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IMPLEMENTATION OF A HYBRID CONTROLLER FOR CRITICAL BUILDING HVAC SYSTEMS

机译:用于关键建筑HVAC系统混合控制器的实施

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Many industrial facilities utilize pressure control gradients to prevent migration of hazardous species from containment areas to occupied zones, often using Proportional-Integral-Derivative (PID) control systems. When operators rebalance the plant, variation from the desired gradients can occur and the operating conditions can change enough that the PID parameters are no longer adequate to maintain a stable system. As the goal of the ventilation control system is to optimize the pressure gradients and associated flows for the plant, Linear Quadratic Tracking (LQT) is a method that provides a time-based approach to guiding plant interactions. However, LQT methods are susceptible to modeling and measurement errors, and therefore the additional use of soft computing methods is proposed for implementation to account for these errors and nonlinearities. The performance of the resulting hybrid controller is demonstrated through simulation and experimental testing as compared to a representative PID controller.
机译:许多工业设施利用压力控制梯度来防止危险物种从容纳区域迁移到占用区域,通常使用比例 - 积分衍生物(PID)控制系统。当操作员重新平衡工厂时,可能发生所需梯度的变化,并且操作条件可以足够变化,使PID参数不再足以保持稳定的系统。随着通风控制系统的目标是优化工厂的压力梯度和相关流量,线性二次跟踪(LQT)是一种提供基于时间的方法来引导植物相互作用的方法。然而,LQT方法易于建模和测量误差,因此提出了软计算方法的额外使用以实现这些错误和非线性。通过模拟和实验测试,与代表PID控制器相比,通过模拟和实验测试来证明所得到的混合控制器的性能。

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