Uncategorized pages

Jump to navigation Jump to search

Showing below up to 250 results in range #51 to #300.

View ( | ) (20 | 50 | 100 | 250 | 500)

  1. 15-Sept-14
  2. 15.
  3. 16.
  4. 17-Oct-14
  5. 17.
  6. 18-Sept-14
  7. 18.
  8. 1819:Group11:Brainstorm
  9. 19.
  10. 2.
  11. 20.
  12. 21.
  13. 22-Sept-14
  14. 22.
  15. 23
  16. 23.
  17. 24
  18. 24.
  19. 25
  20. 25.
  21. 26
  22. 26-Sept-14
  23. 26.
  24. 27
  25. 27.
  26. 28
  27. 28.
  28. 29
  29. 29.
  30. 3.
  31. 30
  32. 30.
  33. 31
  34. 31.
  35. 32
  36. 32.
  37. 4.
  38. 4Aanbevelingen en toepassingen
  39. 4Achtergrondinformatie
  40. 4Analyse
  41. 4Conclusies
  42. 4Data verwerken
  43. 4Discussie
  44. 4Discussie van ons onderzoek
  45. 4Doelstellingen
  46. 4Eventueel vervolgonderzoek
  47. 4Inleiding
  48. 4Onderzoek
  49. 4Onderzoeksvraag
  50. 4SC020 Design Document.pdf
  51. 4USE aspecten
  52. 5.
  53. 6-Oct-14
  54. 6.
  55. 7.
  56. 8.
  57. 9-Oct-14
  58. 9.
  59. == Week 1 ==
  60. = State of the Art Literature Study =
  61. A. Prakash, W. A. Rogers. (2015). Why Some Humanoid Faces Are Perceived More Positively Than Others: Effects of Human-Likeness and Task.
  62. AI articles not yet on the wiki
  63. AMIGO Kinect Script
  64. AMIGO ROS Script
  65. AMIGO research
  66. ARParrotGPS PRE2 Groep1
  67. AT-LAB PCs
  68. AWESOME DELIVERY SYSTEM
  69. A Gecko Inspired Fluid Driven Climbing Robot
  70. A High Integrity IMU/GPS Navigation Loop for Autonomous Land Vehicle Applications
  71. A Moving Solar Roof for a Hybrid Solar Vehicle
  72. A Multi-Modality Mobility Concept for a Small Package Delivery UAV
  73. A Path Motion Planning For Humanoid Climbing Robot
  74. A Small Window-Cleaning Robot for Domestic Use
  75. A Study of Omnidirectional Quad-Screw-Drive Configurations for All-Terrain Locomotion
  76. A Survey of Socially Interactive Robots.
  77. A cost-benefit analysis of Amazon Prime Air
  78. A cost-optimization model in multi-agent system routing for drone delivery
  79. A dynamic colour perception system for autonomous robot navigation on unmarked roads
  80. A multi-objective green UAV routing problem
  81. A survey of climbing robots: Locomotion and adhesion
  82. A survey on coverage path planning for robotics
  83. A wall climbing robot for inspection use
  84. Abubshait, A. & Wiese, E. (2017). You Look Human, But Act Like a Machine: Agent Appearance and Behavior Modulate Different Aspects of Human–Robot Interaction.
  85. Acapelabox
  86. Acqgen DataAcquisition
  87. Adams, B. et al. (2000). Humanoid Robots: A New Kind of Tool.
  88. Adjustments sentences
  89. Advanced oxidation processes (AOP) for water purification and recovery
  90. Algemeen: Logboek
  91. Algorithm
  92. Algorithm 1
  93. Algorithm 2
  94. Amazon Helicopter Delivery System Analysis
  95. Amazon Prime Air
  96. An Analysis of Water Collection Labor among Women and Children in 24 Sub-Saharan African Countries
  97. Analyse
  98. Analyse gemeenschappelijke vragenlijst
  99. Analyse open vragen en AMIGO-lijst
  100. Analyse van prototypen
  101. Analysis of energy capture by vehicle solar roofs in conjunction with workplace plug-in charging
  102. Analytical modelling of suction cups used for window-cleaning robots
  103. Angst voor robots
  104. Answers
  105. Appendix PRE2020 1 Group2
  106. Archive hyperlink needed
  107. Arduino code 1
  108. Arduino code 2
  109. Article 1
  110. Article 2
  111. Article 3
  112. Article Summaries
  113. Article summaries literature study
  114. Articles bart
  115. Articles lighting
  116. Asada M. K. F. MacDorman, H. Ishiguro, Y. Kuniyoshi. (2017). Cognitive developmental robotics as a new paradigm for the design of humanoid robots.
  117. Assessing Acceptance of Assistive Social Agent Technology by Older Adults: the Almere Model
  118. Assumptions on parcel delivery drones
  119. Auto-Selection Of Package Delivery Location Based On Estimated Time Of Delivery
  120. AutoRef - Autonomous Referee System
  121. AutoRef Honors2019 Layout
  122. AutoRef Honors2019 Simulation
  123. AutoRef Honors2019 Software Architecture
  124. AutoRef Honors2019 conclusion
  125. AutoRef Honors2019 minutes
  126. AutoRef Honors2019 reflection
  127. AutoRef Honors2019 team
  128. AutoRef Honors2019 timeline
  129. AutoRef Honors2019 videolog
  130. AutoRef Honors2019 vision
  131. AutoRef Inventory
  132. AutoRef Layout
  133. AutoRef MSD 1819
  134. AutoRef MSD 2019
  135. AutoRef MSD 2019-2020
  136. AutoRef MSD 2020
  137. AutoRef MSD 2020: Contents
  138. AutoRef PDEng MSD 2020 implementation
  139. AutoRef PDEng MSD 2020 system architecture
  140. AutoRef Teams
  141. AutoRef distance violation checking
  142. AutoRef honors 2019
  143. AutoRef implementation
  144. AutoRef manuals
  145. AutoRef system architecture
  146. Automotive Lab
  147. Autonomie PRE2 Groep1
  148. Autonomous Aerial Cargo/Utility system
  149. Autonomous Delivery System
  150. Autonomous Drones for Assisting Rescue Services within the context of Natural Disasters
  151. Autonomous Football Table
  152. Autonomous Measurement Drone for Remote Dangerous Source Location Mapping
  153. Autonomous Referee System
  154. Autonomous Refueling Stations
  155. Autonomous and automatic landing system for drones
  156. Autonomous mobility scooter requirements
  157. Autonoom vliegen links
  158. BEP Shaft Rescue Robot (2022/2023, Q3)
  159. Backed up assumptions Group 10
  160. Background ARS
  161. Background Research
  162. Ball Detection
  163. Balrobot
  164. Bar-Cohen, Y., & Breazeal, C., (2003). Biologically inspired intelligent robots.
  165. Bartneck, C. et al. (2009). My Robotic Doppelgänger - A Critical Look at the Uncanny Valley
  166. Beamer with Sidebar
  167. Beantwoorde deelvragen
  168. Beantwoorden vraag waarom het een probleem is dat blinden en slechtzienden minder werken dan zienden.
  169. Begroting Onderzoek
  170. Bestaande technologie
  171. Beveiliging
  172. BlueSmiRF module
  173. Bordschrijfrobot
  174. Botsingdetectie
  175. Botsingsdetectie
  176. Brainstorm
  177. Brainstorm group5
  178. Brainstormen
  179. Brainstormsessie
  180. Breazeal, C. & Scassellatie, B. (2002). Robots That Imitate Humans.
  181. Brenna D. Argall, Sonia Chernova, Manuela Veloso, Brett Browning (2008), A survey of robot learning from demonstration, Robotics and Autonomous Systems
  182. Broad SotA
  183. Bronnen emoties
  184. Bronnen persuasiveness
  185. C. G. Atkeson, J. G. Hale, F. Pollick, M. Riley, S. Kotosaka, S. Schaal, T. Shibata, G. Tevatia, A. Ude, S. Vijayakumar, E. Kawato, M. Kawato. (2000). Using Humanoid Robots To Study Human Behavior.
  186. CAT
  187. Calculation of Optimal Magnetic Force for Automatic Control Magnetic Force of the Window Cleaning Robot
  188. Can drones deliver?
  189. Can unmanned aerial systems (drones) be used for the routine transport of chemistry, hematology, and coagulation laboratory specimens?
  190. Case studies
  191. Categorieën
  192. Categorizing solutions - Group 4 - 2018/2019, Semester B, Quartile 3
  193. Chi-square test
  194. Chimney
  195. Chimney to Cubby
  196. Chin Chang Ho, Karl F. MacDorman (2016), Measuring the Uncanny Valley Effect
  197. Chronological Document
  198. Chung-En Yu (2020). Humanlike robots as employees in the hotel industry: Thematic content analysis of online reviews.
  199. Civilian drones, privacy, and the federal-state balance
  200. Clairvoyance
  201. Cleaning
  202. Climbing cleaning robot for vertical surfaces
  203. Cluster analyse
  204. Coaching Questions
  205. Coaching Questions Group 1
  206. Coaching Questions Group 10
  207. Coaching Questions Group 11
  208. Coaching Questions Group 12
  209. Coaching Questions Group 13
  210. Coaching Questions Group 14
  211. Coaching Questions Group 15
  212. Coaching Questions Group 16
  213. Coaching Questions Group 17
  214. Coaching Questions Group 18
  215. Coaching Questions Group 2
  216. Coaching Questions Group 3
  217. Coaching Questions Group 4
  218. Coaching Questions Group 5
  219. Coaching Questions Group 6
  220. Coaching Questions Group 7
  221. Coaching Questions Group 8
  222. Coaching Questions Group 9
  223. Collected interviews
  224. Commercieel PRE2 Groep1
  225. Communication and behaviour
  226. Comparison motion planning algorithms
  227. Concepts Chosen
  228. Conclusie PRE2Groep2
  229. Conclusion
  230. Conclusion - Group 4 - 2018/2019, Semester B, Quartile 3
  231. Conclusions Recommendations MSD16
  232. Conclusions Recommendations MSD19
  233. Concurrentie PRE2 Groep1
  234. Content ARS large
  235. Content AutoRef Honors2019 large
  236. Content AutoRef large
  237. Content EUTAFT large
  238. Content MSD16 large
  239. Content MSD16 small
  240. Content MSD19 large
  241. Content MSD19 small
  242. Control
  243. Control for Dummies
  244. Control of Mobile Robots 2020
  245. Cost function 2016 a2
  246. Cubby to Person
  247. DMC: Tips and Tricks
  248. Daniël Pijnenborg
  249. Decision Model - Group 4 - 2018/2019, Semester B, Quartile 3
  250. Decision Model validation - Group 4 - 2018/2019, Semester B, Quartile 3

View ( | ) (20 | 50 | 100 | 250 | 500)