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首页> 外文期刊>ACM transactions on sensor networks >A Practical Theory of Micro-Solar Power Sensor Networks
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A Practical Theory of Micro-Solar Power Sensor Networks

机译:微太阳能功率传感器网络的实用理论

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Building a micro-solar power system is challenging because it must address long-term system behavior under highly variable solar energy and consider a large design space. We develop a practical theory of micro-solar power systems that is materialized in a simulation suite that models component and system behavior over a long time scale and in an external environment that depends on time, location, weather, and local variations. This simulation provides sufficient accuracy to guide specific design choices in a large design space. Unlike the many macro-solar calculators, this design tool models detailed behavior of milliwatt systems in the worst conditions, rather than typical behavior of kilowatt systems in the best conditions. Our simulation suite is validated with a concrete design of micro-solar power systems, the Hydro Watch node. With our simulation suite, micro-solar power systems can be designed in a systematic fashion. Putting the model and empirical vehicle together, the design choices in each component of a micro-solar power system are studied to reach a deployable candidate. The deployment is evaluated by analyzing the effects of different solar profiles across the network. The analysis from the deployment can be used to refine the next system-design iteration.
机译:建立微太阳能发电系统具有挑战性,因为它必须解决在高度可变的太阳能下的长期系统行为,并考虑较大的设计空间。我们开发了一种微太阳能发电系统的实用理论,该理论在一个仿真套件中得以实现,该仿真套件可在很长时间范围内以及取决于时间,位置,天气和局部变化的外部环境中对组件和系统的行为进行建模。该仿真提供了足够的精度,可以指导大型设计空间中的特定设计选择。与许多宏太阳能计算器不同,该设计工具可以模拟最恶劣条件下毫瓦系统的详细行为,而不是模拟最佳条件下千瓦系统的典型行为。我们的仿真套件已通过微太阳能发电系统的具体设计,即Hydro Watch节点进行了验证。借助我们的仿真套件,可以系统地设计微太阳能发电系统。将模型和经验工具放在一起,研究微太阳能系统每个组件的设计选择,以找到可部署的候选对象。通过分析整个网络中不同太阳剖面的影响来评估部署。部署中的分析可用于优化下一个系统设计迭代。

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