Dead-end pages

Jump to navigation Jump to search

The following pages do not link to other pages in Control Systems Technology Group.

Showing below up to 250 results in range #1 to #250.

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

  1. 0LAUK0 2015 01 Survey
  2. 0LAUK0 2015 01 TheIdea
  3. 0LAUK0 2015 03 Planning
  4. 0LAUK0 2018Q1 Group 2 - Design Plans Research
  5. 0LAUK0 2018Q1 Group 2 - Prototype Functionality Testing
  6. 0LAUK0 2018Q1 Group 2 - SotA Literature Study
  7. 0LAUK0 2018Q1 Group 2 - test link
  8. 0LAUK0 PRE2016 3 Groep10 Application code
  9. 0LAUK0 PRE2016 3 Groep10 Interview
  10. 0LAUK0 PRE2016 3 Groep10 Logboek
  11. 0LAUK0 PRE2016 3 Groep10 Planning
  12. 0LAUK0 PRE2016 3 Groep10 Project progress
  13. 0LAUK0 PRE2016 3 Groep18 DetailedScenarios
  14. 0LAUK0 PRE2016 3 Groep18 Interview
  15. 0LAUK0 PRE2016 3 Groep18 Spellinggame
  16. 0LAUK0 PRE2016 3 Groep18 Summingup
  17. 0LAUK0 PRE2016 3 Groep18 higherlower
  18. 0LAUK0 PRE2016 3 Groep18 programminggame
  19. 0LAUK0 PRE2018 3 Group 13 Braille mechanisms
  20. 0LAUK0 PRE2018 3 Group 13 Concept interface
  21. 0LAUK0 PRE2018 3 Group 13 Dummy sentence
  22. 0LAUK0 PRE2018 3 Group 13 Letter software
  23. 0LAUK0 PRE2018 3 Group 13 Material Study
  24. 0LAUK0 PRE2018 3 Group 13 Planning
  25. 1.
  26. 10.
  27. 11.
  28. 12.
  29. 13.
  30. 14.
  31. 15.
  32. 16.
  33. 17.
  34. 18.
  35. 1819:Group11:Brainstorm
  36. 19.
  37. 2.
  38. 20.
  39. 21.
  40. 22.
  41. 23
  42. 23.
  43. 24
  44. 24.
  45. 25
  46. 25.
  47. 26
  48. 26.
  49. 27
  50. 27.
  51. 28
  52. 28.
  53. 29
  54. 29.
  55. 3.
  56. 30
  57. 30.
  58. 31
  59. 31.
  60. 32
  61. 32.
  62. 4.
  63. 4SC020 Design Document.pdf
  64. 5.
  65. 6.
  66. 7.
  67. 8.
  68. 9.
  69. == Week 1 ==
  70. = State of the Art Literature Study =
  71. A. Prakash, W. A. Rogers. (2015). Why Some Humanoid Faces Are Perceived More Positively Than Others: Effects of Human-Likeness and Task.
  72. AI articles not yet on the wiki
  73. ARParrotGPS PRE2 Groep1
  74. AT-LAB PCs
  75. A Gecko Inspired Fluid Driven Climbing Robot
  76. A High Integrity IMU/GPS Navigation Loop for Autonomous Land Vehicle Applications
  77. A Moving Solar Roof for a Hybrid Solar Vehicle
  78. A Multi-Modality Mobility Concept for a Small Package Delivery UAV
  79. A Path Motion Planning For Humanoid Climbing Robot
  80. A Small Window-Cleaning Robot for Domestic Use
  81. A Study of Omnidirectional Quad-Screw-Drive Configurations for All-Terrain Locomotion
  82. A cost-benefit analysis of Amazon Prime Air
  83. A cost-optimization model in multi-agent system routing for drone delivery
  84. A dynamic colour perception system for autonomous robot navigation on unmarked roads
  85. A multi-objective green UAV routing problem
  86. A survey of climbing robots: Locomotion and adhesion
  87. A survey on coverage path planning for robotics
  88. A wall climbing robot for inspection use
  89. Abubshait, A. & Wiese, E. (2017). You Look Human, But Act Like a Machine: Agent Appearance and Behavior Modulate Different Aspects of Human–Robot Interaction.
  90. Acqgen DataAcquisition
  91. Adams, B. et al. (2000). Humanoid Robots: A New Kind of Tool.
  92. Advanced oxidation processes (AOP) for water purification and recovery
  93. Algorithm 1
  94. Algorithm 2
  95. Amazon Prime Air
  96. An Analysis of Water Collection Labor among Women and Children in 24 Sub-Saharan African Countries
  97. Analyse van prototypen
  98. Analysis of energy capture by vehicle solar roofs in conjunction with workplace plug-in charging
  99. Analytical modelling of suction cups used for window-cleaning robots
  100. Answers
  101. Appendix PRE2020 1 Group2
  102. Archive hyperlink needed
  103. Arduino code 1
  104. Arduino code 2
  105. Articles bart
  106. Articles lighting
  107. Asada M. K. F. MacDorman, H. Ishiguro, Y. Kuniyoshi. (2017). Cognitive developmental robotics as a new paradigm for the design of humanoid robots.
  108. Auto-Selection Of Package Delivery Location Based On Estimated Time Of Delivery
  109. AutoRef Honors2019 minutes
  110. AutoRef Honors2019 team
  111. AutoRef MSD 1819
  112. AutoRef MSD 2019-2020
  113. AutoRef manuals
  114. Autonomous Aerial Cargo/Utility system
  115. Autonomous Drones for Assisting Rescue Services within the context of Natural Disasters
  116. Autonomous Measurement Drone for Remote Dangerous Source Location Mapping
  117. Autonomous Refueling Stations
  118. Autonomous and automatic landing system for drones
  119. Autonoom vliegen links
  120. BEP Shaft Rescue Robot (2022/2023, Q3)
  121. Background ARS
  122. Bar-Cohen, Y., & Breazeal, C., (2003). Biologically inspired intelligent robots.
  123. Bartneck, C. et al. (2009). My Robotic Doppelgänger - A Critical Look at the Uncanny Valley
  124. Beamer with Sidebar
  125. Beantwoorde deelvragen
  126. Beantwoorden vraag waarom het een probleem is dat blinden en slechtzienden minder werken dan zienden.
  127. Beschrijving van 3 banen waar robotica eventueel zouden kunnen helpen
  128. Botsingdetectie
  129. Breazeal, C. & Scassellatie, B. (2002). Robots That Imitate Humans.
  130. Brenna D. Argall, Sonia Chernova, Manuela Veloso, Brett Browning (2008), A survey of robot learning from demonstration, Robotics and Autonomous Systems
  131. Broad SotA
  132. 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.
  133. CAT
  134. Calculation of Optimal Magnetic Force for Automatic Control Magnetic Force of the Window Cleaning Robot
  135. Can drones deliver?
  136. Can unmanned aerial systems (drones) be used for the routine transport of chemistry, hematology, and coagulation laboratory specimens?
  137. Chin Chang Ho, Karl F. MacDorman (2016), Measuring the Uncanny Valley Effect
  138. Chronological Document
  139. Chung-En Yu (2020). Humanlike robots as employees in the hotel industry: Thematic content analysis of online reviews.
  140. Civilian drones, privacy, and the federal-state balance
  141. Clairvoyance
  142. Cleaning
  143. Climbing cleaning robot for vertical surfaces
  144. Coaching Questions
  145. Coaching Questions Group 1
  146. Coaching Questions Group 11
  147. Coaching Questions Group 12
  148. Coaching Questions Group 13
  149. Coaching Questions Group 14
  150. Coaching Questions Group 15
  151. Coaching Questions Group 16
  152. Coaching Questions Group 17
  153. Coaching Questions Group 18
  154. Coaching Questions Group 2
  155. Coaching Questions Group 3
  156. Coaching Questions Group 4
  157. Coaching Questions Group 5
  158. Coaching Questions Group 7
  159. Coaching Questions Group 8
  160. Code group5 2020
  161. Collected interviews
  162. Comparison motion planning algorithms
  163. Conclusie PRE2Groep2
  164. Control for Dummies
  165. Cost function 2016 a2
  166. DMC: Tips and Tricks
  167. Daniël Pijnenborg
  168. Decision tree - Group 4 - 2018/2019, Semester B, Quartile 3
  169. Deelvragen
  170. Deliverables and milestones of group 12
  171. Delivery platform for unmanned areal vehicles
  172. Dense topological maps and partial pose estimation for visual control of an autonomous cleaning robot
  173. Design and Control of an Unmanned Aerial Vehicle for Autonomous Parcel Delivery with Transition from Vertical Take-off to Forward Flight
  174. Design and Kinematic Analysis of Tethered Guiding Vehicle (TGV) for façade window cleaning
  175. Design and stability analysis of a novel wall-climbing robotic platform (ROPE RIDE)
  176. Design of a small-scale autonomous amphibious vehicle
  177. Detection Skill
  178. Development of a High Efficiency and High Reliable Glass Cleaning Robot with a Dirt Detect Sensor
  179. Dieter Vanderelst, Alan Winfield (2017), Rational imitation for robots: the cost difference model
  180. Documents Ruud
  181. Documents Ruud van den Bogaert
  182. Doering, M., & Glas, D., & Ishiguro, H., (2019). Modeling Interaction Structure for Robot Imitation Learning of Human Social Behavior.
  183. Done
  184. Drive trough a corridor
  185. Drone-Aided Healthcare Services for Patients with Chronic diseases in Rural Areas
  186. Drone Operated Delivery Receptacle
  187. Drone Referee - MSD 2017/18
  188. Drone Referee - MSD 2018/9
  189. Drone delivery models for healthcare
  190. Drone shipping versus truck delivery in a cross-docking system with multiple fleets and products
  191. Drone transport of microbes in blood and sputum laboratory specimens
  192. Drone transportation of blood products
  193. Drones in Logistics: A Feasible Future or a waste of effort
  194. E-box/Install manual
  195. E-box/Install manual/FAQ
  196. E-box/Students Manual
  197. E-box/User manual
  198. EDrive
  199. EUTAFT Log
  200. EUTAFT Software
  201. Embedded Motion Control/Assignments
  202. Embedded Motion Control/Corridor competition 2015
  203. Embedded Motion Control/Corridor competition 2016
  204. Embedded Motion Control/Corridor competition 2017
  205. Embedded Motion Control/Escape Room Competition 2018
  206. Embedded Motion Control/Extra Test Slots
  207. Embedded Motion Control/Goal
  208. Embedded Motion Control/Group Blogs
  209. Embedded Motion Control/Hardware
  210. Embedded Motion Control/Hospital Competition 2018
  211. Embedded Motion Control/Hospital Room Competition 2019
  212. Embedded Motion Control/Introduction
  213. Embedded Motion Control/Lego Mindstorms Installation
  214. Embedded Motion Control/Maze competition 2015
  215. Embedded Motion Control/Maze competition 2016
  216. Embedded Motion Control/Maze competition 2017
  217. Embedded Motion Control/Tutorials/Obtaining laser and odometry data
  218. Embedded Motion Control/Tutorials/Setting up the PICO simulator 2015
  219. Embedded Motion Control/Tutorials/Setting up the PICO simulator 2016
  220. Embedded Motion Control/Tutorials/Setting up the PICO simulator 2017
  221. Embedded Motion Control/Tutorials/Setting up the PICO simulator 2018
  222. Embedded Motion Control/Tutorials/Setting up the PICO simulator New
  223. Embedded Motion Control/Ubuntu Installation
  224. Embedded Motion Control 2012/Contact Details
  225. Embedded Motion Control 2012/Goal
  226. Embedded Motion Control 2012 Group 1
  227. Embedded Motion Control 2012 Group 10
  228. Embedded Motion Control 2012 Group 11
  229. Embedded Motion Control 2012 Group 2
  230. Embedded Motion Control 2012 Group 3
  231. Embedded Motion Control 2012 Group 4
  232. Embedded Motion Control 2012 Group 5
  233. Embedded Motion Control 2012 Group 6
  234. Embedded Motion Control 2012 Group 7
  235. Embedded Motion Control 2012 Group 8
  236. Embedded Motion Control 2012 Group 9
  237. Embedded Motion Control 2013/Contact Details
  238. Embedded Motion Control 2013/FAQ
  239. Embedded Motion Control 2013/FinalPresentations
  240. Embedded Motion Control 2013/Goal
  241. Embedded Motion Control 2013 Group 1/Meeting 20130904
  242. Embedded Motion Control 2013 Group 1/Meeting 20130911
  243. Embedded Motion Control 2013 Group 1/Meeting 20130918
  244. Embedded Motion Control 2013 Group 10
  245. Embedded Motion Control 2013 Group 11
  246. Embedded Motion Control 2013 Group 2
  247. Embedded Motion Control 2013 Group 3
  248. Embedded Motion Control 2013 Group 5
  249. Embedded Motion Control 2013 Group 7/Recap2
  250. Embedded Motion Control 2013 Group 7/Recap3

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