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Part 1: Document Description
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Citation |
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Title: |
Supplementary videos for "Task oriented algorithms for intelligent self propelled micro-agents" |
Identification Number: |
doi:10.18419/darus-3695 |
Distributor: |
DaRUS |
Date of Distribution: |
2023-09-07 |
Version: |
1 |
Bibliographic Citation: |
Koppenhöfer, Simon, 2023, "Supplementary videos for "Task oriented algorithms for intelligent self propelled micro-agents"", https://doi.org/10.18419/darus-3695, DaRUS, V1 |
Citation |
|
Title: |
Supplementary videos for "Task oriented algorithms for intelligent self propelled micro-agents" |
Identification Number: |
doi:10.18419/darus-3695 |
Authoring Entity: |
Koppenhöfer, Simon (Universität Stuttgart) |
Distributor: |
DaRUS |
Access Authority: |
Koppenhöfer, Simon |
Access Authority: |
Holm, Christian |
Depositor: |
Koppenhöfer, Simon |
Date of Deposit: |
2023-08-30 |
Holdings Information: |
https://doi.org/10.18419/darus-3695 |
Study Scope |
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Keywords: |
Physics |
Topic Classification: |
Dry Active Matter, Collective Behavior |
Abstract: |
The presented videos visualize chosen aspects of 2D simulations with controlled active propelled agents. Some simulations concern agents that find a point (in maze), rotate a rod, rotate rods arranged in a lattice |
Notes: |
the name of each . mp4 file indicates to which chapter of the master thesis the video is related to. Also in the file name the is an identifier included of the form X_X_X_X with X being placeholders for different aspects of the underlying agent algorithm. Aspects are: addressed task, used sensor, algorithm type, characteristic behavior. |
Methodology and Processing |
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Sources Statement |
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Data Access |
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Other Study Description Materials |
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Related Publications |
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Citation |
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Title: |
Simon Koppenhöfer. “Task oriented algorithms for intelligent self propelled micro-agents”. Masterthesis. Stuttgart: Universität Stuttgart, Sep. 01, 2023. |
Bibliographic Citation: |
Simon Koppenhöfer. “Task oriented algorithms for intelligent self propelled micro-agents”. Masterthesis. Stuttgart: Universität Stuttgart, Sep. 01, 2023. |
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ch3-R_V_C_-Run09_experiment_raw.mp4 |
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video/mp4 |
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ch4-F_Cm_C_C.mp4 |
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video/mp4 |
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ch4-F_Cm_C_C_experiment.mp4 |
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video/mp4 |
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ch4-F_Cm_C_Z.mp4 |
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video/mp4 |
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ch4-F_Cm_Rl_C.mp4 |
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video/mp4 |
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ch4-F_Cm_Rl_C_experiment.mp4 |
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video/mp4 |
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ch5-M_VD_C_-na60.mp4 |
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video/mp4 |
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ch5-M_VQD_C_-na30.mp4 |
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video/mp4 |
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ch5-M_VQD_C_A.mp4 |
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video/mp4 |
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ch6-R_Cg_C_S-na10.mp4 |
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video/mp4 |
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ch6-R_Cg_C_S-na25.mp4 |
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video/mp4 |
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ch6-R_CmT_C_C-lab_reference_frame.mp4 |
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video/mp4 |
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ch6-R_CmT_C_C-rod_reference_frame.mp4 |
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video/mp4 |
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ch6-R_Cm_C_C-lab_reference_frame.mp4 |
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video/mp4 |
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ch6-R_Cm_C_C-rod_reference_frame.mp4 |
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video/mp4 |
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ch6-R_V_C_-Run09_experiment.mp4 |
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video/mp4 |
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ch6-R_V_C_-Run09_simulation.mp4 |
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video/mp4 |
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ch6-R_V_C_I-Run09_simulation.mp4 |
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video/mp4 |
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ch6-R_V_C_I.mp4 |
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video/mp4 |
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ch7-I_CgCm_C_aF-1D_lattice_n16.mp4 |
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video/mp4 |
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ch7-I_CgCm_C_aF-1x2_condition_regions.mp4 |
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video/mp4 |
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ch7-I_CgCm_C_aF-2x2_condition_regions.mp4 |
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video/mp4 |
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ch7-I_Cg_C_F-1D_lattice_n16.mp4 |
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video/mp4 |
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ch7-I_Cg_C_F-2x2_gradient_lines.mp4 |
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video/mp4 |
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ch7-I_Cg_C_F-6rods.mp4 |
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video/mp4 |