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A robust image-encryption approach against transmission errors in Communicating Things Networks

机译:一种可靠的图像加密方法,可防止通信事物网络中的传输错误

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In this paper, we target the problem of image transmission in Communicating Things Networks (CTNs) where the ultimate objective is to preserve both the visual quality of the received data at the destination node and the network resources, energy in particular. Nevertheless, visual quality is known to be proportional to the image volume (i.e., better visual quality leads to voluminous data and vice-versa) and hence inversely proportional to the energy cost. Furthermore, as CTNs are open infrastructures, they are prone to transmission errors which are almost managed through costly data re-transmissions. We propose a novel approach, composed of two components: (a) a low layer communication protocol coupled with (b) an image errors recovery filtering mechanisms; which avoids re-transmission due to communication errors. The key idea behind our proposal is to manage errors in transmitted data at the application layer, rather than at the network layer. In other words, corrupted packets are transferred from the lower layers to the upper layers, and a filtering algorithm is in charge to reconstruct the corrupted image. The results of the extensive experiments we conducted have demonstrated the powerful strength of the proposed solution to resist against various types of errors and to enhance the visual quality of images whilst ensuring both data confidentiality and network resources preservation. (C) 2019 Elsevier B.V. All rights reserved.
机译:在本文中,我们针对通信物联网(CTN)中的图像传输问题,其最终目标是既保留目标节点处接收到的数据的视觉质量,又保留网络资源(尤其是能量)。然而,已知视觉质量与图像体积成比例(即,更好的视觉质量导致大量数据,反之亦然),因此与能量成本成反比。此外,由于CTN是开放的基础结构,因此它们容易出现传输错误,几乎可以通过昂贵的数据重新传输来管理传输错误。我们提出了一种新颖的方法,该方法包括两个部分:(a)与(b)图像错误恢复过滤机制结合的低层通信协议;这样可以避免由于通信错误而导致的重新传输。我们建议背后的关键思想是在应用程序层而不是网络层管理传输数据中的错误。换句话说,损坏的分组从较低层传送到较高层,并且过滤算法负责重建损坏的图像。我们进行的大量实验结果表明,所提出的解决方案具有强大的强度,可以抵抗各种类型的错误并提高图像的视觉质量,同时确保数据机密性和网络资源的保存。 (C)2019 Elsevier B.V.保留所有权利。

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