...
首页> 外文期刊>Information Theory, IEEE Transactions on >Energy-Efficient Estimation of Clock Offset for Inactive Nodes in Wireless Sensor Networks
【24h】

Energy-Efficient Estimation of Clock Offset for Inactive Nodes in Wireless Sensor Networks

机译:无线传感器网络中非活动节点的时钟偏移的节能估计

获取原文
获取原文并翻译 | 示例
           

摘要

For a meaningful processing of the information sensed by a wireless sensor network (WSN), the clocks of the individual nodes need to be matched through some well-defined procedures. Extending the idea of having silent nodes in a WSN overhear the two-way timing message communication between two active (master and slave) nodes, this paper derives the maximum-likelihood estimator (MLE) for the clock offsets of the listening nodes located within the communication range of the active nodes by assuming an exponential link delay modeling, hence synchronizing with the reference node at a very low cost. A vital advantage for adopting such an approach is that the performance of sender-receiver protocols can be compared with receiver-receiver protocols on equal footings, because their main critical aspect was associated with the high-communication overhead induced by the point-to-point nature of communication links relative to broadcast communications. The MLE is also shown to be the minimum variance unbiased estimator (MVUE) of the clock offset when the mean of exponential link delays is known. Since it is attractive to know in advance the extent to which an estimator can perform through its lower bound, the Chapman-Robbins bound and the Barankin bound for the clock offset estimator are also derived. It is shown that for an exponential link delay model, the mean square error of the clock offset estimator is inversely proportional to the square of the number of observations, and hence its performance is on a similar scale, albeit slightly lesser, as compared to the usual sender-receiver clock offset estimator. In addition, a novel method referred to as the Gaussian mixture Kalman particle filter (GMKPF) is proposed herein to estimate the clock offsets of the listening nodes in a WSN. GMKPF represents a better and flexible alternative to the MLE for the clock offset estimation problem due to its improved performance and applicability in arbitrary and generalized non-Gaussian ra-nndom delay models.
机译:为了对无线传感器网络(WSN)感测到的信息进行有意义的处理,需要通过一些明确定义的过程来匹配各个节点的时钟。扩展了使WSN中的静默节点监听两个活动(主节点和从节点)之间的双向定时消息通信的想法,本文推导了位于WSN中的侦听节点的时钟偏移的最大似然估计器(MLE)。通过采用指数链路延迟建模来实现活动节点的通信范围,从而以非常低的成本与参考节点进行同步。采用这种方法的一个重要优势是,可以在相同的基础上将发送方-接收方协议的性能与接收方-接收方协议进行比较,因为它们的主要关键方面与点对点引起的高通信开销相关联通信链接相对于广播通信的性质。当已知指数链路延迟的平均值时,MLE还显示为时钟偏移的最小方差无偏估计器(MVUE)。由于预先知道估计器可以通过其下限执行的程度很有吸引力,因此还导出了时钟偏移估计器的Chapman-Robbins界和Barankin界。结果表明,对于指数链路延迟模型,时钟偏移估计器的均方误差与观测次数的平方成反比,因此,与之相比,其性能在相似的范围内,尽管略小。通常的发送器-接收器时钟偏移估计器。另外,本文提出了一种被称为高斯混合卡尔曼粒子滤波器(GMKPF)的新颖方法来估计WSN中的监听节点的时钟偏移。由于GMKPF在任意和广义的非高斯随机域延迟模型中具有更高的性能和适用性,因此它是针对时钟偏移估计问题的MLE的一种更好而灵活的替代方案。

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