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A multiple description scalable coding scheme for adaptive video streaming over next generation cellular networks

机译:用于下一代蜂窝网络上的自适应视频流的多个描述可伸缩编码方案

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Nowadays, billions of users are connected to the mobile infrastructure offering a plethora of emerging services, and video streams are among the main contributors to this unprecedented traffic explosion. The paradigm of dynamic spectrum access (DSA) was coined and has become a widely accepted technology to boost the capacity of next generation networks. In this work, we propose an enhanced video coding implementation jointly with a DSA protocol wherein the sender actively picks up the most appropriate access strategy contingent on the instantaneous spectrum observations. The legacy frequencies pool has been extended to include the spectral ranges left unused in the television (TV) bands. A specific coding framework using a concatenation of multiple description coding and layered coding is investigated. The video is decomposed into two sub-streams through even and odd frames separation, then the resulting sub-streams are encoded into a scalable structure producing two independent and cumulative descriptions. The sender chooses to make use of the extended spectrum pool exclusively when the default frequencies are no more advantageous in terms of network capacity. Through extensive simulations, we compare the performance of the cellular network with and without the proposed DSA strategy. It has been proven that the proposed video transmission scheme using hybrid spectrum access provides a significant enhancement in network capacity up to 6.3 Mbps and the capacity gain outweighs the disadvantage of interference incidents due to licensed-cognitive, co-channel and adjacent channel coexistence, besides retrieving an improved perceived video quality at the customer side illustrated by an increment of up to 6.8 dB (0.176, respectively) in terms of the achieved PSNR-HVS-M (MS-SSIM, respectively). (C) 2018 Elsevier Inc. All rights reserved.
机译:如今,数十亿用户已连接到提供夸张的新兴服务的移动基础设施,视频流是这一前所未有的交通爆炸的主要贡献者之一。动态频谱接入(DSA)的范式被创造出来,已成为促进下一代网络的容量的广泛接受的技术。在这项工作中,我们与DSA协议共同提出了增强的视频编码实现,其中发件人主动地拾取瞬时频谱观测的最合适的访问策略。传统频率池已经扩展到包括在电视(电视)频带中未使用的光谱范围。研究了使用多个描述编码和分层编码的级联的特定编码框架。该视频通过偶数和奇数帧分离分解成两个子流,然后将得到的子流被编码成可伸缩结构,产生两个独立和累积的描述。发件人选择在网络容量方面没有更有利的情况下专门使用扩展频谱池。通过广泛的模拟,我们可以比较蜂窝网络的性能与提出的DSA策略。已经证明,使用混合频谱接入的建议的视频传输方案在网络容量上提供了高达6.3 Mbps的显着增强,并且由于许可 - 认知,共同信道和相邻信道共存,容量增益超过了干扰事件的缺点在实现的PSNR-HVS-M(分别分别为MS-SSIM)的增量,通过递增高达6.8dB(分别为0.176)的增量,在客户方面检索改进的感知视频质量。 (c)2018年Elsevier Inc.保留所有权利。

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