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  • https://doi.org/10.1109/ijcnn48605.2020.9206831Copy DOI Icon

Effective Linear Policy Gradient Search through Primal-Dual Approximation

  • Jul 1, 2020
  • Yiming Peng +2 more
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Abstract

Recent research discovered that Reinforcement Learning (RL) algorithms with simple linear policies can achieve competitive performance as many state-of-the-art RL algorithms designed to train policies in the form of multi-layer neural networks. However, high learning performance is only achieved so far when policies are trained by jointly using multiple episodes of samples. An important research question remains as to whether linear policies can achieve cutting-edge performance when they are trained in a step-wise fashion (i.e., policies are iteratively updated based on every newly obtained sample). This paper presents a confirmatory answer to this question by developing a new RL algorithm called Primal-Dual Regular-gradient Actor-Critic (PD-RAC) as a generalization of RAC, which is a popular step-wise RL technique. Experiments on six benchmark control problems show that PD-RAC can achieve leading performance, in comparison to several recently developed baseline algorithms.

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