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3D multiple description coding for error resilience over wireless networks

机译:用于无线网络上的错误恢复的3D多描述编码

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摘要

Mobile communications has gained a growing interest from both customers and service providers alike in the last 1-2 decades. Visual information is used in many application domains such as remote health care, video –on demand, broadcasting, video surveillance etc. In order to enhance the visual effects of digital video content, the depth perception needs to be provided with the actual visual content. 3D video has earned a significant interest from the research community in recent years, due to the tremendous impact it leaves on viewers and its enhancement of the user’s quality of experience (QoE). In the near future, 3D video is likely to be used in most video applications, as it offers a greater sense of immersion and perceptual experience. When 3D video is compressed and transmitted over error prone channels, the associated packet loss leads to visual quality degradation. When a picture is lost or corrupted so severely that the concealment result is not acceptable, the receiver typically pauses video playback and waits for the next INTRA picture to resume decoding. Error propagation caused by employing predictive coding may degrade the video quality severely. There are several ways used to mitigate the effects of such transmission errors. One widely used technique in International Video Coding Standards is error resilience. The motivation behind this research work is that, existing schemes for 2D colour video compression such as MPEG, JPEG and H.263 cannot be applied to 3D video content. 3D video signals contain depth as well as colour information and are bandwidth demanding, as they require the transmission of multiple high-bandwidth 3D video streams. On the other hand, the capacity of wireless channels is limited and wireless links are prone to various types of errors caused by noise, interference, fading, handoff, error burst and network congestion. Given the maximum bit rate budget to represent the 3D scene, optimal bit-rate allocation between texture and depth information rendering distortion/losses should be minimised. To mitigate the effect of these errors on the perceptual 3D video quality, error resilience video coding needs to be investigated further to offer better quality of experience (QoE) to end users. This research work aims at enhancing the error resilience capability of compressed 3D video, when transmitted over mobile channels, using Multiple Description Coding (MDC) in order to improve better user’s quality of experience (QoE). Furthermore, this thesis examines the sensitivity of the human visual system (HVS) when employed to view 3D video scenes. The approach used in this study is to use subjective testing in order to rate people’s perception of 3D video under error free and error prone conditions through the use of a carefully designed bespoke questionnaire.
机译:在过去的1-2年中,移动通信越来越受到客户和服务提供商的关注。视觉信息被用于许多应用领域,例如远程医疗保健,视频点播,广播,视频监视等。为了增强数字视频内容的视觉效果,深度感知需要提供实际的视觉内容。近年来,由于3D视频对观看者产生的巨大影响以及用户体验质量(QoE)的提高,引起了研究界的极大兴趣。在不久的将来,由于3D视频可以提供更好的沉浸感和感知体验,因此很可能会在大多数视频应用中使用。当3D视频被压缩并通过容易出错的信道传输时,相关的数据包丢失会导致视觉质量下降。当图片丢失或损坏到严重程度以致隐藏结果不可接受时,接收器通常会暂停视频播放并等待下一个INTRA图片恢复解码。由于采用预测编码而导致的错误传播可能会严重降低视频质量。有几种方法可以减轻这种传输错误的影响。国际视频编码标准中一种广泛使用的技术是错误恢复能力。这项研究工作背后的动机是,现有的2D彩色视频压缩方案(如MPEG,JPEG和H.263)无法应用于3D视频内容。 3D视频信号包含深度和颜色信息,并且对带宽有要求,因为它们需要传输多个高带宽3D视频流。另一方面,无线信道的容量是有限的,并且无线链路容易出现由噪声,干扰,衰落,越区切换,错误突发和网络拥塞引起的各种类型的错误。给定用于表示3D场景的最大比特率预算,应最小化纹理和深度信息渲染失真/损失之间的最佳比特率分配。为了减轻这些错误对感知3D视频质量的影响,需要进一步研究错误复原力视频编码,以便为最终用户提供更好的体验质量(QoE)。这项研究工作旨在使用多描述编码(MDC)增强在移动通道上传输时压缩的3D视频的错误恢复能力,以改善更好的用户体验质量(QoE)。此外,本文研究了人类视觉系统(HVS)在观看3D视频场景时的灵敏度。这项研究中使用的方法是使用主观测试,以便通过使用精心设计的定制问卷来评估人们在无差错和容易出错的情况下对3D视频的感知。

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