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One-Hop Out-of-Band Control Planes for Multi-Hop Wireless Sensor Networks

机译:多跳无线传感器网络的一跳带外控制平面

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Separation of Control and Data Planes (SCDP) is a desirable paradigm for low-power multi-hop wireless sensor networks requiring high network performance and manageability. Existing SCDP networks generally adopt an in-band control plane scheme in that the control-plane messages are delivered by their data-plane networks. The physical coupling of the two planes may lead to undesirable consequences. Recently, multi-radio platforms (e.g., TI CC1350 and OpenMote B) are increasingly available, which make the physical separation of the control and data planes possible. To advance the network architecture design, we propose to leverage on the long-range communication capability of the Low-Power Wide-Area Network (LPWAN) radios to form one-hop out-of-band control planes. LoRaWAN, an open, inexpensive, and ISM band based LPWAN radio, is chosen to prototype our out-of-band control plane called LoRaCP. Several characteristics of LoRaWAN such as downlink-uplink asymmetry and primitive ALOHA media access control need to be dealt with to achieve high reliability and efficiency. To address these challenges, a TDMA-based multi-channel transmission control is designed, which features an urgent channel and negative acknowledgment. On a testbed of 16 nodes, LoRaCP is applied to physically separate the control-plane network of the Collection Tree Protocol (CTP) from its Zigbee-based data-plane network. Extensive experiments show that LoRaCP increases CTP's packet delivery ratio from 65% to 80% in the presence of external interference, while consuming a per-node average radio power of 2.97mW only.
机译:对于要求高网络性能和可管理性的低功率多跳无线传感器网络而言,控制平面和数据平面的分离(SCDP)是理想的范例。现有的SCDP网络通常采用带内控制平面方案,因为控制平面消息是由其数据平面网络传递的。两个平面的物理耦合可能导致不良后果。最近,越来越多的多无线电平台(例如TI CC1350和OpenMote B)可用,这使得控制平面和数据平面的物理分离成为可能。为了推进网络体系结构设计,我们建议利用低功率广域网(LPWAN)无线电的远程通信功能来形成单跳带外控制平面。 LoRaWAN是一种开放,廉价且基于ISM频段的LPWAN无线电,已被选为我们称为LoRaCP的带外控制平面的原型。为了实现高可靠性和高效率,需要处理LoRaWAN的一些特性,例如下行链路-上行链路不对称和原始ALOHA媒体访问控制。为了应对这些挑战,设计了基于TDMA的多通道传输控制,该控制功能具有紧急通道和否定确认的功能。在16个节点的测试平台上,LoRaCP用于将收集树协议(CTP)的控制平面网络与其基于Zigbee的数据平面网络物理隔离。大量实验表明,在存在外部干扰的情况下,LoRaCP将CTP的数据包传输率从65%提高到80%,而每个节点的平均无线电功率仅消耗2.97mW。

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