The GINSENG system for wireless monitoring and control

Author:

O'donovan Tony1,Brown James2,Büsching Felix3,Cardoso Alberto4,Cecílio José4,Ó Jose Do5,Furtado Pedro4,Gil Paulo4,Jugel Anja6,Pöttner Wolf-Bastian3,Roedig Utz2,Silva Jorge Sá4,Silva Ricardo4,Sreenan Cormac J.7,Vassiliou Vasos8,Voigt Thiemo9,Wolf Lars10,Zinonos Zinon8

Affiliation:

1. University College Cork

2. Lancaster University

3. Technische Universität Braunschweig

4. University of Coimbra

5. Petrogal, S.A.

6. SAP AG

7. University College Cork, Ireland

8. University of Cyprus

9. Swedish Institute of Computer Science

10. Technische Universitát Braunschweig

Abstract

Today's industrial facilities, such as oil refineries, chemical plants, and factories, rely on wired sensor systems to monitor and control the production processes. The deployment and maintenance of such cabled systems is expensive and inflexible. It is, therefore, desirable to replace or augment these systems using wireless technology, which requires us to overcome significant technical challenges. Process automation and control applications are mission-critical and require timely and reliable data delivery, which is difficult to provide in industrial environments with harsh radio environments. In this article, we present the GINSENG system which implements performance control to allow us to use wireless sensor networks for mission-critical applications in industrial environments. GINSENG is a complete system solution that comprises on-node system software, network protocols, and back-end systems with sophisticated data processing capability. GINSENG assumes that a deployment can be carefully planned. A TDMA-based MAC protocol, tailored to the deployment environment, is employed to provide reliable and timely data delivery. Performance debugging components are used to unintrusively monitor the system performance and identify problems as they occur. The article reports on a real-world deployment of GINSENG in an especially challenging environment of an operational oil refinery in Sines, Portugal. We provide experimental results from this deployment and share the experiences gained. These results demonstate the use of GINSENG for sensing and actuation and allow an assessment of its ability to operate within the required performance bounds. We also identify shortcomings that manifested during the evaluation phase, thus giving a useful perspective on the challenges that have to be overcome in these harsh application settings.

Funder

Seventh Framework Programme

Publisher

Association for Computing Machinery (ACM)

Subject

Computer Networks and Communications

Cited by 37 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Design and Deployment Experiences of a Versatile Industrial WSN and Testbed;2022 18th International Conference on Distributed Computing in Sensor Systems (DCOSS);2022-05

2. Relay Node Placement in Wireless Sensor Networks: From Theory to Practice;IEEE Transactions on Mobile Computing;2021-04-01

3. REACT: an Agile Control Plane for Industrial Wireless Sensor-Actuator Networks;2020 IEEE/ACM Fifth International Conference on Internet-of-Things Design and Implementation (IoTDI);2020-04

4. Software-Defined Wireless Communication for Industrial Control: A Realistic Approach;IEEE Industrial Electronics Magazine;2019-12

5. Relay Node Placement in Wireless Sensor Networks With Respect to Delay and Reliability Requirements;IEEE Systems Journal;2019-09

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