Wu Zhenyu, Qiu Kai, Zhang Jianguo
School of Internet of Things, Nanjing University of Posts and Telecommunications, Nanjing 210003, China.
Ordnance N.C.O. Academy, The Army Engineering University of PLA, Wuhan 430075, China.
Sensors (Basel). 2020 Mar 25;20(7):1821. doi: 10.3390/s20071821.
The interoperations of endpoint devices are generally achieved by gateways in Internet of Things (IoT) systems. However, the gateways mainly focus on networking communication, which is lack of data logic control capabilities. The microcontrollers with embedded intelligence could work as an intermediate device to help the interconnections of the endpoint devices. Moreover, they could help control the endpoint devices. In this paper, a microcontroller architecture with intelligent and scalable characteristics is proposed. The intelligence means that the microcontroller could control the target endpoint devices by its logical circuits, and the scalability means that the microcontroller architecture could be easily extended to deal with more complex problems. Two real world industrial implementations of the proposed architecture are introduced. The implementations show that the microcontroller is important to provide the intelligent services to users in IoT systems. Furthermore, a simulation experiment based on the cloud model is designed to evaluate the proposed method. The experimental results demonstrate the effectiveness of the proposed architecture.
在物联网(IoT)系统中,端点设备的互操作通常由网关来实现。然而,网关主要侧重于网络通信,缺乏数据逻辑控制能力。具有嵌入式智能的微控制器可以作为中间设备,帮助端点设备进行互连。此外,它们还可以帮助控制端点设备。本文提出了一种具有智能和可扩展特性的微控制器架构。智能意味着微控制器可以通过其逻辑电路控制目标端点设备,可扩展性意味着微控制器架构可以轻松扩展以处理更复杂的问题。介绍了所提出架构的两个实际工业应用。这些应用表明,微控制器对于在物联网系统中为用户提供智能服务非常重要。此外,设计了一个基于云模型的仿真实验来评估所提出的方法。实验结果证明了所提出架构的有效性。