Search alternatives:
coding algorithm » cosine algorithm (Expand Search), modeling algorithm (Expand Search), finding algorithm (Expand Search)
data algorithm » data algorithms (Expand Search), update algorithm (Expand Search), atlas algorithm (Expand Search)
element data » settlement data (Expand Search), relevant data (Expand Search), movement data (Expand Search)
coding algorithm » cosine algorithm (Expand Search), modeling algorithm (Expand Search), finding algorithm (Expand Search)
data algorithm » data algorithms (Expand Search), update algorithm (Expand Search), atlas algorithm (Expand Search)
element data » settlement data (Expand Search), relevant data (Expand Search), movement data (Expand Search)
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Single agent and multi-agents tasks for <i>LazyAct</i>.
Published 2025“…However, the high computational cost of policies based on deep neural networks restricts their practical application. …”
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Network architectures for multi-agents task.
Published 2025“…However, the high computational cost of policies based on deep neural networks restricts their practical application. …”
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Time(s) and GFLOPs savings of single-agent tasks.
Published 2025“…However, the high computational cost of policies based on deep neural networks restricts their practical application. …”
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Scores vs Skip ratios on single-agent task.
Published 2025“…However, the high computational cost of policies based on deep neural networks restricts their practical application. …”
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Win rate vs Skip ratios on multi-agents tasks.
Published 2025“…However, the high computational cost of policies based on deep neural networks restricts their practical application. …”
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The source code of LazyAct.
Published 2025“…However, the high computational cost of policies based on deep neural networks restricts their practical application. …”
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Simulation of multiple agents minimizing the dissonance function following homophily
Published 2025Subjects: -
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