reduces the region to be concealed compared to state-of-the-art error resilient strategies which assume a packet loss scenario. Testing on a standard H.263++ codec confirms that a significant gain in quality is achieved with error detection rates of 97.8% and peak signal-to-noise ratio (PSNR) gains of up to 5.33 dB. Moreover, most of the undetected errors provide minimal visual artifacts and are thus of little influence to the perceived quality of the reconstructed sequences.
机译:无线多媒体服务正变得越来越流行,这促使人们以最低的成本获得更好的体验质量(QoE)。这些系统采用的标准编解码器消除了时空冗余,以最大程度地减少所需的带宽。然而,这增加了系统对传输错误的暴露,从而在重构的视频序列的感知质量上呈现出显着的下降。过去研究了许多机制,以使这些编解码器对传输错误的鲁棒性更高。然而,这些技术几乎没有取得成功,迫使传输保持较低的误码率(BER)以保证可接受的质量。本文提出了一种基于传输协议的错误检测功能来识别潜在损坏的块组(GOB)的新颖解决方案。该算法在其核心使用支持向量机(SVM)来定位需要隐藏在这些GOB中的视觉受损宏块(MB)。因此,与假定丢包情况的最新的错误恢复策略相​​比,该方法大大减少了要隐藏的区域。在标准H.263 ++编解码器上进行的测试证实,通过97.8%的检错率和高达5.33 dB的峰值信噪比(PSNR)增益,可以实现显着的质量提升。此外,大多数未检测到的错误提供了最小的视觉伪像,因此对重构序列的感知质量影响很小。

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