Attack-Resilient Sensor Fusion

Loading...
Thumbnail Image

Embargo Date

Related Collections

Degree type

Discipline

Subject

CPS Embedded Control
CPS Auto
Computer Engineering
Computer Sciences

Funder

Grant number

License

Copyright date

Distributor

Related resources

Contributor

Abstract

This work considers the problem of attack-resilient sensor fusion in an autonomous system where multiple sensors measure the same physical variable. A malicious attacker may corrupt a subset of these sensors and send wrong measurements to the controller on their behalf, potentially compromising the safety of the system. We formalize the goals and constraints of such an attacker who also wants to avoid detection by the system. We argue that the attacker’s capabilities depend on the amount of information she has about the correct sensors’ measurements. In the presence of a shared bus where messages are broadcast to all components connected to the network, the attacker may consider all other measurements before sending her own in order to achieve maximal impact. Consequently, we investigate effects of communication schedules on sensor fusion performance. We provide worst- and average-case results in support of the Ascending schedule, where sensors send their measurements in a fixed succession based on their precision, starting from the most precise sensors. Finally, we provide a case study to illustrate the use of this approach.

Advisor

Date of presentation

2014-02-01

Conference name

Departmental Papers (CIS)

Conference dates

2023-05-17T08:20:12.000

Conference location

Date Range for Data Collection (Start Date)

Date Range for Data Collection (End Date)

Digital Object Identifier

Series name and number

Volume number

Issue number

Publisher

Publisher DOI

Journal Issues

Comments

Design Automation and Test in Europe Conference (DATE 2014), Dresden, Germany, March 24-28, 2014.

Recommended citation

Collection