Dear All,
We submitted Sparta and Safair relevant paper for IDEAL'19 which is well
known ML conference.
Title:
The feasibility of Deep learning use for adversarial model extraction in
The cybersecurity domain.
By: Pawlicki, Choras and Kozik.
If accepted we will acknowledge SPARTA.
Greetings from holidays in Italy.
Regards,
Prof. Michal Choras
Dear all,
We have submitted the paper ?A Secure Self-Authenticable Data Transfer
Protocol for Wireless Medical Sensor Networks?
Abstract: Development of IoT (The Internet of Things) introduces many new
challenges. As IoT devices are getting smaller and smaller the problems of
so called ?constrained devices? arise. The traditional Internet protocols
are not very well suited for constrained devices comprising localized
network nodes with tens devices primarily communicating with each other
(e. g. various sensors in Body Area Network communicating with each
other). These devices have very limited memory, processing and power
resources so traditional security protocols and architectures doesn?t fit
well also. To address these challenges the fog computing paradigm is used
in which all constrained devices or ?End Nodes? primarily communicate only
with less constrained ?Fog Node? device, which collects all data,
processes it and communicates with the outside world. A new lightweight
secure self-authenticable transfer protocol (SSATP) for communications
between ?Fog End? devices and ?Fog Nodes? is presented in this paper. The
primary target of the proposed protocol is to use it as a secure transport
for CoAP in place of UDP and DTLS which are traditional choices in this
scenario. SSATP uses modified header fields of standard UDP packets to
transfer additional protocol handling and data flow management information
as well as user data authentication information. The optional redundant
data may be used to provide increased resistance to data losses when
protocol is used in unreliable networks. The results of experiments
presented in this paper show that SSATP is better choice than UDP with
DTLS in the cases where CoAP block transfer mode is used and/or in lossy
networks.
This paper is still under evaluation.
If it gets accepted, we will acknowledge SPARTA.
Best,
Algimantas Venčkauskas
Kauno technologijos universitetas
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