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Detroit Deicing Decision Support Tool

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NASA Langley Research Center, under contract DTRS57-03-C-10014. Northwest Airlines ... Northwest Airlines, 'Weather Categories,' internal document. 14. Model ... – PowerPoint PPT presentation

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Title: Detroit Deicing Decision Support Tool


1
Detroit DeicingDecision Support Tool
  • Jonathan T. LeeDTS-53, Surveillance and
    Assessment Division
  • CTUGApril 18, 2006

2
Acknowledgement
  • NASA Langley Research Center, under contract
    DTRS57-03-C-10014
  • Northwest Airlines
  • System Operations Control Center, Minneapolis
  • Detroit ramp tower
  • Volpe Center
  • Michael Geyer
  • Jack Perkins (deceased)
  • Anastasios (Chris) Daskalakis
  • Suzanne Chen
  • Jonathan Lee

3
Outline
  • Overview and Problem Statement
  • Model Description
  • Simulation Results
  • Future Work

4
Project Overview
  • Started in October 2003
  • 2 Labor Years
  • 350K Budget
  • Publications/Presentations
  • 2005 Digital Avionics System Conference
  • 2005 Air Traffic Control Association Annual
    Conference Proceedings
  • 2005 Integrated CNS Conference Workshops
  • 2004 Digital Avionics System Conference
  • Patent pending

5
Deicing Overview
  • Motivation
  • Decrease impact of snow and ice on air carrier
    and airport operations
  • Issues
  • Non-linear mapping between initial conditions and
    total system time (total time in queue and in
    deicing pad)
  • Deicing pad configurations
  • A/C sequence
  • Optimal utilization of scarce resources
  • Benefits
  • Maximize predictability
  • Minimize operating cost
  • Reduce environmental impact

6
Detroit (DTW) Map
Deicing Pad 3L
Deicing Pad 4R
7
Objective
  • To assist in determining the deicing pad to send
    the outbound aircraft (A/C) to minimize the total
    time in queue and at the deicing position, given
    the current conditions and type of aircraft at
    the respective deicing pads. (Think supermarket
    checkout lines.)

Snow Type X
8
Outline
  • Overview and Problem Statement
  • Model Description
  • Simulation Results
  • Future Work

9
Deicing Queuing Model
  • Queuing Model
  • Parameters
  • Taxi Time Statistics
  • Pad Time Statistics
  • Pad Configuration


Exponential/LogNormal
Gaussian
10
Deicing Queuing Model
  • Queuing Model
  • Inputs
  • Type of A/C in deicing positions
  • Type of A/C and order in queue
  • Type of snow event


11
Aircraft List
B747
A330/DC-10
B757
A319/A320
DC-9
RJs(RJ-85, CRJ, Saab-340)
12
DTW Deicing Pads Configuration
  • Deicing Pad 4R
  • Deicing Pad 3L

13
Snow Types
Northwest Airlines, Weather Categories,
internal document.
14
Model Parameters
S.D. is only valid for Gaussian distribution.
15
DTW Deicing DST, Build 2
16
Outline
  • Overview and Problem Statement
  • Model Description
  • Simulation Results
  • Future Work

17
A320 Capable Positions
  • Deicing Pad 4R
  • Deicing Pad 3L

18
Outbound A/C A320
19
Snow Type A vs. C
20
A320 Capable Positions
  • Deicing Pad 4R
  • Deicing Pad 3L

21
B757 Capable Positions
  • Deicing Pad 4R
  • Deicing Pad 3L

22
Outbound A/C A320 vs. B757
23
Order of Queue
24
Outline
  • Overview and Problem Statement
  • Model Description
  • Simulation Results
  • Future Work

25
Future Directions
  • Detroit Deicing DST
  • Real-Time Surveillance Data
  • Strategic Decision Making
  • Other Locations
  • Other Surface Planning Tool
  • Louisville Integrated Arrival Planning Tool
  • NASA Airportal Project

26
Deicing DSTTechnical Future Directions
  • Real-Time Surveillance Input
  • Type of A/C in position
  • Elapsed time in position
  • Type of A/C in queue
  • Type of A/C departing from gate and runway
    assignment
  • Holdover time for deiced A/C
  • Runway queue
  • Real-Time Prediction of System Time
  • Real-Time Performance Monitor
  • Strategic Decision Making Multiple Departing A/C
    and Optimal Ordering and Dispatch
  • Other Locations

27
Backup Slides
28
Outline
  • Overview and Problem Statement
  • Model Description
  • Validation Results
  • Simulation Results
  • Future Work

29
Modeling Overview
  • Mathematical Methods
  • Deicing queuing model
  • Monte Carlo simulation
  • Metrics
  • Average total system time (queue and deicing)
  • Confidence interval on total system time
  • Model Elements
  • Deicing process
  • Spray time
  • Taxi time from queue to deicing position
  • Pad configuration

30
Model Parameters
Mean Time
Snow
Type A
Type B
Type C
Type D
Type E
B747
A330/DC10
B757
10.98
8.91
16.93
22.87
22.75
Pad
A319/A320
10.72
9.25
14.93
18.15
19.82
DC9
10.04
8.78
14.30
16.39
19.79
RJs
9.42
6.65
11.95
7.47
13.50
Standard Deviation
Snow
Type A
Type B
Type C
Type D
Type E
B747
A330/DC10
B757
4.75
2.70
7.95
10.89
8.40
Pad
A319/A320
4.16
3.83
7.91
9.16
8.50
DC9
4.44
2.61
7.16
6.94
7.95
RJs
3.93
1.29
6.18
0.13
4.89
31
Outline
  • Overview and Problem Statement
  • Model Description
  • Validation Results
  • Simulation Results
  • Future Work

32
Pad Time Validation
  • Eliminated outliers
  • Pad Time
  • Pad Time 60 min.
  • Normality tests on log(Pad Time)
  • parametric test (e.g. Chi-square test) or
  • non-parametric test (e.g., Kolmogorov-Smirnov
    test)
  • Pad Time under all non-widebody A/C and snow
    types passes, at least one, normality test

33
Example of LogNormal Result
After Transformation
Before Transformation
DC-9, E-snow events
34
Outline
  • Overview and Problem Statement
  • Model Description
  • Validation Results
  • Simulation Results
  • Future Work

35
Widebody Capable Positions
  • Deicing Pad 4R
  • Deicing Pad 3L

36
Oversized Outbound A/C
37
Recent Updates
  • Deicing Pad Re-Configuration
  • Customize max A/C size
  • Additional deicing positions
  • Widebody A/C deicing (any two adjacent and open
    deicing positions at 4R deicing pad)
  • Spray Time Re-Configuration
  • Deicing Position Shutdown
  • Model Validation

38
Configurable Deicing Pad
39
Configurable Spray Time
40
Position Shutdowns
41
Position Shutdown 6 vs. 4
6 Open Positions/Pad
4 Open Positions/Pad
42
Project Status
  • Deicing tool validation on going
  • Collaboration with Sensis Corp. under
    negotiation
  • Deicing kick-off meeting under discussion
  • Patent application file April 10, 2006
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