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Energy Efficient Agent Function Block: A semantic agent approach to IEC 61499 function blocks in energy efficient building automation systems

机译:节能代理功能块:针对节能建筑自动化系统中IEC 61499功能块的语义代理方法

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Automation plays a vital role in improving energy efficiency in buildings. Building Automation Systems (BASs) are drastically growing in size and complexity. The traditional centralized automation systems cannot suitably address this growth due to insufficient flexibility and scalability. IEC 61499 Function Block (FB) is a promising software paradigm for industrial automation that addresses these complexities because of its object-oriented, event-driven and distributed paradigm. However, efficient energy management in a heterogeneous system comprising of many energy consuming components, functioning in highly dynamic and partially predictable environments, requires a higher level of intelligence that FB currently does not possess. To cope with this issue, a software entity called 2eA-FB has been introduced by combining FB, intelligent software agent and semantic web technologies. Being capable of field-level control, communication and reasoning over semantically enriched domain knowledge, 2eA-FB bridges the gap between management and automation layers of BAS and controls the energy consumption for individual energy consuming components, separately and intelligently. This in turn results in more efficient overall energy consumption for the whole system. (C) 2015 Elsevier B.V. All rights reserved.
机译:自动化在提高建筑物的能效中起着至关重要的作用。楼宇自动化系统(BAS)的规模和复杂性正在急剧增长。由于灵活性和可伸缩性不足,传统的集中式自动化系统无法适当地应对这种增长。 IEC 61499功能块(FB)是一种有前途的工业自动化软件范例,因为它具有面向对象,事件驱动和分布式的范例,因此可以解决这些复杂问题。但是,在由许多耗能组件组成的异构系统中,要在高度动态且部分可预测的环境中运行,要进行有效的能源管理,就需要更高的FB当前不具备的智能水平。为了解决这个问题,通过结合FB,智能软件代理和语义Web技术,引入了一个称为2eA-FB的软件实体。 2eA-FB能够对语义丰富的领域知识进行现场级别的控制,通信和推理,从而弥合了BAS的管理层和自动化层之间的鸿沟,并分别和智能地控制各个能耗组件的能耗。反过来,这将导致整个系统更有效的总体能耗。 (C)2015 Elsevier B.V.保留所有权利。

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