Abbass, H. A. (2019). Social integration of artificial intelligence: Functions, automation allocation logic and human-autonomy trust. Cognitive Computation, 11(2), 159–171. |
|
6/21/21, 11:26 AM |
|
Aberdeen, D., Thi'ebaux, S., Zhang, L., & others. 2004, Decision-theoretic military operations planning.. Paper presented at ICAPS. |
|
6/30/20, 9:40 AM |
|
Ahlqvist, C. O., & Ahlgren, M. 2022. Analog computer prototyping for the future. |
|
5/18/23, 8:54 PM |
|
Bender, E. A. (1996). Mathematical methods in artificial intelligence. IEEE Computer Society Press. |
|
1/25/22, 10:26 AM |
|
Bentley, M. J. (2017). Enabling air force satellite ground system automation through software engineering AIR FORCE INSTITUTE OF TECHNOLOGY WRIGHT-PATTERSON AFB OH WRIGHT-PATTERSON~…. |
|
7/8/22, 9:46 AM |
|
Berners-Lee, T., Hendler, J., & Lassila, O. (2001). The semantic web. Scientific american, 284(5), 34–43. |
|
1/18/22, 10:09 AM |
|
Blasch, E., Schuck, T., & Gagne, O. B. (2021). Trusted entropy-based information maneuverability for ai information systems engineering. In Engineering Artificially Intelligent Systems (pp. 34–52). Springer. |
|
7/21/22, 10:16 AM |
|
Brynjolfsson, E., & Mitchell, T. (2017). What can machine learning do? workforce implications. Science, 358(6370), 1530–1534. |
|
11/16/22, 3:54 PM |
|
Buneman, P., & Tan, W.-C. (2019). Data provenance: What next. ACM SIGMOD Record, 47(3), 5–16. |
|
12/6/22, 10:23 AM |
|
Chatzimparmpas, A., Martins, R. M., Jusufi, I., Kucher, K., Rossi, F., & Kerren, A. 2020, The state of the art in enhancing trust in machine learning models with the use of visualizations. Paper presented at Computer Graphics Forum. |
|
11/15/22, 1:29 PM |
|
Davis, S. I. (2022). Artificial intelligence at the operational level of war. Defense & Security Analysis, 1–17. |
|
3/22/22, 2:28 PM |
|
Dear, K. (2019). Artificial intelligence and decision-making. The RUSI Journal, 164(5-6), 18–25. |
|
12/14/21, 8:51 AM |
|
Derrac, J., & Schockaert, S. (2015). Inducing semantic relations from conceptual spaces: A data-driven approach to plausible reasoning. Artificial Intelligence, 228, 66–94. |
|
4/6/23, 4:00 PM |
|
Dietvorst, B. J., Simmons, J. P., & Massey, C. (2015). Algorithm aversion: People erroneously avoid algorithms after seeing them err. Journal of Experimental Psychology: General, 144(1), 114. |
|
11/18/22, 12:39 PM |
|
Donath, J. (2020). Ethical issues in our relationship with artificial entities. Oxford University Press Oxford, UK. |
|
8/21/22, 10:14 AM |
|
Gadepally, V. N., Hancock, B. J., Greenfield, K. B., Campbell, J. P., Campbell, W. M., & Reuther, A. I. (2016). Recommender systems for the department of defense and intelligence community. Lincoln Laboratory Journal, 22(1), 74–89. |
|
12/11/22, 1:33 PM |
|
Gesing, B., Peterson, S. J., & Michelsen, D. (2018). Artificial intelligence in logistics. A collaborative report by DHL and IBM on implications and use cases for the logistics industry. Troisdorf: DHL Customer Solutions & Innovation. |
|
10/4/21, 10:58 AM |
|
Grieves, M., & Vickers, J. (2017). Digital twin: Mitigating unpredictable, undesirable emergent behavior in complex systems. Transdisciplinary perspectives on complex systems: New findings and approaches, 85–113. |
|
2/8/23, 10:35 AM |
|
Haigh, K., & Andrusenko, J. (2021). Cognitive electronic warfare: An artificial intelligence approach. Artech House. |
|
1/3/22, 12:41 PM |
|
Hogg, D. R. (1993). Correlation of forces: The quest for a standardized model ARMY COMMAND AND GENERAL STAFF COLL FORT LEAVENWORTH KS SCHOOL OF ADVANCED~…. |
|
3/24/22, 6:42 PM |
|