首页> 外文会议>2014 7th GMM-Workshop - Proceedings of Energy self-sufficient Sensors >Design, Implementation, and Verification of an Energy Autarkic, RF-based Water Meter with Energy Aware Routing
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Design, Implementation, and Verification of an Energy Autarkic, RF-based Water Meter with Energy Aware Routing

机译:具有能量感知路由的基于射频的自给自足的水表的设计,实现和验证

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Efficient, secure and reliable communication is a major precondition for powerful applications in smart metering and smart grid. This especially holds true for the so called primary communication in the Local Metrological Network (LMN) between meter and data collector, as the LMN comes with the most stringent requirements with regard to cost, range, as well as bandwidth and energy efficiency. Until today, LMN field tests are operated all over the world. In these installations, however, energy autarkic systems play a marginal role. This contribution describes the results of the framework 7 (FP 7) WiMBex project (??Remote wireless water meter reading solution based on the EN 13757 standard, providing high autonomy, interoperability and range??). In this project an energy autarkic water meter was developed and tested, which follows the specification of the Wireless M-Bus protocol (EN 13757). The complete system development covers the PCB with the RF transceiver and the microcontroller, the energy converter and storage, and the software with the protocol. This contribution especially concentrates on the design, the development and the verification of the routing protocol. The routing protocol is based on the Q mode of EN13757-5 (Wireless M-Bus) and was extended by an additional energy state related parameter. This extension is orthogonal to the existing protocol and considers both the charge level and the charge characteristics (rate of occurrences, intensity). The software was implemented in NesC under the operating system TinyOS. The system was verified in an automated test bed and in field tests in UK and Ireland.
机译:高效,安全和可靠的通信是智能计量和智能电网中强大应用程序的主要前提。对于仪表和数据收集器之间的本地计量网络(LMN)中所谓的主要通信,这尤其适用,因为LMN在成本,范围以及带宽和能源效率方面具有最严格的要求。直到今天,LMN现场测试已在全球范围内进行。然而,在这些设施中,能源自给自足的系统只发挥了很小的作用。此文稿描述了框架7(FP 7)WiMBex项目的结果(“基于EN 13757标准的远程无线水表读取解决方案,具有高度的自治性,互操作性和范围”)。在该项目中,按照无线M-Bus协议(EN 13757)的规范开发并测试了能源自给自足水表。完整的系统开发涵盖具有RF收发器和微控制器的PCB,能量转换器和存储器以及具有协议的软件。这种贡献尤其集中在路由协议的设计,开发和验证上。路由协议基于EN13757-5(无线M-Bus)的Q模式,并通过附加的与能量状态相关的参数进行了扩展。此扩展与现有协议正交,并同时考虑了电荷级别和电荷特性(发生率,强度)。该软件是在NesC操作系统TinyOS下实现的。该系统已在英国和爱尔兰的自动测试台以及现场测试中得到验证。

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