Aghdasi Hadi S, Abbaspour Maghsoud, Moghadam Mohsen Ebrahimi, Samei Yasaman
Faculty of Electrical and Computer Engineering, Shahid Beheshti University, Tehran, Iran.
Sensors (Basel). 2008 Aug 4;8(8):4529-4559. doi: 10.3390/s8084529.
Technological progress in the fields of Micro Electro-Mechanical Systems (MEMS) and wireless communications and also the availability of CMOS cameras, microphones and small-scale array sensors, which may ubiquitously capture multimedia content from the field, have fostered the development of low-cost limited resources Wireless Video-based Sensor Networks (WVSN). With regards to the constraints of videobased sensor nodes and wireless sensor networks, a supporting video stream is not easy to implement with the present sensor network protocols. In this paper, a thorough architecture is presented for video transmission over WVSN called Energy-efficient and high-Quality Video transmission Architecture (EQV-Architecture). This architecture influences three layers of communication protocol stack and considers wireless video sensor nodes constraints like limited process and energy resources while video quality is preserved in the receiver side. Application, transport, and network layers are the layers in which the compression protocol, transport protocol, and routing protocol are proposed respectively, also a dropping scheme is presented in network layer. Simulation results over various environments with dissimilar conditions revealed the effectiveness of the architecture in improving the lifetime of the network as well as preserving the video quality.
微机电系统(MEMS)和无线通信领域的技术进步,以及CMOS摄像头、麦克风和小型阵列传感器的可用性,这些设备可以无处不在地从现场捕获多媒体内容,推动了低成本、资源有限的基于无线视频的传感器网络(WVSN)的发展。考虑到基于视频的传感器节点和无线传感器网络的限制,使用当前的传感器网络协议来实现支持视频流并非易事。本文提出了一种用于WVSN视频传输的全面架构,称为节能高质量视频传输架构(EQV-架构)。该架构影响通信协议栈的三层,并考虑无线视频传感器节点的限制,如处理和能源资源有限,同时在接收端保持视频质量。应用层、传输层和网络层分别是提出压缩协议、传输协议和路由协议的层,网络层还提出了一种丢弃方案。在各种不同条件环境下的仿真结果表明,该架构在提高网络寿命以及保持视频质量方面是有效的。