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Ultra low-power photovoltaic MPPT technique for indoor and outdoor wireless sensor nodes

机译:适用于室内和室外无线传感器节点的超低功耗光伏MPPT技术

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Photovoltaic (PV) energy harvesting is commonly used to power wireless sensor nodes. To optimise harvesting efficiency, maximum power point tracking (MPPT) techniques are often used. Recently-reported techniques focus solely on outdoor applications, being too power-hungry for use under indoor lighting. Additionally, some techniques have required light sensors (or pilot cells) to control their operating point. This paper describes an ultra low-power MPPT technique which is based on a novel system design and sample-and-hold arrangement, which enables MPPT across the range of light intensities found indoors and outdoors and is capable of cold-starting. The proposed sample-and-hold based technique has been validated through a prototype system. Its performance compares favourably against state-of-the-art systems, and does not require an additional pilot cell or photodiode. This represents an important contribution, in particular for sensors which may be exposed to different types of lighting (such as body-worn or mobile sensors).
机译:光伏(PV)能量收集通常用于为无线传感器节点供电。为了优化收割效率,通常使用最大功率点跟踪(MPPT)技术。最近报道的技术仅专注于室外应用,由于在室内照明下使用太耗电。另外,某些技术需要光传感器(或先导单元)来控制其工作点。本文介绍了一种基于新型系统设计和采样保持装置的超低功耗MPPT技术,该技术可使MPPT在室内和室外发现的所有光强度范围内均具有冷启动能力。所提出的基于采样保持的技术已通过原型系统进行了验证。其性能可与最新系统相媲美,并且不需要额外的控制单元或光电二极管。这代表了重要的贡献,特别是对于可能暴露在不同类型的照明下的传感器(例如,穿戴式或移动式传感器)。

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