首页> 外文期刊>Journal of Sensor and Actuator Networks >Energy-Efficient Packet Relaying in Wireless Image Sensor Networks Exploiting the Sensing Relevancies of Source Nodes and DWT Coding
【24h】

Energy-Efficient Packet Relaying in Wireless Image Sensor Networks Exploiting the Sensing Relevancies of Source Nodes and DWT Coding

机译:无线图像传感器网络中的节能数据包中继,利用源节点和DWT编码的感知优势

获取原文
           

摘要

When camera-enabled sensors are deployed for visual monitoring, a new set of innovative applications is allowed, enriching the use of wireless sensor network technologies. In these networks, energy-efficiency is a highly desired optimization issue, mainly because transmission of images and video streams over resource-constrained sensor networks is more stringent than transmission of conventional scalar data. Due to the nature of visual monitoring, that follows a directional sensing model, camera-enabled sensors may have different relevancies for the application, according to the desired monitoring tasks and the current sensors’ poses and fields of view. Exploiting this concept, each data packet may be associated with a priority level related to the packet’s origins, which may be in turn mapped to an energy threshold level. In such way, we propose an energy-efficient relaying mechanism where data packets are only forwarded to the next hop if the associated energy threshold level is below the current energy level of the relaying node. Thus, packets from low-relevant source nodes will be silently dropped when the current energy level of intermediate nodes run below the pre-defined thresholds. Doing so, energy is saved potentially prolonging the network lifetime. Besides the sensing relevancies of source nodes, the relevance of DWT subbands for reconstruction of original images is also considered. This allows the creation of a second level of packet prioritization, assuring a minimal level of image quality even for the least relevant source nodes. We performed simulations for the proposed relaying mechanism, assessing the expected performance over a traditional relaying paradigm.
机译:当将带摄像头的传感器部署用于视觉监控时,将允许使用一组新的创新应用程序,从而丰富了无线传感器网络技术的使用。在这些网络中,能源效率是非常需要的优化问题,主要是因为在资源受限的传感器网络上传输图像和视频流比传统的标量数据传输更为严格。由于视觉监控的本质(遵循方向感测模型),因此根据需要的监控任务以及当前传感器的姿势和视野,启用摄像头的传感器可能具有不同的应用范围。利用此概念,每个数据包都可以与与数据包来源相关的优先级相关联,该优先级又可以映射到能量阈值级别。通过这种方式,我们提出了一种节能中继机制,其中,如果相关联的能量阈值水平低于中继节点的当前能量水平,则仅将数据包转发到下一跳。因此,当中间节点的当前能量水平低于预定阈值时,来自低相关源节点的数据包将被静默丢弃。这样做可以节省能源,有可能延长网络寿命。除了源节点的感测相关性,还考虑了DWT子带与原始图像重建的相关性。这允许创建第二级别的数据包优先级,即使对于最不相关的源节点,也可以确保最低级别的图像质量。我们对提出的中继机制进行了仿真,评估了传统中继范式的预期性能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号