TY - GEN
T1 - Intelligent control in automation based on wireless traffic analysis
AU - Derr, Kurt
AU - Manic, Milos
PY - 2007
Y1 - 2007
N2 - Wireless technology is a central component of many factory automation infrastructures in both the commercial and government sectors, providing connectivity among various components in industrial realms (distributed sensors, machines, mobile process controllers). However wireless technologies provide more threats to computer security than wired environments. The advantageous features of Bluetooth technology resulted in Bluetooth units shipments climbing to five million per week at the end of 2005 [1, 2]. This is why the real-time interpretation and understanding of Bluetooth traffic behavior is critical in both maintaining the integrity of computer systems and increasing the efficient use of this technology in control type applications. Although neuro-fuzzy approaches have been applied to wireless 802.11 behavior analysis in the past, a significantly different Bluetooth protocol framework has not been extensively explored using this technology. This paper presents a new neuro-fuzzy traffic analysis algorithm of this still new territory of Bluetooth traffic. Further enhancements of this algorithm are presented along with the comparison against the traditional, numerical approach. Through test examples, interesting Bluetooth traffic behavior characteristics were captured, and the comparative elegance of this computationally inexpensive approach was demonstrated. This analysis can be used to provide directions for future development and use of this prevailing technology in various control type applications, as well as making the use of it more secure.
AB - Wireless technology is a central component of many factory automation infrastructures in both the commercial and government sectors, providing connectivity among various components in industrial realms (distributed sensors, machines, mobile process controllers). However wireless technologies provide more threats to computer security than wired environments. The advantageous features of Bluetooth technology resulted in Bluetooth units shipments climbing to five million per week at the end of 2005 [1, 2]. This is why the real-time interpretation and understanding of Bluetooth traffic behavior is critical in both maintaining the integrity of computer systems and increasing the efficient use of this technology in control type applications. Although neuro-fuzzy approaches have been applied to wireless 802.11 behavior analysis in the past, a significantly different Bluetooth protocol framework has not been extensively explored using this technology. This paper presents a new neuro-fuzzy traffic analysis algorithm of this still new territory of Bluetooth traffic. Further enhancements of this algorithm are presented along with the comparison against the traditional, numerical approach. Through test examples, interesting Bluetooth traffic behavior characteristics were captured, and the comparative elegance of this computationally inexpensive approach was demonstrated. This analysis can be used to provide directions for future development and use of this prevailing technology in various control type applications, as well as making the use of it more secure.
KW - Bluetooth traffic analysis
KW - Classification
KW - Computer security
KW - Data mining
KW - Fuzzy control
KW - Intrusion detection
KW - Neuro-fuzzy controller
UR - https://www.scopus.com/pages/publications/47849120112
U2 - 10.1109/EFTA.2007.4416776
DO - 10.1109/EFTA.2007.4416776
M3 - Conference contribution
AN - SCOPUS:47849120112
SN - 1424408261
SN - 9781424408269
T3 - IEEE International Conference on Emerging Technologies and Factory Automation, ETFA
SP - 249
EP - 256
BT - 12th IEEE International Conference on Emerging Technologies and Factory Automation, ETFA 2007 Proceedings
T2 - 12th IEEE International Conference on Emerging Technologies and Factory Automation, ETFA 2007
Y2 - 25 September 2007 through 28 September 2007
ER -