A simulation testbed to jointly exploit multiple image compression techniques for wireless multimedia sensor networks

F. Awad, E. Taqieddin, M. Mowafi, O. Banimelhem, Amani AbuQdais
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引用次数: 3

Abstract

As the demand for large-scale wireless multimedia sensor networks increases, so does the need for well-designed protocols that optimize the utilization of available networks resources. This requires experimental testing for realistic performance evaluation and design tuning. However, experimental testing of large-scale wireless networks using hardware testbeds is usually very hard to perform due to the need for collecting and monitoring the performance metrics data for multiple sensor nodes all at the same time, especially the node's energy consumption data. On the other hand, pure simulation testing may not accurately replicate the real-life scenarios, especially those parameters that are related to the wireless signal behavior in special environments. Therefore, this work attempts to close this gap between experimental and simulation testing. This paper presents a scalable simulation testbed that attempts to mimic our previously designed small-scale hardware testbed for wireless multimedia sensor networks by tuning the simulation parameters to match the real-life measurements obtained via experimental testing. The proposed simulation testbed embeds the JPEG and JPEG2000 image compression algorithms and potentially allows for network-controlled image compression and transmission decisions. The simulation results show very close match to the small-scale experimental testing as well as to the hypothetical large-scale extensions that were based on the experimental results.
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无线多媒体传感器网络中多种图像压缩技术联合开发的仿真试验台
随着大规模无线多媒体传感器网络需求的增加,需要设计良好的协议来优化可用网络资源的利用。这需要对实际性能评估和设计调优进行实验测试。然而,由于需要同时收集和监控多个传感器节点的性能指标数据,特别是节点的能耗数据,使用硬件测试平台进行大规模无线网络的实验测试通常非常困难。另一方面,单纯的模拟测试可能无法准确地复制真实场景,特别是那些与特殊环境下无线信号行为相关的参数。因此,这项工作试图缩小实验和模拟测试之间的差距。本文提出了一个可扩展的仿真试验台,通过调整仿真参数以匹配通过实验测试获得的实际测量结果,试图模仿我们之前设计的用于无线多媒体传感器网络的小型硬件试验台。所提出的仿真试验台嵌入了JPEG和JPEG2000图像压缩算法,并有可能实现网络控制的图像压缩和传输决策。模拟结果与小规模实验测试结果以及基于实验结果的假设大规模扩展结果吻合非常好。
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