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Design and energy optimization of a multifunctional IoT solution for connected bikes

机译:连接自行车多功能物联网解决方案的设计和能量优化

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IoT systems face a severe energy autonomy challenge in keeping electronics alive without massive and heavy batteries, pressing for the development of efficient ultra low power architectures and energy harvesting solutions. In this paper we present a new IoT system designed for long-term tracking applications of personal vehicles and moving assets, such as bicycles and carts. The system integrates Cellular, GNSS and BLE communication technologies that enable the implementation of a wide set of geo-aware tracking and fitness monitoring applications. Power consumption minimization is one of the main goals and design challenges for the presented system. This paper focuses on methods and techniques for power consumption optimization at the hardware and software level. We present the design of a miniature kinetic energy harvesting solution and of system architectures for leakage currents minimization and ultra-low power consumption. Results obtained in both simulation and in-field experiments demonstrate high efficiency and performance of the proposed solution, resulting in energy neutral performance of continuous tracking task.
机译:物联网系统面临着在保持电子活着没有大规模和重的电池,按下高效超低功耗架构和能量收集解决方案的开发严重的能源自主性的挑战。在本文中,我们提供了一种新的IOT系统,专为个人车辆和移动资产的长期跟踪应用而设计,例如自行车和推车。该系统集成了蜂窝,GNSS和BLE通信技术,使能够实现广泛的地理感知跟踪和健身监控应用程序。功耗最小化是所呈现的系统的主要目标之一和设计挑战之一。本文侧重于硬件和软件级别的功耗优化方法和技术。我们介绍了微型动能收集解决方案和系统架构的设计,用于漏电流最小化和超低功耗。模拟和现场实验中获得的结果表明了提出的解决方案的高效率和性能,导致连续跟踪任务的能量中性性能。

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