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A Distributed Tracking Algorithm for Reconstruction of Graph Signals

机译:图信号重构的分布式跟踪算法

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摘要

The rapid development of signal processing on graphs provides a new perspective for processing large-scale data associated with irregular domains. In many practical applications, it is necessary to handle massive data sets through complex networks, in which most nodes have limited computing power. Designing efficient distributed algorithms is critical for this task. This paper focuses on the distributed reconstruction of a time-varying bandlimited graph signal based on observations sampled at a subset of selected nodes. A distributed least square reconstruction (DLSR) algorithm is proposed to recover the unknown signal iteratively, by allowing neighboring nodes to communicate with one another and make fast updates. DLSR uses a decay scheme to annihilate the out-of-band energy occurring in the reconstruction process, which is inevitably caused by the transmission delay in distributed systems. Proof of convergence and error bounds for DLSR are provided in this paper, suggesting that the algorithm is able to track time-varying graph signals and perfectly reconstruct time-invariant signals. The DLSR algorithm is numerically experimented with synthetic data and real-world sensor network data, which verifies its ability in tracking slowly time-varying graph signals.
机译:图上信号处理的快速发展为处理与不规则域相关的大规模数据提供了新的视角。在许多实际应用中,有必要通过复杂的网络处理海量数据集,其中大多数节点的计算能力有限。设计高效的分布式算法对于此任务至关重要。本文着重于基于在选定节点的子集处采样到的观测值的时变带宽限制图信号的分布式重建。提出了一种分布式最小二乘重建(DLSR)算法,通过允许相邻节点相互通信并进行快速更新来迭代恢​​复未知信号。 DLSR使用衰减方案来消除重建过程中出现的带外能量,这不可避免地是由分布式系统中的传输延迟引起的。本文提供了针对DLSR的收敛性和误差范围的证明,表明该算法能够跟踪时变图信号并完美重构时不变信号。 DLSR算法通过合成数据和真实世界的传感器网络数据进行了数值实验,验证了其跟踪缓慢随时间变化的图形信号的能力。

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