ITU-R REPORT BT 2017-1998 Stereoscopic Television MPEG-2 Multi-View Profile (7 pp)《MPEG-2多视角的实体镜电视》.pdf
《ITU-R REPORT BT 2017-1998 Stereoscopic Television MPEG-2 Multi-View Profile (7 pp)《MPEG-2多视角的实体镜电视》.pdf》由会员分享,可在线阅读,更多相关《ITU-R REPORT BT 2017-1998 Stereoscopic Television MPEG-2 Multi-View Profile (7 pp)《MPEG-2多视角的实体镜电视》.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、Rep. ITU-R BT.2017 REPORT ITU-R BT.2017 STEREOSCOPIC TELEVISION WEG-2 MULTI-VIEW PROFILE 1 (1998) 1 Overview of MPEG-2 multi-view profile (MVP) The extension of the MPEG-2 video standard (ITU-T Recommendation H.262 I ISO/CEI 13818-2: Information technol- ogy - Generic coding of moving pictures and a
2、ssociated audio information: Video) for multi-view applications (e.g. used for stereoscopic video) has been promoted to a final International Standard at the ISO/IEC JTC 1/SC 29/WG 11 meeting in September 1996 (Amendment 3, WG 11 N1366) the multi-view profile (MVP) is envisioned to be a profile appr
3、opriate for applications that require multiple viewpoints within the context the MPEG-2 video standard. MVP supports stereoscopic pictures as its source images for a wide range of picture resolution and quality as requested by the applications to be used. 1.1 Coding scheme for MVP A block diagram of
4、 the codec reference model for the MVP is shown in Fig. 1. Its main features are a monoscopic coding in its base layer for compatibility and a hybrid prediction of motion and disparity for compression efficiency. Temporal scalability tools are used for coding an enhancement layer. FIGURE 1 The codec
5、 reference model for the MVP Motion and disparity compensated DCT encoder Motion and disparity compensated DCT decoder DCT : discret cosine transform Rap 2Ol7-01 A configuration of prediction modes are shown in Fig. 2. A monoscopic coding with the same tools as main profile (MP), including the ISO/I
6、EC 11172-2 Standard is applied to the base layer. A base layer of MVP is assigned to a left view and an enhancement layer is assigned to a right view. An enhancement layer is coded using temporal scalability tools and a hybrid prediction of motions and disparity can be utilized in the enhanced layer
7、. It foresees higher compression of the right view of stereoscopic video by exploiting the similarity between the left and right views. MVP, one of the scalable profiles in terms of multiple viewpoint layers, has the same type of compatibility features; other scalable profiles have such compatibilit
8、y with MP. For example: - decoders compliant to MVP at a certain level are capable of decoding the bitstreams compliant to MP at the corresponding level (i.e. forward compatibility) - decoders compliant to MP at a certain level are capable of decoding the bitstream in the base layer of MVP (i.e. bac
9、kward compatibility). COPYRIGHT International Telecommunications Union/ITU RadiocommunicationsLicensed by Information Handling Services2 Rep. ITU-R BT.2017 Right view Left view FIGURE 2 Prediction configuration example with M = 3 coding of left-view, right-view frame picture coded using disparity pr
10、ediction with respect to left-view and motion prediction with respect to itself 1.2 Parameter values for MVP The levels for the MVP are high, high-1440, main and low. Temporal scalability involves two layers, a base layer and an enhancement layer. Both the enhancement and base layers have the same s
11、patial resolution at the same frame rate. Tables 1 to 4 present bounds on sampling rates, luminance pel rates, bit rates and buffer sizes for the MVP. TABLE 1 Upper bounds for sampling density Level Spatial resolution layer I Multiview High High- 1440 Enhancement (right view) Sampledline Linedframe
12、Frameds 1 920 1152 60 Lower Linedframe (left view) Sampledline Frameds Enhancement Linedframe (right view) Sampledline Frameds Lower Linedframe (left view) Sampledline Frameds 1 920 1152 60 1 440 1152 60 1 440 1152 60 Main Enhancement (right view) Sampledline Linedframe Frameds 720 576 30 Lower (lef
13、t view) Sampledline Linedframe Frameds 720 576 30 Low Enhancement (right view) Sampledline Linedframe Frameds 352 288 30 Lower 30 Frameds 288 Linedframe (left view) 352 Sampledline COPYRIGHT International Telecommunications Union/ITU RadiocommunicationsLicensed by Information Handling ServicesRep. I
14、TU-R BT.2017 3 TABLE 2 Upper bounds for luminance sample rate (samples/s) Level Spatial resolution Profile layer Lower (left view) 62 668 800 I High-1440 Enhancement (right view) I I 47 O01 600 I Lower (left view) 10 368 O00 Enhancement (right view) Main 47 O01 600 10 368 O00 Lower (left view) I Low
15、 I Enhancement (right view) I 3041 280 I Lower (left view) 3 041 280 TABLE 3 Upper bounds for bit rates (Mbit/s) Profile I Level Multiview High 130 both layers 80 base layer High-1440 100 both layers 60 base layer Main 25 both layers 15 base layer Low 8 both layers 4 base layer Level High High-1440
16、Main Low TABLE 4 Buffer size requirements (bits) Layer Enhancement B ase Enhancement B ase Enhancement B ase Enhancement B ase Profile Multiview 15 898 480 9 787 248 12 222 464 7 340 032 3 047 424 1 835 O08 950 272 475 136 1.3 Camera parameter extension An extension for camera information has been i
17、ntroduced in MVP. The extension specifies the height of image device, the focal length, the F-number, the vertical angle of the field of view, the position and the direction of the camera, and upper direction of the camera. COPYRIGHT International Telecommunications Union/ITU RadiocommunicationsLice
18、nsed by Information Handling Services4 Rep. ITU-R BT.2017 2 Assessment tests for MVP The verification tests for the MVP were carried out at three different test sites located in Japan, Germany and Canada. The results of tests were presented at the WG 11 Chicago meeting (WG 11 N1373, September 1996.
19、Test and video subgroup “Results of MPEG-2 multiview profile verification test”). The results of the different test sites are consistent with each other and show that in general, at the tested bit rates, the observers judged that the MPEG-2 multi-view profile coding scheme did not introduce annoying
20、 coding artifacts. 2.1 Test method The double stimulus impairment scale method (variant 11) in Recommendation ITU-R BTS00 was applied. Instead of the discrete scale recommended by ITU-R a continuous scale was used in order to obtain more precise evaluations. 2.2 Test conditions The test sequences ge
21、nerated during bit stream exchange were used. An overview of the test conditions is provided in Table 5. Different display systems were used at each test site. TABLE 5 Overview of the subjective test conditions Sequences Algorithms and bit-rates (leftlright view) Test method Stereoscopic display sys
- 1.请仔细阅读文档,确保文档完整性,对于不预览、不比对内容而直接下载带来的问题本站不予受理。
- 2.下载的文档,不会出现我们的网址水印。
- 3、该文档所得收入(下载+内容+预览)归上传者、原创作者;如果您是本文档原作者,请点此认领!既往收益都归您。
下载文档到电脑,查找使用更方便
10000 积分 0人已下载
下载 | 加入VIP,交流精品资源 |
- 配套讲稿:
如PPT文件的首页显示word图标,表示该PPT已包含配套word讲稿。双击word图标可打开word文档。
- 特殊限制:
部分文档作品中含有的国旗、国徽等图片,仅作为作品整体效果示例展示,禁止商用。设计者仅对作品中独创性部分享有著作权。
- 关 键 词:
- ITURREPORTBT20171998STEREOSCOPICTELEVISIONMPEG2MULTIVIEWPROFILE7PPMPEG2 视角 实体镜 电视 PDF

链接地址:http://www.mydoc123.com/p-792882.html