paper-with-me

홈 › Papers

Temporally Layered Architecture for Adaptive, Distributed and Continuous Control

2022-12-25 · Devdhar Patel, Joshua Russell, Francesca Walsh, Tauhidur Rahman, Terrence Sejnowski, Hava Siegelmann

We present temporally layered architecture (TLA), a biologically inspired system for temporally adaptive distributed control. TLA layers a fast and a slow controller together to achieve temporal abstraction that allows each layer to focus on a different time-scale. Our design is biologically inspired and draws on the architecture of the human brain which executes actions at different timescales depending on the environment's demands. Such distributed control design is widespread across biological systems because it increases survivability and accuracy in certain and uncertain environments. We demonstrate that TLA can provide many advantages over existing approaches, including persistent exploration, adaptive control, explainable temporal behavior, compute efficiency and distributed control. We present two different algorithms for training TLA: (a) Closed-loop control, where the fast controller is trained over a pre-trained slow controller, allowing better exploration for the fast controller and closed-loop control where the fast controller decides whether to "act-or-not" at each timestep; and (b) Partially open loop control, where the slow controller is trained over a pre-trained fast controller, allowing for open loop-control where the slow controller picks a temporally extended action or defers the next n-actions to the fast controller. We evaluated our method on a suite of continuous control tasks and demonstrate the advantages of TLA over several strong baselines.

📄 PDF Abstract BibTeX arXiv:2301.00723

Code (0)

등록된 구현이 없습니다.

Tasks

continuous-controlContinuous Control

Similar Papers 제목 키워드 기반

Optimizing Attention and Cognitive Control Costs Using Temporally-Layered Architectures

2023-05-30 · Devdhar Patel, Terrence Sejnowski, Hava Siegelmann

The current reinforcement learning framework focuses exclusively on performance, often at the expense of efficiency. In contrast, biological control achieves remarkable performance while also optimizing computational ene…

continuous-controlContinuous ControlOpenAI GymPendulum-v1+2

A Contract Theory for Layered Control Architectures

2024-09-23 · Manuel Mazo Jr., Will Compton, Max H. Cohen, Aaron D. Ames

Autonomous systems typically leverage layered control architectures with a combination of discrete and continuous models operating at different timescales. As a result, layered systems form a new class of hybrid systems …

Labits: Layered Bidirectional Time Surfaces Representation for Event Camera-based Continuous Dense Trajectory Estimation

2024-12-12 · Zhongyang Zhang, Jiacheng Qiu, Shuyang Cui, Yijun Luo 외

Event cameras provide a compelling alternative to traditional frame-based sensors, capturing dynamic scenes with high temporal resolution and low latency. Moving objects trigger events with precise timestamps along their…

Optical Flow Estimation

LapisGS: Layered Progressive 3D Gaussian Splatting for Adaptive Streaming

2024-08-27 · Yuang Shi, Géraldine Morin, Simone Gasparini, Wei Tsang Ooi

The rise of Extended Reality (XR) requires efficient streaming of 3D online worlds, challenging current 3DGS representations to adapt to bandwidth-constrained environments. This paper proposes LapisGS, a layered 3DGS tha…

3DGSSSIM

Automaton-Guided Control Synthesis for Signal Temporal Logic Specifications

2022-07-08 · Qi Heng Ho, Roland B. Ilyes, Zachary N. Sunberg, Morteza Lahijanian

This paper presents an algorithmic framework for control synthesis of continuous dynamical systems subject to signal temporal logic (STL) specifications. We propose a novel algorithm to obtain a time-partitioned finite a…