用智能增强物联网系统

Abin M Abraham, N. Kulkarni, Nikhil Clement, Lakshmeesha Bhat, Nikita Misale, Thwaha Hussain, S. Mohalik, Badrinath Ramamurthy
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引用次数: 1

摘要

随着物联网设备的激增,开发基于物联网的系统的平台和编程环境变得越来越普遍。然而,由于物联网生态系统的规模、多样性和动态性的爆炸式增长,目前的发展模式很快就会被证明是不够的,这使得这些系统必须以自主的方式进行管理和运行。具体来说,基于物联网的系统必须能够智能地适应设备硬件和软件、环境和环境相关策略的变化,并继续满足需求。不幸的是,目前的物联网平台和编程环境没有任何对这种智能的原生支持。为了解决这一缺陷,我们建议使用额外的组件和api来支持基于MAPE-K(监控、分析、计划、执行、知识)架构的智能自治。该解决方案通过几个具体的案例研究进行了演示,这些案例研究使用了树莓派板上的物联网传感器和执行器、openHAB(一种流行的物联网自动化环境)、Metric-FF(一种知名的基于搜索的人工智能规划器)和乐山(一种提供物联网设备传感和执行接口的LwM2M平台)。
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Augmenting IoT-based Systems with Intelligence
As IoT devices proliferate, platforms and programming environments to develop IoT-based systems are becoming commonplace. However, the current models of development will soon prove to be inadequate due to the exploding scale, variety and dynamism in the IoT ecosystems, which is making it imperative that these systems manage and operate themselves in an autonomous fashion. Specifically, IoT-based systems must be able to adapt themselves intelligently to changes in the device hardware and software, the context and context-dependent policies and continue delivering to the requirements. Unfortunately, current IoT platforms and programming environments do not have any native support for such intelligence. In order to address this lacuna, we suggest additional components and APIs that can support intelligent autonomy based on the MAPE-K (Monitor, Analyze, Plan, Execute, Knowledge) architecture. The solution is demonstrated through a couple of concrete case studies implemented using IoT sensors and actuators on Raspberry Pi boards, openHAB - a popular IoT automation environment, Metric-FF - a well-known search-based AI planner and Leshan, an LwM2M platform for providing the sensing and actuation interfaces of the IoT devices.
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