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Networking Support for Bidirectional Cross-Technology Communication

机译:网络支持双向交叉技术通信

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Recent research on physical layer cross technology communication (PHY-CTC) brings a timely answer for escalated wireless coexistence and open spectrum movement. PHY-CTC achieves direct communication among heterogeneous wireless technologies (e.g.,WiFi, Bluetooth, and ZigBee) in physical layer and thus brings communication support for coexistence service such as spectrum management and IoT device control. To put PHY-CTC into service, however, there still exists a gap due to its transmission failure and asymmetric link (i.e., one-way PHY-CTC) issues. In this paper, we propose NetCTC - the first networking support design for PHY-CTC to establish feedbacks (e.g., ACKs) and thus meet the upper layer networking requirements in heterogeneous unicast, multicast and broadcast. The core design of NetCTC is a real-time interaction mechanism which achieves reliable, transmission efficient and concurrent interactive communication among heterogeneous devices. We implement and evaluate NetCTC on commodity devices and the USRP-N210 platform. Our extensive evaluation demonstrates that NetCTC achieves reliable bidirectional cross technology communication under a full range of wireless configurations including stationary, mobile and duty-cycled settings.
机译:最近关于物理层交叉技术通信(PHY-CTC)的研究带来了升级的无线共存和开放式频谱运动的及时回答。 PHY-CTC在物理层中实现异构无线技术(例如,WiFi,蓝牙和ZigBee)的直接通信,从而为诸如频谱管理和物联网设备控制的共存服务带来通信支持。然而,将PHY-CTC投入到服务中,由于其传输故障和不对称链路(即单向PHY-CTC)问题,仍然存在间隙。在本文中,我们提出了NetctC - Phy-CTC的第一个网络支持设计,以建立反馈(例如,ACK),从而满足异构单播,多播和广播的上层网络要求。 NetCTC的核心设计是一种实时交互机制,实现异构设备之间的可靠性,传输的高效和并发交互式通信。我们在商品设备和USRP-N210平台上实施和评估NetCtc。我们的广泛评估表明NetCtC在包括固定式,移动和核心设置的全系列无线配置下实现了可靠的双向交叉技术通信。

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