ResearchTrend.AI
  • Papers
  • Communities
  • Events
  • Blog
  • Pricing
Papers
Communities
Social Events
Terms and Conditions
Pricing
Parameter LabParameter LabTwitterGitHubLinkedInBlueskyYoutube

© 2025 ResearchTrend.AI, All rights reserved.

  1. Home
  2. Papers
  3. 2101.00683
  4. Cited By
Low rattling: A predictive principle for self-organization in active
  collectives

Low rattling: A predictive principle for self-organization in active collectives

3 January 2021
Pavel Chvykov
Thomas A. Berrueta
A. Vardhan
W. Savoie
Alexander Samland
Todd D. Murphey
K. Wiesenfeld
Daniel I. Goldman
Jeremy L. England
ArXivPDFHTML

Papers citing "Low rattling: A predictive principle for self-organization in active collectives"

4 / 4 papers shown
Title
Maximum diffusion reinforcement learning
Maximum diffusion reinforcement learning
Thomas A. Berrueta
Allison Pinosky
Todd D. Murphey
AI4CE
DiffM
19
5
0
26 Sep 2023
Swarmodroid 1.0: A Modular Bristle-Bot Platform for Robotic Active
  Matter Studies
Swarmodroid 1.0: A Modular Bristle-Bot Platform for Robotic Active Matter Studies
A. A. Dmitriev
A. Rozenblit
Vadim Porvatov
Mikhail K. Buzakov
Anastasia A. Molodtsova
...
Vyacheslav A. Smirnov
O. Burmistrov
Timur I. Karimov
E. Puhtina
N. Olekhno
20
1
0
22 May 2023
A Deep Reinforcement Learning Environment for Particle Robot Navigation
  and Object Manipulation
A Deep Reinforcement Learning Environment for Particle Robot Navigation and Object Manipulation
Jeremy Shen
Erdong Xiao
Yuchen Liu
Chen Feng
22
7
0
12 Mar 2022
Field-mediated locomotor dynamics on highly deformable surfaces
Field-mediated locomotor dynamics on highly deformable surfaces
Shengkai Li
Yasemin Ozkan-Aydin
Charles Xiao
Gabriella Small
Hussain N. Gynai
Gongjie Li
Jennifer M. Rieser
P. Laguna
Daniel I. Goldman
AI4CE
17
6
0
07 Apr 2020
1