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Cognitive systems generally require a human to translate a problem definition into some specification that the cognitive system can use to attempt to solve the problem or perform the task.
GPS: A program that simulates human thought
Newell, A., & Simon, H. A. (1963) · 1963
Earlier work this paper cites.
Heuristic Programming: Ill-structured Problems
Newell, A. (1969) · 1969
Earlier work this paper cites.
STRIPS: A new approach in the application of theorem proving to problem solving
Fikes, R., & Nilsson, N. (1971) · 1971
Earlier work this paper cites.
Problem solving methods in artificial intelligence
Nilsson, N. (1971) · 1971
Earlier work this paper cites.
Human Problem Solving
Newell, A., & Simon, H. A. (1972) · 1972
Earlier work this paper cites.
Computer Science as Empirical enquiry: Symbols and Search
Newell, A., & Simon, H. A. (1976) · 1976
Earlier work this paper cites.
Reasoning, problem solving and decision processes: The problem space as a fundamental category
Newell, A. (1980) · 1980
Earlier work this paper cites.
A universal weak method
Laird, J. E., & Newell, A. (1983) · 1983
Earlier work this paper cites.
Chunking in Soar: The anatomy of a general learning mechanism
Laird, J. E., Rosenbloom, P. S., & Newell, A. (1986) · 1986
Earlier work this paper cites.
Learning representations by back-propagating errors
Rumelhart, D. E., Hinton, G. E., & Williams, R. J. (1986) · 1986
Earlier work this paper cites.
Selection of relevant features in machine learning
Langley, P. (1994) · 1994
Earlier work this paper cites.
The GOMS family of user interface analysis techniques: comparison and contrast
John, B. E., & Kieras, D. E. (1996) · 1996
Earlier work this paper cites.
Reinforcement Learning
Sutton, R. J., & Barto, A. C. (1999) · 1999
Earlier work this paper cites.
Cognitive Task Analysis
Schraagen, J. M., Chipman, S. F., & Shalin, V. L. (Eds.). (2000) · 2000
Earlier work this paper cites.
Knowledge Engineering and Management: The CommonKADS Methodology
Schreiber, G., Akkermans, H., Anjewierden, A., de Hoog, R., Shadbolt, N., Van de Velde, W., & Wielinga, B. (2000) · 2000
Earlier work this paper cites.
PDDL2.1: An Extension to PDDL for Expressing Temporal Planning Domains
Fox, M., & Long, D. (2003) · 2003
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Working Minds
Crandall, B., Klein, G., & Hoffman, R. R. (2006) · 2006
Cited alongside, same era.
The Soar Cognitive Architecture
Laird, J. E. (2012) · 2012
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Building Ontologies with Basic Formal Ontology
Arp, R., Smith, B., & Spear, A. D. (2015) · 2015
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How to Solve It: A New Aspect of Mathematical Method
Polya, G. (2015) · 2015
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Learning General and Efficient Representations of Novel Games Through Interactive Instruction
Kirk, J. R., & Laird, J. E. (2016) · 2016
Cited alongside, same era.
Tool Learning with Foundation Models
Qin, Y., et al. (2023) · 2023
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Reflexion: Language Agents with Verbal Reinforcement Learning
Shinn, N., Cassano, F., Berman, E., Gopinath, A., Narasimhan, K., & Yao, S. (2023) · 2023
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How to use LLMs for Text Analysis
Törnberg, P. (2023) · 2023
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Valmeekam, K., Sreedharan, S., Marquez, M., Olmo, A., & Kambhampati, S. (2023) · 2023
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Self-Consistency Improves Chain of Thought Reasoning in Language Models
Wang, X., Wei, J., Schuurmans, D., Le, Q., Chi, E., Narang, S., Chowdhery, A., & Zhou, D. (2023) · 2023
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NLtoPDDL
Miglani, S., & Yorke-Smith, N. (2020) · 2020
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Expanding Task Diversity in Explanation-Based Interactive Task Learning
Mininger, A. (2021) · 2021
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Learning General and Correct Procedural Knowledge in a Cognitive Architecture
Assanie, M. (2022) · 2022
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Chain-of-Thought Prompting Elicits Reasoning in Large Language Models
Wei, J., Wang, X., Schuurmans, D., Bosma, M., Ichter, B., Xia, F., Chi, E., Le, Q. V., & Zhou, D. (2022) · 2022
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Towards Next-Generation Intelligent Assistants Leveraging LLM Techniques
Dong, X. L., Moon, S., Xu, Y. E., Malik, K., & Yu, Z. (2023) · 2023
Cited alongside, same era.
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Xu, B., Peng, Z., Lei, B., Mukherjee, S., Liu, Y., & Xu, D. (2023) · 2023
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ReAct: Synergizing Reasoning and Acting in Language Models
Yao, S., Zhao, J., Yu, D., Du, N., Shafran, I., Narasimhan, K. R., & Cao, Y. (2023b) · 2023
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Generating Data for Symbolic Language with Large Language Models
Ye, J., Li, C., Kong, L., & Yu, T. (2023a) · 2023
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Graph of Thoughts: Solving Elaborate Problems with Large Language Models
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What is PDDL?
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