On the Unequal Error Protection in Compressive Video Sensing For Low Power and Lossy IoT Networks

Reyhaneh Ababzadeh, M. Khansari
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Abstract

Encoding and transmitting multimedia data over low-cost wireless sensors require a trade-off between energy and quality. Compressive Sensing (CS) has been proposed to transfer encoder complexity to the decoder and save energy at the sender, so it has been beneficial for recently developed Internet of Things (IoT) technologies. On the other hand, in practical applications of IoT, such as Low Power and Lossy Networks (LLNs), data is prone to error, which affects the quality at the receiver side. In order to solve this issue, error control mechanisms have been employed, while they are energy-consuming. Therefore, finding an efficient method for error protection in CS encoded videos is crucial in IoT lossy networks. This paper investigates the impact of Unequal Error Protection (UEP) on different frame types for a CS video setting in IoT lossy networks. Experimental results show that making a less complex and energy-efficient encoder can be done by not treating all frames with the same error control mechanism. Instead, having no or less complicated error control methods for non-key (P and B) frames but protecting I-frames is a better solution. Compared to equal error protection for all frame types, our method results in around 20% better SSIM (Structural Similarity Index) for CS video delivery over IoT LLNs.
低功耗有损物联网网络压缩视频感知中的不等错误保护
通过低成本无线传感器编码和传输多媒体数据需要在能量和质量之间进行权衡。压缩感知(CS)已被提出将编码器的复杂性转移到解码器并节省发送端的能量,因此它对最近发展的物联网(IoT)技术是有益的。另一方面,在物联网的实际应用中,如低功耗和有损网络(lln),数据容易出错,从而影响接收端的质量。为了解决这个问题,已经采用了错误控制机制,尽管它们很消耗能量。因此,在物联网有损网络中,寻找一种有效的CS编码视频错误保护方法至关重要。本文研究了非等错误保护(UEP)对物联网有损网络中CS视频设置的不同帧类型的影响。实验结果表明,不采用相同的误差控制机制对所有帧进行处理,可以降低编码器的复杂度和效率。相反,对非关键帧(P帧和B帧)不使用或不太复杂的错误控制方法,但保护i帧是更好的解决方案。与所有帧类型的相同错误保护相比,我们的方法在物联网lln上的CS视频传输的SSIM(结构相似指数)提高了约20%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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