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Modelling of hybrid energy harvester with DC-DC boost converter using arbitary input sources for ultra-low-power micro-devices

机译:具有直流电升压转换器的混合能源收割机的建模,使用用于超低功耗微器件的任意输入源

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This work involves the modeling of three arbitrary input sources representing Hybrid Energy Harvesters (HEH) using a DC-DC Boost converter. These sources are combined in parallel and targeted at scavenging passive human power, therefore the three suitable ambient sources are motion, thermal and indoor light. Multiple sources mitigate limitations caused by single source harvesters but suffer impedance mismatches which greatly limit the total combined power that could have been harvested. A Boost Converter with suitable parameters has been designed and integrated to the HEH and PSPICE software has been used for both the modeling of arbitrary sources as well as the integration with the Boost Converter. An input source as low as 18 mV to 907 mV was able to be boosted into a 310 mV-27.9 V output when suitable parametric values were selected for the Ultra Low Power (ULP) HEH. A duty ratio of 0.5, with 10 kΩ load, 22 μH inductor as well as a switching frequency of 25 kHz was selected to be slightly above the audio range as well as being high enough to reduce passive component sizes. While V/ V of the boost converter is linear, P/P is a function of third order polynomial. Therefore, at the HEH's lowest combined configuration of 1 K temperature difference, 0.25 g of vibration and 100 lux of indoor lighting, a combined 14 μW can be harvested. At its maximum of 10 K heat difference, 1 g vibration and 1000 lux of indoor lighting a combined 187 μW can be harvested. At its minimum, this enables possibility of battery-less applications in powering a quartz watch at 5 μW while at its maximum capacity powering a pace maker of ~50 μW as well as micro devices of ~100 μW solely from passive human activity. Once a 33 mF input capacitor is placed between the sources and converter, an output power of between 9.61 μW–78 mW can be obtained.
机译:这项工作涉及使用DC-DC升压转换器表示混合能收割机(HEH)的三个任意输入源的建模。这些来源并联组合并针对清除被动人力的靶向,因此三种合适的环境源是运动,热和室内光。多个来源减轻由单源收割机引起的限制,但遭受阻抗不匹配,这极大地限制了可以收获的总组合电力。设计并集成了具有合适参数的升压转换器,并将PSPICE软件用于任意源的建模以及与升压转换器的集成。当为超低功率(ULP)Heh选择合适的参数值时,能够将低至18mV至907 mV的输入源升高到310mV-27.9 V输出中。选择0.5,具有10kΩ负载,22μH电感以及25kHz的开关频率的占空比,以略高于音频范围,并且足够高以减少被动元件尺寸。虽然升压转换器的V / V是线性的,但P / P是三阶多项式的函数。因此,在HEH的最低组合配置1 k温差,0.25克振动和100勒克斯室内照明,可以收获14μW的组合。在最大10 k热差,1g振动和1000勒克斯的室内照明器可以收获187μw。在最低限度下,这使得能够在5μW供电的电池供电时的可能性,而在其最大容量下电源为〜50μW的步伐和仅来自被动人类活动的微量器件的微量设备。一旦将33 MF输入电容放置在源和转换器之间,可以获得9.61μW-78MW之间的输出功率。

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