Yu Hua, Yue Qiuqin, Zhou Jielin, Wang Wei
College of Optoelectronic Engineering, Chongqing University, Chongqing 400044, China.
Department of Electro-Mechanic Engineering, Chongqing College of Electronic Engineering, Chongqing 401331, China.
Sensors (Basel). 2014 May 19;14(5):8740-55. doi: 10.3390/s140508740.
To take advantage of applications where both light and vibration energy are available, a hybrid indoor ambient light and vibration energy harvesting scheme is proposed in this paper. This scheme uses only one power conditioning circuit to condition the combined output power harvested from both energy sources so as to reduce the power dissipation. In order to more accurately predict the instantaneous power harvested from the solar panel, an improved five-parameter model for small-scale solar panel applying in low light illumination is presented. The output voltage is increased by using the MEMS piezoelectric cantilever arrays architecture. It overcomes the disadvantage of traditional MEMS vibration energy harvester with low voltage output. The implementation of the maximum power point tracking (MPPT) for indoor ambient light is implemented using analog discrete components, which improves the whole harvester efficiency significantly compared to the digital signal processor. The output power of the vibration energy harvester is improved by using the impedance matching technique. An efficient mechanism of energy accumulation and bleed-off is also discussed. Experiment results obtained from an amorphous-silicon (a-Si) solar panel of 4.8 × 2.0 cm2 and a fabricated piezoelectric MEMS generator of 11 × 12.4 mm2 show that the hybrid energy harvester achieves a maximum efficiency around 76.7%.
为了利用光和振动能量都可用的应用场景,本文提出了一种混合室内环境光和振动能量收集方案。该方案仅使用一个功率调节电路来调节从两种能源收集的组合输出功率,以降低功耗。为了更准确地预测从太阳能电池板收集的瞬时功率,提出了一种适用于低光照条件下的小型太阳能电池板的改进五参数模型。通过使用MEMS压电悬臂阵列架构提高了输出电压。它克服了传统MEMS振动能量收集器输出电压低的缺点。使用模拟分立元件实现了室内环境光的最大功率点跟踪(MPPT),与数字信号处理器相比,显著提高了整个能量收集器的效率。通过使用阻抗匹配技术提高了振动能量收集器的输出功率。还讨论了一种有效的能量积累和泄放机制。从面积为4.8×2.0平方厘米的非晶硅(a-Si)太阳能电池板和制造的尺寸为11×12.4平方毫米的压电MEMS发电机获得的实验结果表明,混合能量收集器的最大效率约为76.7%。