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1. Dynamic Traffic Management Using Reinforcement Learning.

2. Artificial‐Intelligence‐Powered Lower Limb Assistive Devices: Future of Home Care Technologies.

3. Multi-Lane Differential Variable Speed Limit Control via Deep Neural Networks Optimized by an Adaptive Evolutionary Strategy.

4. Learning multi-satellite scheduling policy with heterogeneous graph neural network.

5. AI-Based Scheduling Models, Optimization, and Prediction for Hydropower Generation: Opportunities, Issues, and Future Directions.

6. Active Debris Removal Mission Planning Method Based on Machine Learning.

7. Interpreting a deep reinforcement learning model with conceptual embedding and performance analysis.

8. An Improved Deep Reinforcement Learning Method for Dispatch Optimization Strategy of Modern Power Systems.

9. End-to-End Deep Policy Feedback-Based Reinforcement Learning Method for Quantization in DNNs.

10. An image caption model based on attention mechanism and deep reinforcement learning.

11. Position‐aware pushing and grasping synergy with deep reinforcement learning in clutter.

12. A data-driven tracking control framework using physics-informed neural networks and deep reinforcement learning for dynamical systems.

13. Edge-Driven Multi-Agent Reinforcement Learning: A Novel Approach to Ultrasound Breast Tumor Segmentation.

14. Manoeuvre decision‐making of unmanned aerial vehicles in air combat based on an expert actor‐based soft actor critic algorithm.

15. Improving Agent Decision Payoffs via a New Framework of Opponent Modeling.

16. Editorial: Deep Learning for Toxicity and Disease Prediction.

17. Voltage control of DC–DC converters through direct control of power switches using reinforcement learning.

18. Reinforcement Learning-Based Path following Control with Dynamics Randomization for Parametric Uncertainties in Autonomous Driving.

19. Learning robotic manipulation skills with multiple semantic goals by conservative curiosity-motivated exploration.

20. Variational Information Bottleneck Regularized Deep Reinforcement Learning for Efficient Robotic Skill Adaptation.