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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Design of multicode CDMA systems for 3-D stereoscopic video over wireless ATM networks
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Design of multicode CDMA systems for 3-D stereoscopic video over wireless ATM networks

机译:无线ATM网络上用于3D立体视频的多码CDMA系统的设计

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摘要

This paper investigates the application of multicode spread-spectrum code-division multiple-access (SS-CDMA) techniques to three-dimensional (3-D) stereoscopic video transmission over wireless asynchronous transfer mode (ATM) networks. Three-dimensional visual communications, made through the use of stereoscopic images, are able to achieve total display realism. Such services allow users to share the virtual reality (VR) world without any geographical restrictions. In order to create a 3-D system with two images (left and right) that should be transmitted over a bandlimited mobile channel simultaneously, a cost-effective motion picture experts group (MPEG)-based wavelet multiresolution coding with a joint motion and disparity compensation is developed to reduce a large amount of information contained in the images to meet the low-transmission rate limitation of mobile channels. However, the rapidly variable bit rate (VBR) characteristics of the MPEG-based 3-D videos seems a weakness to the transmission of such videos via a constant bit-rate (CBR) mobile channel. The ATM technique is especially well suited for VBR MPEG-based 3-D video because of its ability to allocate bandwidth on demand to these services. However, since the mobile radio has a limited channel capacity, the overall capacity of the traditional ATM-based SS-CDMA system may not be sufficient to accommodate the MPEG-based 3-D video services requested by the multiple mobile users simultaneously. To tackle this difficulty, a multicode CDMA technique is proposed to provide VBR MPEG-based 3-D video services by varying the number of spreading codes assigned to the 3-D video to meet its dynamic throughput requirement. Powerful forward error correction (FEC) codes are necessary to protect the video data so that it can be successfully transmitted at an acceptable signal power level. Two separate FEC code schemes are applied to the header and payload of an ATM cell containing 3-D video data, respectively. The ATM cell header is protected by a relatively powerful FEC code to ensure correct delivery and low cell loss rate (CLR). On the other hand, the ATM cell payload is encoded for varying degrees of error protection according to the priority of the payload data in 3-D videos. An adaptive FEC code combining scheme is proposed to provide the good protection for payload data with the maximization of its code rate to minimize the extra bandwidth for FEC overhead.
机译:本文研究了多码扩频码分多址(SS-CDMA)技术在无线异步传输模式(ATM)网络上的三维(3-D)立体视频传输中的应用。通过使用立体图像进行的三维视觉交流可以实现整体显示的真实感。此类服务允许用户共享虚拟现实(VR)世界,而不受任何地理限制。为了创建具有两个图像(左和右)的3D系统,这些图像应同时通过有限带宽的移动通道进行传输,基于成本的运动图像专家组(MPEG)的具有联合运动和视差的小波多分辨率编码开发补偿以减少图像中包含的大量信息,以满足移动通道的低传输速率限制。但是,基于MPEG的3-D视频的快速可变比特率(VBR)特性对于通过恒定比特率(CBR)移动通道传输此类视频似乎是一个弱点。 ATM技术特别适合基于VBR MPEG的3D视频,因为它能够按需分配带宽给这些服务。但是,由于移动无线电具有有限的信道容量,传统的基于ATM的SS-CDMA系统的整体容量可能不足以同时容纳多个移动用户所请求的基于MPEG的3-D视频服务。为了解决这个困难,提出了一种多码CDMA技术,通过改变分配给3-D视频的扩频码的数量来满足其动态吞吐量要求,从而提供基于VBR MPEG的3-D视频服务。必须使用强大的前向纠错(FEC)码来保护视频数据,以便可以在可接受的信号功率水平下成功传输视频数据。两种单独的FEC码方案分别应用于包含3-D视频数据的ATM信元的标题和有效载荷。 ATM信元头由相对强大的FEC代码保护,以确保正确传递和低信元丢失率(CLR)。另一方面,根据3D视频中有效载荷数据的优先级,对ATM信元有效载荷进行了编码,以实现不同程度的错误保护。提出了一种自适应FEC码合并方案,以最大的码率为有效载荷数据提供良好的保护,以最小化用于FEC开销的额外带宽。

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