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TLI: Military Logistics

CELDi. The Logistics Institute (TLI). TLI: Military Logistics. Center for Engineering Logistics and Distribution (CELDi). Program Review August 19, 2003 Welcome and Introductions Terri Glaze, Legislative Assistant, Senator Pryor's Washington Office

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TLI: Military Logistics

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  1. CELDi The Logistics Institute (TLI) TLI: Military Logistics Center for Engineering Logistics and Distribution (CELDi) Program Review August 19, 2003 Welcome and Introductions • Terri Glaze, Legislative Assistant, Senator Pryor's Washington Office • Randy Massanelli, Director of Senator Pryor's Little Rock District Office • Nathan McCarroll, Legislative Correspondent for Defense, Senator Pryor's Washington Office • Dr. Arun Seraphin, Senate Armed Services Committee • Lt. Col. Antonio Baines, Army Congressional Liaison • Richard Hudson, Vice Chancellor for Government and Community Relations

  2. Agenda 2:30-3:30 TLI/CELDi Overview 3:30-3:45 Question/Answer 3:45-4:00 Tour Industrial Engineering facilities

  3. CELDi The Logistics Institute (TLI) Center for Engineering Logistics and Distribution (CELDi) A National Science Foundation sponsored Industry/University Cooperative Research Center (I/UCRC) • TheCenter for Engineering Logistics and Distribution (CELDi)is a multi-university, multi-disciplinary National Science Foundation sponsored Industry/University Cooperative Research Center (I/UCRC). Research endeavors are driven and sponsored by representatives from a broad range of member organizations, including manufacturing, maintenance, distribution, transportation, information technology, and consulting. CELDi emerged in 2001 from The Logistics Institute (1994) to provide integrated solutions to logistics problems, through research related to modeling, analysis and intelligent-systems technologies. • Research Program • The Center helps industry partners excel by leveraging their supply chain to achieve a distinguishable, sustainable difference. Through basic research, collaborative applied research with industry, technology transfer, and education, the Center is a catalyst for developing the engineering logistics methodology necessary for logistics value chain optimization. • Value-adding processes that create time and place utility (transportation, material handling, and distribution) • Value-sustaining processes that prolong useful life (maintenance, repair, and rework) • Value-recovering processes that conserve scarce resources and enhance societal goodwill (returns, refurbishment, and recycling) • Academic Partners • University of Arkansas, *Center Headquarters • University of Oklahoma • University of Louisville • Oklahoma State University

  4. CELDi TLI/CELDi Overview • Center research provides creative, leading edge solutions to real-world problems • Sponsors collaborate with research teams • Benefit from shared research solutions • Employment of a systems perspective and an engineering approach

  5. Strategic Areas Supply Chain Management Supply Chain Design Material Handling/Shop Floor Logistics Warehousing & Inventory Control Reverse Logistics Transportation Intermodal operations Intelligent systems Vehicle/Bridge ITS Data mining/fusion Trucking Waterways Enterprise Performance Scalable Systems Techniques OR/Simulation/Optimization Supportability Management Information Technology Sensors and Communications Human Factors/Ergonomics Robotics/Automation Quality/Metrics CoreCompetencies

  6. DoD Related Logistics Partners: TLI/CELDi • Defense Logistics Agency • Naval Supply Command Systems • Pine Bluff Arsenal • Raytheon Systems Company • Red River Army Depot

  7. Commercial Logistics Partners: TLI/CELDi • ABF Freight System Inc. • AT&T • Avaya Inc. • Cargill Inc. • Cobb-Vantress • ConAgra Foods • Global Concepts Inc. • Hytrol Conveyor Co. • Tyson Foods, Inc. • United States Postal Service • Wal-Mart Stores, Inc. • Yellow Freight System

  8. Sample Projects with TLI/CELDi Sponsor: Defense Logistics Agency Title: Inventory Integrity Modeling and Benchmarking Researchers: Terry R. Collins TLI 1999-2000 Title: The Analysis of Inter-modal Choice Combinations and Pre-Positioning Strategies for Military Supplies and Materiel Researchers: Manuel D. Rossetti, Erhan Kutanoglu, Terry Collins, Nancy Sloan, Yeu-San Tee, and Mee-Ching Chow Project #: TLI-AR 00-2 Title: Stock Positioning for Personal Equipment and Spare Parts Inventory in Military Logistical Systems Researchers: Manuel D. Rossetti, Erhan Kutanoglu, Nancy Sloan, Yeu-San Tee Project #: UA 01-05b Title: DLA-DDC Analysis of Military Processing Center Operations Researchers: Manuel D. Rossetti Project #: UA 03-DLA

  9. Sample Projects with TLI/CELDi Sponsor: Naval Supply Systems Command Title: Readiness Based Customer Wait Time Sparing within Manugistics Advanced Planning System Researchers: Manuel D. Rossetti Project #: UA 03-NAVSUP Title: Evaluating Intermittent Spare Parts Forecasting Techniques in Military Supply Chains Researchers: Manuel D. Rossetti Project #: UA04-NAVSUP

  10. Sample Projects with TLI/CELDi Sponsor: Pine Bluff Arsenal Title: Decision Support System for the Pine Bluff Arsenal Researchers: Joshua Buchanan, Cammie Harp, John English, G. Don Taylor Project #: TLI-AR 97-5 Title: Model Development of a Total Integrated Maintenance System Researchers: Julia A. Watson, Earnest W. Fant, and Mia Petre-Ungerank Project #: TLI-AR 00-3a Title: Recommended Process Design Changes; Identification and Resolution of Materials Management Software Tracking Problems and Inventory Reconciliation Researchers: Manuel D. Rossetti, Andres Angulo, Geoffrey Skinner, and Ravi H. Kurgund Project #: TLI-AR 00-3b Title: Development of Productivity-Based Selective Maintenance Strategies Researchers: Earnest W. Fant, C. Richard Cassady, Julia A. Watson, Kellie Schneider, Pingjian Yu Project #: TLI-AR 01-03 Title: Grenade Line Reliability and Maintainability Performance Researchers: C. Richard Cassady Project #: UA 02-04 Title: Incorporating Lean Thinking into Grenade Line Maintenance Researchers: C. Richard Cassady Project #: UA 03-PBA

  11. Sample Projects with TLI/CELDi Sponsor: Red River Army Depot Title: Automated Capacity and Capability Analysis in Repair/Rework Operations Researchers: Earnest Fant, Craig Austin Project #: TLI-AR 97-3 Title: Capacity and Capability Analysis in Repair/Rework Operations Researchers: Earnest W. Fant, Jack C. Winburn, and G. Don Taylor Project #: TLI-AR 96-3

  12. Resulting DoD Collaboration within I/UCRC • Defense Logistics Agency • Scott Rosbaugh, 717-770-8074 • Naval Supply Command Systems • Leigh Ackart, 717-605-7019 • Pine Bluff Arsenal • Emami Esmaeilpour, 870-540-2911 • Raytheon Systems Company • Mark Ward, 972-344-5607 • Red River Army Depot • Michael Starks, 903-334-2601

  13. Federal Appropriation: Background • Based on research experience and collaboration with current/past I/UCRC members • Pursued multi-year appropriation to support military logistics research • History: • Congressional office visits • Beginning in mid-90’s • UA representatives • Chancellor, Provost, John English, Rick Malstrom, Van Scoyoc Associates, Inc. • Resulting in sufficient support for appropriation request

  14. AFRL Effort • Military Logistics • 2002 Appropriation 1 - $1M • 2003 Appropriation 2 - $1M • 2004 Proposed Appropriation 3 - $2M • Movement of Funds: 1st Year • DoD Appropriation: Approved January 2002 • Pentagon: Found good fit in AFRL • Human Effectiveness Directorate in AFRL • Subsequent Appropriations • Direct to AFRL

  15. Research Partner • Air Force Research Laboratories (AFRL) • Human Effectiveness Directorate • Barbara Masquelier, Chief, Logistics Readiness Branch Deployment and Sustainment Division, Human Effectiveness Directorate (937-656-7005) • Gerald Baker, Program Manager at AFRL/HESR (937-656-4316) • Contracting Agent • Northrop Grumman Information Technology (NGIT) • John Jacobs, Research Solutions Department Adv. Systems Division, Science & Technology Operating Unit, Defense Enterprise Solutions Business Unit (937-431-6005)

  16. Programmatic Areas • Statistical Methods and Modeling (SMM): TLI is developing new statistical methods needed to drive novel statistical thinking as excessively large or very small data sets are identified in relationship to resource management and optimization of complex communication and logistics networks. • Battlefield Simulation and Intelligent Tracking (BSIT): TLI is exploiting the power of computer simulation, fuzzy modeling and fuzzy inference to support DoD’s needs for computationally efficient approaches for battlefield simulation and intelligent tactical and logistical information systems. • Advance Technology Applications (ATA): TLI is utilizing technologies, such as smart chip/card technologies, data mining of large logistics data sets, data visualization concepts and tools, and site planning and scheduling capabilities, to develop, identify, and deploy information technology into the management of logistics operations. Furthermore, these applications will dramatically improve world-wide command and control of logistics management. • Mathematical Modeling (MM): To accurately model the complex interaction of humans and machines common to Air Force transportation systems, manufacturing, command and control systems, and battlefield management, TLI is developing new mathematical models that have the flexibility to handle incomplete, conflicting and overlapping criteria. These models will reflect the total life cycle to aid in optimal repair/replace decisions for weapons systems by providing more accurate methods of system diagnosis and prediction of component failures. This will support the Air Force’s ability to meet Air Expeditionary Force requirements. • Performance Measurement Development (PMD): We are improving the integration of the Department’s strategic plan to mission outcomes by creating holistic qualitative and quantitative goals and measures for the Department’s annual performance report. Such improvements will provide immeasurable improved efficiency to the Department. TLI is uniquely qualified to support DoD in designing an optimal performance measurement system that integrates high-level objectives with operational and tactical metrics that will drive new decision support aids and support real-time process tracking mechanisms.

  17. AFRL ‘02 Research Agenda • ‘02 Projects • MM0206 - Quantifying the Impact of Aircraft Cannibalization • PMD0204 - The Use of Decision Models in the Development of a Collaborative Integrated Solutions System • MM0202 - Fleet-Level Selective Maintenance and Aircraft Scheduling • BSIT0204 - Multi-Mission Selective Maintenance Decisions • MM0205 - Quantifying the Effect of Commercial Transportation Practices in Military Supply Chains • BSIT0201 - Hybrid Simulation/Analytic Models for Military Supply Chain Performance Analysis • ATA0201 - Commercial Practices as Applied to Total Asset Visibility (TAV)

  18. ‘02 Project #1 • MM0206 - Quantifying the Impact of Aircraft Cannibalization • PI: C. Richard Cassady • Collaborators: Jim McManus, AFRL/HESS and Ed Pohl, U.S. Military Academy • Status: on-schedule

  19. ‘02 Project #2 • PMD0204 - The Use of Decision Models in the Development of a Collaborative Integrated Solutions System • PI: Terry R. Collins • Co-PI: Heather L. Nachtmann • Collaborators: Barbara Masquelier, AFRL/HESR and Matt Goddard, AFRL • Status: on-schedule

  20. ‘02 Project #3 • MM0202 - Fleet-Level Selective Maintenance and Aircraft Scheduling • PI: C. Richard Cassady • Co-PI: Scott J. Mason, Justin Chimka • Collaborators: Jim McManus, AFRL/HESS and Ed Pohl, U.S. Military Academy • Status: complete

  21. ‘02 Project #4 • BSIT0204 - Multi-Mission Selective Maintenance Decisions • PI: C. Richard Cassady • Co-PI: Heather L. Nachtmann • Collaborators: Matt Goddard, AFRL and Ed Pohl, U.S. Military Academy • Status: on-schedule

  22. ‘02 Project #5 • MM0205 - Quantifying the Effect of Commercial Transportation Practices in Military Supply Chains • PI: Manuel D. Rossetti • Co-PI: Scott J. Mason • Collaborators: Jerry Baker, AFRL • Status: on-schedule

  23. ‘02 Project #6 • BSIT0201 - Hybrid Simulation/Analytic Models for Military Supply Chain Performance Analysis • PI: Manuel D. Rossetti • Collaborators: Jerry Baker and Jim McManus, AFRL • Status: on-schedule

  24. ‘02 Project #7 • ATA0201 - Commercial Practices as Applied to Total Asset Visibility (TAV) • PI: Scott J. Mason • Co-PI: Justin Chimka, University of Arkansas and Michael Greiner, USAF • Collaborators: Jim McManus, AFRL/HESS • Status: on-schedule

  25. Proposed AFRL ‘03 Research Agenda • Proposed ‘03 Projects • BSIT0301 - Modeling Sortie Generation, Maintenance, and Inventory Interactions for Unit Level Logistics Planners • SMM0301 - Maintenance Decision-Making under Prognostic and Diagnostic Uncertainty • MM0303 - Quantifying the Impacts of Improvements to Prognostic and Diagnostic Capabilities • MM0302 - Multi-State Selective Maintenance Decisions • PMD0302 - Quantification of Logistics Capabilities

  26. ‘03 Project #1 • BSIT0301 - Modeling Sortie Generation, Maintenance, and Inventory Interactions for Unit Level Logistics Planners • PI: Manuel D. Rossetti • Co-PI: Raymond R. Hill, WSU and Dr. Narayanan (collaboration with AFIT) • Collaborators: David Lemery, AFRL/HESR • Status: proposed

  27. ‘03 Project #2 • SMM0301 – Maintenance Decision-Making under Prognostic and Diagnostic Uncertainty • PI: C. Richard Cassady • Co-PI: Heather L. Nachtmann • Collaborators: Ed Pohl, U.S. Military Academy • Status: proposed

  28. ‘03 Project #3 • MM0303 –Quantifying the Impacts of Improvements to Prognostic and Diagnostic Capabilities • PI: C. Richard Cassady • Collaborators: Ed Pohl, U. S. Military Academy • Status: proposed

  29. ‘03 Project #4 • MM0302 - Multi-State Selective Maintenance Decisions • PI: C. Richard Cassady • Co-PI: Scott Mason • Collaborators: Ed Pohl, U. S. Military Academy • Status: proposed

  30. ‘03 Project #5 • PMD0302 - Quantification of Logistics Capabilities • PI: Heather L. Nachtmann • Co-PI: Manuel D. Rossetti and Justin Chimka • Collaborators: Matt Goddard, AFRL/HESR • Status: proposed

  31. Resulting Interaction within DoD

  32. CELDi Center for Engineering Logistics and Distribution • CELDi provides creative, leading edge solutions to real-world problems • Return on investment • Member companies collaborate with research teams • Member companies benefit from shared research solutions • Employment of a systems perspective and an engineering approach

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