DocumentCode
1729137
Title
Securing inductively-coupled communication
Author
Varshney, Lav R. ; Grover, Pulkit ; Sahai, Anant
Author_Institution
Res. Lab. of Electron., Massachusetts Inst. of Technol., Cambridge, MA, USA
fYear
2012
Firstpage
47
Lastpage
53
Abstract
Communication over inductively-coupled links is becoming prevalent in service delivery for medical, financial, and physical security applications and so there is a growing need to prevent eavesdropping. This paper presents circuit-theoretic and communication-theoretic models of inductively-coupled communication systems. Due to coupling, the presence of an eavesdropper detunes the transfer function between the legitimate users. It is shown this detuning can be detected to reveal the presence of the eavesdropper. Further, if capacity-approaching codes are employed, neither the eavesdropper nor the legitimate receiver are able to reconstruct the transmitted message with low error probability, effectively destroying the message. Building on this insight, a coding-based secure communication protocol for inductively-coupled communication, inspired by quantum key distribution, is developed. The notion of security is defined operationally in terms of probabilities rather than through traditional notions of equivocation.
Keywords
circuit theory; encoding; error statistics; quantum cryptography; telecommunication security; transfer functions; capacity-approaching codes; circuit-theoretic models; coding-based secure communication protocol; communication-theoretic models; error probability; inductively-coupled communication security; inductively-coupled links; legitimate receiver; message transmission; quantum key distribution; service delivery; transfer function; Communication systems; Decoding; Geometry; Receivers; Security; Transfer functions; Transmitters;
fLanguage
English
Publisher
ieee
Conference_Titel
Information Theory and Applications Workshop (ITA), 2012
Conference_Location
San Diego, CA
Print_ISBN
978-1-4673-1473-2
Type
conf
DOI
10.1109/ITA.2012.6181821
Filename
6181821
Link To Document