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David Kendall
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2020 – today
- 2023
- [j7]Neil Eliot, David Kendall, Michael J. Brockway, Paul Oman, Ahmed Bouridane:
A novel potential field model for perimeter and agent density control in multiagent swarms. Expert Syst. Appl. 227: 120183 (2023)
2010 – 2019
- 2019
- [c13]Neil Eliot, David Kendall, Alun Moon, Michael J. Brockway, Martyn Amos:
Void Reduction in Self-Healing Swarms. ALIFE 2019: 87-94 - 2018
- [j6]Neil Eliot, David Kendall, Michael J. Brockway:
A Flexible Laboratory Environment Supporting Honeypot Deployment for Teaching Real-World Cybersecurity Skills. IEEE Access 6: 34884-34895 (2018) - [j5]Neil Eliot, David Kendall, Michael J. Brockway:
A New Metric for the Analysis of Swarms Using Potential Fields. IEEE Access 6: 63258-63267 (2018) - 2015
- [c12]Stephen Doswell, David Kendall, Nauman Aslam, Graham Sexton:
A longitudinal approach to measuring the impact of mobility on low-latency anonymity networks. IWCMC 2015: 108-113 - 2013
- [c11]Stephen Doswell, Nauman Aslam, David Kendall, Graham Sexton:
Please slow down!: the impact on tor performance from mobility. SPSM@CCS 2013: 87-92 - [c10]Stephen Doswell, Nauman Aslam, David Kendall, Graham Sexton:
The novel use of Bridge Relays to provide persistent Tor connections for mobile devices. PIMRC 2013: 3371-3375 - 2011
- [c9]Kashif Saghar, David Kendall, Ahmed Bouridane:
Vulnerability of insens to denial of service attacks. ICASSP 2011: 1896-1899 - 2010
- [c8]Kashif Saghar, William Henderson, David Kendall, Ahmed Bouridane:
Formal modelling of a robust Wireless Sensor Network routing protocol. AHS 2010: 281-288 - [c7]Kashif Saghar, William Henderson, David Kendall, Ahmed Bouridane:
Applying formal modelling to detect DoS attacks in wireless medium. CSNDSP 2010: 896-900
2000 – 2009
- 2001
- [b1]David Kendall:
Formal modelling and analysis of broadcasting embedded control systems. Newcastle University, Newcastle upon Tyne, UK, 2001 - [j4]William Henderson, David Kendall, Adrian Robson:
Improving the Accuracy of Scheduling Analysis Applied to Distributed Systems Computing Minimal Response Times and Reducing Jitter. Real Time Syst. 20(1): 5-25 (2001) - [j3]Steven Bradley, William Henderson, David Kendall, Adrian Robson:
A formal design language for real-time systems with data. Sci. Comput. Program. 40(1): 3-29 (2001)
1990 – 1999
- 1998
- [c6]Steven Bradley, William Henderson, David Kendall, Adrian Robson:
Integrating AORTA with Model-Based Data Specification Languages. FASE 1998: 54-70 - [c5]David Kendall, Steven Bradley, William Henderson, Adrian Robson:
bCANDLE: Formal Modelling and Analysis of CAN Control Systems. IEEE Real Time Technology and Applications Symposium 1998: 171-177 - 1996
- [c4]Steven Bradley, William Henderson, David Kendall, Adrian Robson, Stephen Hawkes:
A Formal Design and Implementation Method for Real-Time Embedded Systems. EUROMICRO 1996: 77- - 1995
- [c3]Steven Bradley, William Henderson, David Kendall, Adrian Robson:
Validation, verification and implementation of timed protocols using AORTA. PSTV 1995: 205-220 - 1994
- [j2]Steven Bradley, William Henderson, David Kendall, Adrian Robson:
Application-oriented real time algebra. Softw. Eng. J. 9(5): 201-212 (1994) - [j1]Steven Bradley, William Henderson, David Kendall, Adrian Robson:
A formally based hard real-time kernel. Microprocess. Microsystems 18(9): 513-521 (1994) - [c2]Steven Bradley, William Henderson, David Kendall, Adrian Robson:
Designing and Implementing Correct Real-Time Systems. FTRTFT 1994: 228-246
1970 – 1979
- 1971
- [c1]David Kendall:
Some Data-Analytic Problems in Archaeology and History. IFIP Congress (2) 1971: 1371-1376
Coauthor Index
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