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首页> 外文期刊>IEEE Transactions on Power Electronics >Micropower Design of a Fully Autonomous Energy Harvesting Circuit for Arrays of Piezoelectric Transducers
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Micropower Design of a Fully Autonomous Energy Harvesting Circuit for Arrays of Piezoelectric Transducers

机译:压电换能器阵列全自动能量收集电路的微功率设计

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This paper presents a self-powered energy harvesting circuit based on synchronous charge extraction with a single shared inductor for power conversion from arrays of independent piezoelectric transducers. The number of handled elements can be easily increased at the expense of few additional components and without affecting performance. The energy harvesting circuit was characterized with three 0.5 × 12.7 × 31.8 mm$^{3}$ piezoelectric cantilevers subject to different types of vibrations. Throughout all operating conditions, the circuit was able to extract the maximum power independently from every transducer. Compared to passive energy harvesting interfaces, the output power is significantly higher, with worst-case increases ranging from +75% to +184%. The circuit starts up passively and is based on ultralow power active control, which consumes during operation at 3 V a fraction of the extra harvested power as low as 10 μW per source. As part of the best tradeoff between harvested and intrinsic power, an overall energy efficiency up to 74% was achieved.
机译:本文提出了一种基于同步电荷提取的自供电能量收集电路,该电路具有单个共享电感器,用于从独立压电换能器阵列进行功率转换。可以以很少的其他组件为代价轻松增加已处理元素的数量,而不会影响性能。能量收集电路的特征在于,三个0.5×12.7×31.8 mm <公式式=“ inline”> $ ^ {3} $ 压电悬臂受不同类型的影响振动。在所有工作条件下,该电路都能独立于每个换能器提取最大功率。与无源能量采集接口相比,输出功率明显更高,最坏情况下的输出范围为+ 75%至+ 184%。该电路是被动启动的,基于超低功率有源控制,在3V的工作电压下消耗的功率仅为每个电源低至10μW的额外收获功率的一小部分。作为收获功率和固有功率之间最佳权衡的一部分,总体能源效率达到了74%。

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