基于能级模拟的微尺度太阳能收集系统尺寸确定方法

S. Bader, Torsten Schölzel, B. Oelmann
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引用次数: 8

摘要

太阳能采集在无线传感器网络领域越来越受到重视。在这些传感器系统部署在户外的情况下,通过太阳能为传感器节点供电成为传统电池供电方式的合适替代方案。由于与电池相反,太阳能可以被认为是一种取之不尽的能源,因此清除这种能源可以延长系统寿命,并使无线传感器网络更接近于具有永久寿命的自主系统。尽管设计和构建这些收集系统是可能的,但尺寸确定成为使实现组件适应应用和负载系统需求的关键任务。本文提出了一种基于仿真的太阳能收集系统尺寸确定方法。基于之前工作中使用的示例体系结构,描述了组件和系统模型的方法和实现。此外,我们将该模型与相同架构的部署进行了比较,并展示了使用仿真作为优化系统参数选择的支持的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Method for Dimensioning Micro-Scale Solar Energy Harvesting Systems Based on Energy Level Simulations
Solar energy harvesting gains more and more attention in the field of wireless sensor networks. In situations, where these sensor systems are deployed outdoors, powering sensor nodes by solar energy becomes a suitable alternative to the traditional way of battery power supplies. Since solar energy, opposed to batteries, can be considered as an inexhaustible energy source, scavenging this source allows longer system lifetimes and brings wireless sensor networks closer to be an autonomous system with perpetual lifetime. Despite the possibility of designing and constructing these harvesting system, dimensioning becomes a crucial task to fit implemented components to application and load system demands. In this paper we present a way of dimensioning solar harvesting systems based on simulation. Method and implementation of component and system models are described on the basis of an example architecture that has been used in prior work. Furthermore we evaluate the model in comparison to deployment of the same architecture and show the suitability of using the simulation as a support to optimize choices for system parameters.
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