一个水平扩展和容错的建筑操作系统

Almir Mehanovic, T. H. Rasmussen, M. Kjærgaard
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引用次数: 1

摘要

当前楼宇自动化系统的物理集中特性增加了复杂性,并且具有有限的可扩展性和容错性。一个可以扩展到包含未来物联网的楼宇自动化系统,需要一个从最低层到最高层分散的架构。我们提出了一个建筑操作系统Brume,它在逻辑上提供了与现代建筑操作系统相同的面向服务的架构,而在物理上它运行在与未来物联网相同的结构上;大量小型异构设备。这使得Brume能够通过冗余实现高度水平扩展和容错,同时还具有安全性和操作简单性。为了验证该平台的预期效益和对楼宇自动化的适用性,在实际的楼宇设置中开发了一个原型。针对原型运行了一组微基准测试,以评估设计的各个方面,并使用两个案例来展示平台支持基于神经网络预测的建筑设备实时控制和监督控制的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Brume - A Horizontally Scalable and Fault Tolerant Building Operating System
The physically centralized nature of current building automation systems increases complexity and has limited scalability and fault tolerance. A building automation system which can scale to encompass a future Internet of things, needs an architecture which is decentralized from the lowest to the highest layers. We present Brume, a building operating system which logically provides the same kind of service oriented architecture as a modern building operating system, while physically it runs on the same fabric as a future Internet of Things; large numbers of small and heterogeneous devices. This enables Brume to be highly horizontally scalable and fault tolerant through means of redundancy, while also being secure and simple to operate. To verify the expected benefits and the applicability of the platform for building automation, a prototype is developed for a real building setup. A set of micro benchmarks are run against the prototype to evaluate various aspects of the design, and two cases are used to show the platforms ability to support real-time control of building equipment and supervisory control based on neural network-based predictions.
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