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Train for RP survey and visual inspection in LHC RadWG meeting - 8th May 2013 Bruno FERAL EDMS: 1284415.

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Presentation on theme: "Train for RP survey and visual inspection in LHC RadWG meeting - 8th May 2013 Bruno FERAL EDMS: 1284415."— Presentation transcript:

1 Train for RP survey and visual inspection in LHC RadWG meeting - 8th May 2013 Bruno FERAL EDMS: 1284415

2 Section EN-HE-HT B. Feral2 Our main task: Design and development of remote handling equipment for interventions in radioactive areas at CERN.

3 The TIM* 30 x 30: a remote controlled inspection vehicle for LHC tunnel : Radiation + oxygen measurements Visual Inspection with cameras (HD, infrared, etc) Autonomous: Battery powered Additional payload on demand 3 30cm *TIM: Train Inspection Monorail 8 May 2013B. Feral - RadWG meeting

4 Outline  Mission of TIM series  TIM main characteristics  TIM tests in LHC early 2013  TIM components 48 May 2013B. Feral - RadWG meeting

5 Development of TIM pre-series and series To provide remote inspections, radiological surveys in the entire LHC tunnel when the machine is not in access mode. Establish a reliable service that is fully automated and fully integrated in the LHC operational procedures and controls software and contributes to the full exploitation of the physics potential of the LHC. 5 Mission: 8 May 2013B. Feral - RadWG meeting

6 Outline  Mission of TIM series  TIM main characteristics  TIM tests in LHC early 2013  TIM components 68 May 2013B. Feral - RadWG meeting

7 TIM 30-30: main characteristics Visual Inspection Radiation + oxygen measurements Parks in P5 by-pass Pass from P5 - P2 and from P5 - P8 Max speed 8km/h Control from CERN Control Centre 78 May 2013B. Feral - RadWG meeting

8 8 General view looking upstream (low resolution) TIM 30-30 visual inspection of DFBM 8 May 2013B. Feral - RadWG meeting

9 TIM 30-30: main characteristics Visual Inspection Radiation + oxygen measurements Parks in P5 by-pass Pass from P5 - P2 and from P5 - P8 Max speed 8km/h Control from CERN Control Centre 98 May 2013B. Feral - RadWG meeting

10 RP Data transmission system RP wagon PCMX sensor «Dose rate value» Ethernet NI Compact RIO ETIC 3G Modem Ethernet ETIC 3G Modem Laptop reception data 108 May 2013B. Feral - RadWG meeting

11 TIM 30-30: main characteristics Visual Inspection Radiation + oxygen measurements Parks in P5 by-pass Pass from P5 - P2 and from P5 - P8 Max speed 8km/h Control from CERN Control Centre 118 May 2013B. Feral - RadWG meeting

12 Current situation: 1 train & 1 garage Point 5 by pass is a natural garage for TIM. 12 TIM 8 May 2013B. Feral - RadWG meeting

13 Train1 Train2Train3 Train4 Proposal: 4 trains & 4 garages: 2 new garages shall be built on each side of point 1. It shall be possible to dismantle them during technical stop or shutdown. 138 May 2013B. Feral - RadWG meeting

14 TIM 30-30: main characteristics Visual Inspection Radiation + oxygen measurements Parks in P5 by-pass Pass from P5 - P2 and from P5 - P8 Max speed 8km/h Control from CERN Control Centre 148 May 2013B. Feral - RadWG meeting

15 TIM 30-30 CCC operation 158 May 2013B. Feral - RadWG meeting

16 Communication network 8 May 2013B. Feral - RadWG meeting16 Surface Tunnel LHC TIM 30 x 30 Leaky feeder cable installed in the LHC tunnel – Sunrise network Modem Sunrise network Modem (CCC/CCR)

17 Surface (CCC/CCR) Tunnel LHC Train Cable rayonnant installé dans tout le tunnel – réseau Sunrise PLC Siemens control Radiation Data acquisition Webcam Axis 213 IPL-3G IPL-G12 PC control PC vision PC acquisition données Radiation PLC Siemens control IPL-3G réseau Sunrise Internet IPL-G12 réseau Sunrise 6 1 2 3 45 VPN to 4 VPN to 5 VPN to 1 VPN to 2 Vers modems 3 et 6 Webcam Axis 213 Communication Network in more details 8 May 2013B. Feral - RadWG meeting17

18 TIM control: phone & computer network 18 Upgraded to UMTS 8 May 2013B. Feral - RadWG meeting

19 Outline  Mission of TIM series  TIM main characteristics  TIM tests in LHC early 2013  TIM components 198 May 2013B. Feral - RadWG meeting

20 Results of tests in LHC: Basic functionalities for the vehicle confirmed and tested. Basic RP survey functionality available and tested. TIM was operational for 20 days in LHC. 12 successful surveys from point 5. Number of hours of operation: 22 hours and 22 minutes. Total distance covered during the tests: 48 km. Time needed to survey a sector : 2 hours and 15 minutes Almost 100% availability ! Start/End 208 May 2013B. Feral - RadWG meeting

21 218 May 2013B. Feral - RadWG meeting

22 8 May 2013B. Feral - RadWG meeting22 DS R5 ARC DS L6

23 238 May 2013B. Feral - RadWG meeting RA47 – UJ47 UJ62 LSS5L & Collimator

24 Outline  Mission of TIM series  TIM main characteristics  TIM tests in LHC early 2013  TIM components 248 May 2013B. Feral - RadWG meeting

25 TIM components Motor wagonReconnaissance wagon RP wagonBattery wagonControl wagon 10.2 meters Bar code reader position 8.84 meters 1.36 meters 8 May 2013B. Feral - RadWG meeting25

26 8 May 2013B. Feral - RadWG meeting26

27 Motor Wagon SSD Parvex gearbox + Hengstler incremental encoder Ethernet Reconnaissance wagon Waldmann LED operation unit 8 May 2013B. Feral - RadWG meeting27

28 Reconnaissance Wagon Ethernet Motor wagon RP wagon 8 May 2013B. Feral - RadWG meeting28

29 RP Wagon Ethernet Reconnaissance wagon Battery wagon PCMX sensor «Dose rate value» Ethernet NI Compact RIO ETIC 3G Modem VEXTA Brushless DC motor – moving the arm RP arm 8 May 2013B. Feral - RadWG meeting29

30 Battery Wagon Ethernet RP wagonControl wagon Current transducer Battery controller +24V 0V 8 May 2013B. Feral - RadWG meeting30

31 Control Wagon Ethernet Battery wagon Remote switch Waldmann LED operation unit PXT-10 Temperature converter Battery charger Ethernet WiFi 8 May 2013B. Feral - RadWG meeting31


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