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Interferometer Sensing and Control (ISC)

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Interferometer Sensing and Control (ISC) Cost and Schedule Breakout Presentation NSF Review of Advanced LIGO Project Richard Abbott CIT – PowerPoint PPT presentation

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Title: Interferometer Sensing and Control (ISC)


1
Interferometer Sensing and Control (ISC)
  • Cost and Schedule Breakout Presentation
  • NSF Review of Advanced LIGO Project

Richard Abbott CIT
2
ISC Description Deliverables
  • At a Total Cost of 7.426M, the ISC system
    provides the hardware and software for
  • Sensing and controlling interferometer length
  • Radio Frequency (RF) detectors 4.1 (268k)
  • RF Readout Chain 4.2 (179k)
  • RF Signal Source 4.3.4 (159k)
  • ISC Signal Conditioning Electronics 4.3.2 (327k)
  • Real-time Processing Networking 4.3.1 (469k)
  • ISC Analog-to-digital Converters (ADCs) 4.3.3
    (657k)
  • Real-time Software 4.4 (412k)
  • Diagnostic and Supervisory Software 4.5 (303k)
  • Seismic Platform Interferometer 4.9 (577k)
  • Optical Alignment systems
  • Alignment Sensing Control (ASC) detectors
    (506k)
  • ASC RF Demodulation 4.3.5 (194k)
  • Video Monitoring System 4.6.2 (401k)

3
ISC Description Deliverables (cont.)
  • Readout signals used to search for gravity waves
  • DC Readout detectors (140k)
  • ISC Sensing Tables 4.6.3 (1.314M)
  • Output Mode Cleaner 4.7.1 (303k)
  • Reconfiguring parts of the vacuum envelope
    (740k)
  • Vacuum Detection Infrastructure 4.8 (740k)
  • Fabrication Testing and Validation 4.7 (473k)
  • In Process Spares included in deliverable costing

4
ISC Work Breakdown Structure (WBS Dictionary
Available at http//www.ligo.caltech.edu/advligo/
isc/isc_current_wbs.pdf)
5
ISC Cost by WBS
6
ISC Schedule Highlights
7
ISC Staffing Profile
8
ISC Major Milestones
9
Subsystem Cost Estimating Basis
  • Cost estimating reliant on extrapolation from
    initial LIGO experiences due to custom nature of
    electronics
  • Wherever possible, representative quotes taken
    from industry
  • PCB manufacturing facilities (PCB Express)
  • Circuit board stuffing (Screaming Circuits)
  • Huntington Vacuum etc. for standard vacuum parts
  • Accuglass Vacuum connections
  • Estimates for LIGO designed electronics based on
    repackaging of existing designs wherever
    applicable
  • Travel
  • Estimated based on LIGO 1 experience and
    extrapolated to Advanced LIGO complexity

10
ISC Risks and Concerns
  • Staffing availability
  • Schedule assumes personnel familiar with LIGO
    designs
  • Possible mitigation in improved standards for
    documentation and written processes
  • Training of personnel to expand their roles
  • Use of outside testing facilities
  • Quality Control
  • Historically, this is a point of weakness
  • Efforts to mitigate include
  • Better test procedures
  • Use of unbiased outside testing facilities
  • Better pier review process

11
Safety Practices
  • Laser Safety
  • Laser safety practices will be in accordance with
    standing approved LIGO laser safety practices
  • Electrical Safety
  • Systems with hazardous electrical voltages such
    as photo-diode bias supplies will be designed and
    used in accordance with approved LIGO electrical
    standards and procedures
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