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首页> 外文期刊>Control Systems Technology, IEEE Transactions on >Stability of Hydronic Networks With Independent Zone Controllers
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Stability of Hydronic Networks With Independent Zone Controllers

机译:具有独立区域控制器的水力网络的稳定性

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摘要

Many heating, ventilation, and air conditioning systems are implemented using one heat source, the power of which is distributed to individual zones using a pipe network. Each zone can be independently controlled using its own zone controller. Due to the hydronic network interconnection, the zone controllers interact by pressure/flow changes. This brief addresses a question of when and under what conditions the overall system is a stable system. We use a simplified linearized model with linear heat exchangers (HXs) and linear hydraulic resistances. Moreover, all HXs are assumed to be the same. A closed-form formula for linearization of the interconnection is provided. Using these simplifications, we provide simple guidelines which the controller for each zone should satisfy. The main result is that from stability point of view, the interconnection does not bring any new design limitation. On the other hand, an improperly tuned controller can destabilize the interconnected system. An extensive simulation verification is provided.
机译:许多供暖,通风和空调系统都是使用一个热源实现的,其热能通过管网分配到各个区域。可以使用自己的区域控制器独立控制每个区域。由于水力网络的互连,区域控制器通过压力/流量变化进行交互。本简要内容讨论了何时以及在什么条件下整个系统是一个稳定的系统。我们使用具有线性热交换器(HXs)和线性液压阻力的简化线性化模型。此外,假定所有HX都相同。提供了用于互连线性化的封闭形式公式。使用这些简化,我们提供了每个区域的控制器都应满足的简单准则。主要结果是,从稳定性的角度来看,互连不会带来任何新的设计限制。另一方面,控制器调整不当会破坏互连系统的稳定性。提供了广泛的仿真验证。

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