2022
DOI: 10.1109/tip.2021.3137658
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A Subjective and Objective Study of Space-Time Subsampled Video Quality

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Cited by 29 publications
(14 citation statements)
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“…To analyze the generalizability of the proposed design, we conducted performance comparison of the compared models on traditional VQA databases containing a variety of spatial and temporal artifacts, but single, shared frame rates. For evaluation purposes, we used 5 such legacy VQA datasets, LIVE-VQA [18], LIVE-mobile [21], CSIQ-VQA [19], ETRI-LIVE STSVQ [22] and AVT-VQDB-UHD-1 [23]. These datasets span a variety of spatial resolutions, contain various types of distortions such as scaling, compression, white noise etc., and employ multiple compression schemes such as MPEG, H264, H265, VP9 etc.…”
Section: Performance Comparison On Other Vqa Databasesmentioning
confidence: 99%
“…To analyze the generalizability of the proposed design, we conducted performance comparison of the compared models on traditional VQA databases containing a variety of spatial and temporal artifacts, but single, shared frame rates. For evaluation purposes, we used 5 such legacy VQA datasets, LIVE-VQA [18], LIVE-mobile [21], CSIQ-VQA [19], ETRI-LIVE STSVQ [22] and AVT-VQDB-UHD-1 [23]. These datasets span a variety of spatial resolutions, contain various types of distortions such as scaling, compression, white noise etc., and employ multiple compression schemes such as MPEG, H264, H265, VP9 etc.…”
Section: Performance Comparison On Other Vqa Databasesmentioning
confidence: 99%
“…The performance of CONVIQT on videos modified by synthetic distortions is analyzed in Table IV. CONVIQT obtains superior correlations on recent VQA datasets such as ETRI-LIVE STSVQ [12] and AVT-VQDB-UHD-1 [11], while its performance is slightly lower on legacy datasets like LIVE-VQA [3] and CSIQ-VQA [4]. This may be attributed to the type of distortions present.…”
Section: B Correlation Against Human Judgmentsmentioning
confidence: 99%
“…Advancements in capture and display technologies has led to the widespread adoption of videos of 4K/ultra high definition (UHD) resolution, high dynamic range (HDR) and high frame rate (HFR). This has led to the creation of datasets like AVT-VQDB-UHD-1 [11], ETRI-LIVE STSVQ [12], BVI-HFR [13] and LIVE-YT-HFR [14] which now make it possible to analyze the perceptual implications of these new developments. From an NR algorithm design standpoint, having a single reliable model that is able to accurately quantify both synthetic and authentic artifacts would be quite advantageous, since it could be used in wide ranges of scenario presenting highly diverse of the distortions and combinations of them.…”
Section: Introductionmentioning
confidence: 99%
“…We refer the reader to [11], [12] for a comprehensive analysis and collection of publicly available databases through 2012. In recent years, more video quality databases [13]- [18] have been proposed to address different scenarios. Although these databases have undoubtedly accelerated the development of VQA algorithms, generally distortions of the chroma channels were not specifically designed.…”
Section: A Subjective Video/picture Quality Databasesmentioning
confidence: 99%