Liu Ling, Tan Xiaobin, Yu Kai, Bu Zhiyong, Chen Shi, W. Haifeng
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We present a framework in which a relay node is chosen according to the node's energy consumption and its residual energy, and DB equipped with large capacity battery is chosen as the cluster header, which helps to forward DAs' data to BS. Our main idea is that each node decides which communication mode the packet should use based on its priority and Residual Life Time (RLT). According to packet's RLT, one node can decide whether it should send it right now through single-hop, or put it into the corresponding queue and then send it to the next hop (multi-hop), or drop the packet. In a node, different priority data packets are put into different priority queues. In each queue, packet is sorted according to its RLT. When the first packet needs to be sent out, the node combines the first few packets in the same queue into a large packet, and then sends it out. 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引用次数: 1
摘要
在传统电网中,数据聚合器(DA)和配电箱(DB)通过蜂窝接口将传感器采集到的数据发送到基站(BS),这种通信模式称为单跳通信模式(SCM)。有太多的节点有不同的数据包需要传送到BS。但是由于单片机资源有限,无法满足不同数据的时延要求。为了满足不同优先级数据的QoS要求,我们在该场景中引入多跳通信模式(Multi-hop Communication Mode, MCM),通过在每个节点(DA或DB)上增加另一个无线接口,如wifi或zigbee,来提高网络的性能。我们提出了一个框架,根据节点的能量消耗和剩余能量选择中继节点,并选择配备大容量电池的DB作为簇头,帮助将da的数据转发给BS。我们的主要思想是,每个节点根据其优先级和剩余生存时间(RLT)来决定数据包应该使用哪种通信模式。根据数据包的RLT,一个节点可以决定是现在通过单跳发送数据包,还是将其放入相应的队列中,然后发送到下一跳(多跳),或者丢弃数据包。在一个节点中,不同优先级的数据包被放入不同的优先级队列中。在每个队列中,数据包根据其RLT进行排序。当需要发送第一个数据包时,节点将同一队列中的前几个数据包组合成一个大数据包,然后将其发送出去。仿真结果表明,该方案能够满足智能电网的性能要求。
Multi-hop aided wireless data collection based on flow priority
In traditional power grid, Data Aggregator (DA) and Distribution Box (DB) send the data collected by sensors to Base Station (BS) through cellular interface, which is called Single-hop Communication Mode (SCM). There are too many nodes with different data packets which need to be delivered to BS. But BS can't satisfy the delay requirements of different data because of limited resources through SCM. In order to meet the QoS requirements of different priority data, we introduce Multi-hop Communication Mode (MCM) into this scenario to improve the network's performance by adding another wireless interface on each node (DA or DB), such as wifi or zigbee. We present a framework in which a relay node is chosen according to the node's energy consumption and its residual energy, and DB equipped with large capacity battery is chosen as the cluster header, which helps to forward DAs' data to BS. Our main idea is that each node decides which communication mode the packet should use based on its priority and Residual Life Time (RLT). According to packet's RLT, one node can decide whether it should send it right now through single-hop, or put it into the corresponding queue and then send it to the next hop (multi-hop), or drop the packet. In a node, different priority data packets are put into different priority queues. In each queue, packet is sorted according to its RLT. When the first packet needs to be sent out, the node combines the first few packets in the same queue into a large packet, and then sends it out. The simulation shows our scheme can satisfy the performance requirement of smart grid.