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ONLINE ROBUST CONTROL OF CHILLED WATER SYSTEMS OF BUILDINGS FOR ENERGY PERFORMANCE ENHANCEMENT

机译:建筑物冷水系统的在线鲁棒控制,以提高能效

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This paper presents two enhanced robust control strategies for building chilled water systems in order to enhance their overall energy performances.A fault-tolerant control strategy for secondary chilled water pumps is proposed to avoid the low temperature difference syndrome and deficit flow problem.This strategy employs the flow-limiting technique that can ensure the water flow of secondary loop not exceed that of the primary loop while still maintaining highest possible delivery capacity of cooling to terminals.This paper also presents an adaptive optimal control strategy for complex chilled water systems involving intermediate heat exchangers.This optimal control strategy determines the optimal settings of the heat exchanger outlet water temperature (hot side) and the required operating number of heat exchangers and pumps in order to minimize the total energy consumption of pumps under varying working conditions.Results show that both of the two strategies have enhanced control robustness and reliability,particularly in avoiding deficit flow problem.Significant energy of chilled water pumps is saved when compared with conventional methods.
机译:本文提出了两种增强鲁棒控制的建筑冷水系统控制策略,以提高其整体能源性能。为避免低温差综合症和流量不足问题,提出了一种用于二级冷水泵的容错控制策略。限流技术可确保次级回路的水流量不超过初级回路的水流量,同时仍保持最大的冷却能力到终端。本文还针对具有中间热量的复杂冷冻水系统提出了一种自适应的最优控制策略。该最优控制策略确定了热交换器出口水温(热侧)的最佳设置以及热交换器和泵的所需运行次数,以最大程度地减少在不同工况下泵的总能耗。两种策略中的增强了控制抢夺坚固性和可靠性,特别是避免出现流量不足的问题。与传统方法相比,可节省大量的冷水泵能量。

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