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Dynamic energy management needs in low-energy buildings imposed by stochastic solar resources

机译:随机太阳能资源施加的低能量建筑物的动态能源管理需求

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This paper introduces various electrical and thermal energy generation, consumption, and storage components in solar powered low-energy buildings. Dynamic management of such energy components is essential given the stochastic solar resources. Emphasis is put on power electronic HVAC (heating, ventilation, and air-conditioning) drives, which can act as an effective electric swing bus to mitigate solar power variability. In doing so, grid power flows become substantially more constant, reducing the need for fast grid resources or dedicated energy storage such as batteries. The concept is equivalent to using building thermal energy as virtual dynamic storage in support of power grid operation. The paper defines a bandwidth over which such HVAC drives can operate. A practical band-pass filter is realized that provides 1) lower frequency bounds such that the building maintains consistent room temperature via the HVAC system as demonstrated by a thermal modeling study, and 2) upper frequency bounds that ensure commanded HVAC fan speeds do not update arbitrarily fast. The latter primarily avoids acoustic discomfort to users. The combination is illustrated by experimental results based on various update rates of a variable frequency fan drive over a sample of actual stochastic solar data. Building electrical and thermal energy systems modeling by MATLAB is addressed throughout the paper, including solar and HVAC systems as well as batteries and water tanks.
机译:本文介绍了太阳能低能量建筑中各种电气和热能发电,消耗和储存组件。考虑到随机太阳能资源,这种能量部件的动态管理是必不可少的。重点是电力电子HVAC(加热,通风和空调)驱动器,可作为减轻太阳能变化的有效电动挥杆母线。在此过程中,网格电流变得大幅度,减少对快速网格资源或专用储能等电池的需求。该概念等同于使用构建热能作为虚拟动态存储,以支持电网操作。本文定义了这种HVAC驱动器可以运行的带宽。实现了一种实用的带通滤波器,提供1)较低的频率界限,使得建筑物通过热建模研究所示的HVAC系统保持一致的室温,并且2)确保指令HVAC风扇速度的上频界限不会更新任意快速。后者主要避免对用户的声学不适。通过基于实际随机太阳能数据样本的可变频率风扇驱动的各种更新速率,通过实验结果来说明该组合。在整个纸上解决了Matlab的建筑电气和热能系统,包括太阳能和HVAC系统以及电池和水箱。

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