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From version < 34.1 >
edited by Alexander Schulz-Rosengarten
on 2024/09/19 14:31
To version < 39.1 >
edited by Alexander Schulz-Rosengarten
on 2024/10/07 13:14
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1 -The REAKT project (https://reakt.sh/ & https://www.schiene-m-l.de/) aims at developing new mobility concepts to reactivate rural rail lines. This project will evolve around developing an autonomous rail vehicle, the **REAKTOR**, to flexibly provide on-demand service on single track lines. A prototype will be build in 1:32 scale for 45 mm gauge, as well as a full scale version for the railway track Malente-Lütjenburg.
1 +The REAKT project (https://reakt.sh/ & https://www.schiene-m-l.de/) aims at developing new mobility concepts to reactivate rural rail lines. This project will evolve around developing an autonomous rail vehicle, the **REAKTOR**, to flexibly provide on-demand service on single track lines. A prototype will be built in 1:32 scale for 45 mm gauge, as well as a full scale version for the railway track Malente-Lütjenburg.
2 2  
3 3  [[image:image-20240912102452-3.jpeg||height="219" width="292"]][[image:image-20240912102840-4.jpeg||height="217" width="264"]]
4 4  
5 5  //(left) a railbike, the foundation of the upcoming autonomous draisine & (right) a stripped down [[LGB>>https://www.lgb.de/lp/20/willkommen-bei-lgb]] engine for a 45mm model track.//
6 6  
7 +{{info}}
8 +Kick-off meeting on Monday 7th Oct. at 10am in room 1115 CAP4
9 +{{/info}}
10 +
7 7  == Overview of topics (WIP) ==
8 8  
9 -**The solutions in all topics must be scalable for both demonstrators!**
13 +**The solutions in all topics should be scalable for both demonstrators!**
10 10  
11 -~1. An end-user app and management system for on-demand train service
12 -// This topic may be split up into two theses (app & management)//
15 +~1. An end-user app and management system for on-demand train service **[(partially) reserved]**
16 +// This topic may be split up into two theses/project participants (app & management)//
13 13  
14 14  * A mobile app to call a train to a desired location and communicate desired destination
15 15  * Locations drawn from GNSS and appropriate abstraction for 1:32 scale for station-less entry or predefined locations
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26 26  * Safe behavior model generation using PASTA ([[https:~~/~~/marketplace.visualstudio.com/items?itemName=kieler.pasta>>https://marketplace.visualstudio.com/items?itemName=kieler.pasta]])
27 27  * Assumes preprocessed sensor input and destination determination (see other topics)
28 28  
29 -3. AI-based obstacle detection for autonomous train control using image recognition
33 +3. AI-based obstacle detection for autonomous train control using image recognition **[already reserved]**
30 30  // This topic will be jointly advised with the AG Distributed Systems//
31 31  
32 32  * Sensor processing of a train-mounted camera to detect objects (potential obstacles)
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71 71  // Note: Tight interfacing with other topics//
72 72  
73 73  * A digital twin for an autonomous passenger train
74 -* Monitoring system for the state and location of the vehicle
75 -* Remote control capabilities //(interfacing with controller)//
76 -* Monitoring and economic analysis of on-demand service operation (//integration/interfacing of management system//)
77 -* Reliability analysis/statistics to ensure transparency of autonomous operation
78 +* A virtual rebuild of the track using an 3D engine (i.e. [[Unreal Engine>>https://www.unrealengine.com]])
79 +* Simulation capabilities to test and replay behavior (virtual environment)
80 +* (Optional) Monitoring system for the state and location of the real vehicle
81 +* (Optional) Monitoring and economic analysis of on-demand service operation (//integration/interfacing of management system//)
82 +* (Optional) Reliability analysis/statistics to ensure transparency of autonomous operation
78 78  
79 -6. A standalone sensor box for monitoring rail vehicles
84 +6. Remote control for rail vehicles
85 +//This topic will be jointly advised with the AG Distributed Systems//
86 +//Note: Tight interfacing with other topics//
87 +
88 +* Remote control of speed and brakes //(interfacing with controller)//
89 +* Live streaming of camera data and other sensors
90 +* Evaluation and setup of a wireless communication network with a high reliability
91 +* (Optional) Construction of a [[remote control panel>>https://cloud.rz.uni-kiel.de/index.php/s/jCxitwKzddqEctD]]
92 +* (Optional) Augmented reality integration to simulate training scenarios
93 +
94 +7. A standalone sensor box for monitoring rail vehicles **[already reserved]**
80 80  //This prototype will be tested (only) using the full-scale demonstrator and is intended for monitoring non-autonomous vehicles (not the REAKTOR)//
81 81  
82 82  * Development of a sensor array to monitor rail vehicle operation
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95 95  
96 96  == Scope ==
97 97  
98 -Bachelor's or Master's Thesis, with varying requirements to scientific scope.
113 +Bachelor's or Master's Thesis, or Master's Project, with varying requirements to scientific scope.
99 99  
100 100  == Related Work/Literature ==
101 101