Title
RoboADS: Anomaly Detection Against Sensor and Actuator Misbehaviors in Mobile Robots
Abstract
Mobile robots such as unmanned vehicles integrate heterogeneous capabilities in sensing, computation, and control. They are representative cyber-physical systems where the cyberspace and the physical world are strongly coupled. However, the safety of mobile robots is significantly threatened by cyber/physical attacks and software/hardware failures. These threats can thwart normal robot operations and cause robot misbehaviors. In this paper, we propose a novel anomaly detection system, which leverages physical dynamics of mobile robots to detect misbehaviors in sensors and actuators. We explore issues raised in real-world implementations, e.g., distinctive robot dynamic models, sensor quantity and quality, decision parameters, etc., for practicality purposes. We implement the detection system on two types of mobile robots and evaluate the detection performance against various misbehavior scenarios, including signal interference, sensor spoofing, logic bomb and physical jamming. The experiments show detection effectiveness and small detection delays.
Year
DOI
Venue
2018
10.1109/DSN.2018.00065
2018 48th Annual IEEE/IFIP International Conference on Dependable Systems and Networks (DSN)
Keywords
Field
DocType
anomaly detection,mobile robot,cyber physical system,input and state estimation
Anomaly detection,Spoofing attack,Computer science,Robot kinematics,Real-time computing,Software,Logic bomb,Robot,Jamming,Mobile robot
Conference
ISSN
ISBN
Citations 
1530-0889
978-1-5386-5597-9
3
PageRank 
References 
Authors
0.44
13
6
Name
Order
Citations
PageRank
Pinyao Guo1244.66
Hunmin Kim261.86
Nurali Virani3164.26
Jun Xu46510.29
Minghui Zhu54412.11
P. Liu637841.58