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A Delay-Aware and Reliable Data Aggregation for Cyber-Physical Sensing

机译:用于网络物理传感的延迟感知和可靠数据聚合

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摘要

Physical information sensed by various sensors in a cyber-physical system should be collected for further operation. In many applications, data aggregation should take reliability and delay into consideration. To address these problems, a novel Tiered Structure Routing-based Delay-Aware and Reliable Data Aggregation scheme named TSR-DARDA for spherical physical objects is proposed. By dividing the spherical network constructed by dispersed sensor nodes into circular tiers with specifically designed widths and cells, TSTR-DARDA tries to enable as many nodes as possible to transmit data simultaneously. In order to ensure transmission reliability, lost packets are retransmitted. Moreover, to minimize the latency while maintaining reliability for data collection, in-network aggregation and broadcast techniques are adopted to deal with the transmission between data collecting nodes in the outer layer and their parent data collecting nodes in the inner layer. Thus, the optimization problem is transformed to minimize the delay under reliability constraints by controlling the system parameters. To demonstrate the effectiveness of the proposed scheme, we have conducted extensive theoretical analysis and comparisons to evaluate the performance of TSR-DARDA. The analysis and simulations show that TSR-DARDA leads to lower delay with reliability satisfaction.
机译:应收集由电子物理系统中的各种传感器感测到的物理信息,以进行进一步操作。在许多应用中,数据聚合应考虑可靠性和延迟。为了解决这些问题,提出了一种新颖的基于分层结构路由的时延感知和可靠数据聚合方案,称为TSR-DARDA,用于球形物理对象。通过将由分散的传感器节点构成的球形网络划分为具有特殊设计的宽度和单元的圆形层,TSTR-DARDA尝试使尽可能多的节点同时传输数据。为了确保传输的可靠性,丢失的分组被重新传输。此外,为了在保持数据收集可靠性的同时最小化等待时间,采用网络内聚合和广播技术来处理外层的数据收集节点与其内层的父数据收集节点之间的传输。因此,通过控制系统参数将优化问题转化为最小化可靠性约束下的延迟。为了证明所提方案的有效性,我们进行了广泛的理论分析和比较,以评估TSR-DARDA的性能。分析和仿真表明,TSR-DARDA可以降低延迟,并满足可靠性要求。

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