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Streaming 360-Degree Videos Using Super-Resolution

机译:使用超高分辨率流式传输360度视频

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360° videos provide an immersive experience to users, but require considerably more bandwidth to stream compared to regular videos. State-of-the-art 360° video streaming systems use viewport prediction to reduce bandwidth requirement, that involves predicting which part of the video the user will view and only fetching that content. However, viewport prediction is error prone resulting in poor user Quality of Experience (QoE). We design PARSEC, a 360° video streaming system that reduces bandwidth requirement while improving video quality. PARSEC trades off bandwidth for additional client-side computation to achieve its goals. PARSEC uses an approach based on super-resolution, where the video is significantly compressed at the server and the client runs a deep learning model to enhance the video to a much higher quality. PARSEC addresses a set of challenges associated with using super-resolution for 360° video streaming: large deep learning models, slow inference rate, and variance in the quality of the enhanced videos. To this end, PAR-SEC trains small micro-models over shorter video segments, and then combines traditional video encoding with super-resolution techniques to overcome the challenges. We evaluate PARSEC on a real WiFi network, over a broadband network trace released by FCC, and over a 4G/LTE network trace. PARSEC significantly outperforms the state-of-art 360° video streaming systems while reducing the bandwidth requirement.
机译:360°视频可为用户提供身临其境的体验,但与常规视频相比,流媒体传输需要更多带宽。最新的360°视频流系统使用视口预测来减少带宽需求,这涉及预测用户将观看视频的哪一部分,并且仅获取该内容。但是,视口预测容易出错,导致用户的体验质量(QoE)较差。我们设计了PARSEC,这是一种360°视频流传输系统,可以减少带宽需求,同时提高视频质量。 PARSEC权衡带宽以进行其他客户端计算以实现其目标。 PARSEC使用基于超分辨率的方法,其中视频在服务器上得到了显着压缩,客户端运行深度学习模型以将视频增强到更高的质量。 PARSEC解决了与为360°视频流使用超分辨率相关的一系列挑战:大型深度学习模型,缓慢的推理速度以及增强视频质量的变化。为此,PAR-SEC在较短的视频片段上训练小模型,然后将传统的视频编码与超分辨率技术结合起来以克服挑战。我们通过FCC发布的宽带网络跟踪和4G / LTE网络跟踪对真实WiFi网络上的PARSEC进行评估。 PARSEC在降低带宽需求的同时,大大超过了最新的360°视频流系统。

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