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A high-efficiency wind-flow energy harvester using micro turbine

机译:使用微型涡轮机的高效风能采集器

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There are emerging applications for standalone embedded systems where devices are required to operate for very long time with the minimum battery maintenance after the deployment. Examples include wireless sensor networks, environmental monitoring, surveillance, civil infrastructure and industrial control. Energy harvesting has emerged as an innovative way to keep small stationary hardware platforms running unattended for years or even decades. This paper analyzes wind flow as feasible energy source to meet the energy needs of a wireless sensor network node. We provide a detailed model and characterization of the micro wind turbine and an effective power-saving architecture to control the harvesting circuit. The optimized design of the wind flow harvester outperforms the ones proposed in literature within an overall volume below 300 cm3. A highly efficient buck-boost converter is the core of the optimal power point tracking circuit and experimental results show that the wind generator works at its maximum efficiency over a wide range of operating conditions.
机译:对于独立的嵌入式系统,正在出现一些新兴的应用程序,这些应用程序要求设备在部署后需要长时间运行且电池维护最少。例子包括无线传感器网络,环境监测,监视,民用基础设施和工业控制。能量收集已经成为一种创新的方式,可以使小型固定式硬件平台无人值守数年甚至数十年。本文将风流作为可行的能源进行分析,以满足无线传感器网络节点的能源需求。我们提供了微型风力发电机的详细模型和特性以及有效的节能架构来控制收割电路。在总体积小于300 cm 3 的情况下,风流采集器的优化设计优于文献中提出的设计。高效降压-升压转换器是最佳功率点跟踪电路的核心,实验结果表明,风力发电机在各种工作条件下均以其最大效率工作。

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