A Vital Role for MPOs Regional Operations in the 21 st Century.

Slides:



Advertisements
Similar presentations
General Update March Background As the region grows, increased travel demand on our aging Metro Highway System will continue to create additional.
Advertisements

1 The Role of Bus Transit in the Regional Transportation, Present and Future Howard Benn, Chair, TPB Regional Bus Subcommittee TPB Regional Priority Bus.
December 3, 2014| Nadine Navarro Manager, Smart Commute, Metrolinx NEW DIRECTIONS FOR SMART COMMUTE, METROLINX.
Wade E. Kline, AICP Community Development Planner.
CALTRANS’ TRANSPORTATION SYSTEM MANAGEMENT & OPERATIONS CTP 2040 PAC 1 Kris Kuhl Assistant Division Chief, Division of Traffic Operations 4/15/2014 CREATING.
Joe Olson SW Region Director December 8,  History/Background  Next Steps (Planning & Environmental Linkages (PEL)  PEL Process  Schedule  Questions.
Operations / ITS Provisions in SAFETEA-LU What’s in There and What’s Not Jeff Lindley Operations / ITS Discipline Meeting August 16, 2005.
Transportation Data Palooza Washington, DC May 9, 2013 Steve Mortensen Federal Transit Administration Data for Integrated Corridor Management (ICM) Analysis,
2040 Metropolitan Transportation Plan Final Approval GVMC Board May 7, 2015.
Chapter 5 1 Chapter 5. The Transportation- Planning Process 1.Explain how travel demand modeling fits into the transportation-planning process 2.Explain.
Operations Planning Organizing for Travel Time Reliability Ohio Planning Conference July 15, 2014.
1 Status Report on the Bus Systems in the National Capital Region Report of the Regional Bus Subcommittee to the Access for All Advisory Committee April.
Executive Session MPO Leadership April 21, 2005 Association for Metropolitan Planning Organizations (AMPO) Under a Grant from the Federal Highway Administration.
1 SAFETEA: Transportation System Management, Operations and ITS Jeffrey F. Paniati Associate Administrator, Office of Operations Federal Highway Administration.
Regional Operations in the 21 st Century A Vital Role for MPOs.
AASHTO Subcommittee on Rail Transportation Sept. 18, 2012 Kevin Chesnik.
Operations in the 21st Century DOT Meeting Customers Needs and Expectations 1.
AASHTO SCOP Linking Planning to Programming P2P Link Rural Transportation Summit January 16, 2014 ADOT Vision and Long-Range Plan Planning to Programming.
U.S Department of Transportation Federal Highway Administration Federal Transit Administration MAP-21 Moving Ahead with Progress in the 21 st Century Linking.
Ohio Transportation Planning Conference July 16, 2014.
Incorporating Management and Operations and the Congestion Management Process into Metropolitan Transportation Planning FHWA/FTA Webinar June 24, 2008.
MnDOT-ACEC Annual Conference March 5,  Capital planning and programming at MnDOT  Major considerations  A more transparent and collaborative.
TSM&O FLORIDA’S STATEWIDE IMPLEMENTATION Elizabeth Birriel, PEElizabeth Birriel, PE Florida Department of TransportationFlorida Department of TransportationTranspo2012.
BPAC. “Congestion management is the application of strategies to improve transportation system performance and reliability by reducing the adverse impacts.
Pat Bursaw, Minnesota DOT International Partnership Meeting Washington D.C. January 26, 2012.
Dixie Regional ITS Architecture Project Summary July 31, 2006.
Presentation to ***(group) on ***(date) 1.  Cities - 11  Highway districts – 3  Ada and Canyon Counties  School districts – 2  Valley Regional Transit.
Meeting Customers Needs And Expectations Operations in the 21 st Century DOT.
1 Transportation Policy and Performance: The challenges and opportunities of performance-based programs Deputy Administrator Therese McMillan Federal Transit.
Managed Lanes CE 550: Advanced Highway Design Damion Pregitzer.
US DOT Planning for Operations Initiative – An Update AASHTO SCOH Annual Meeting June 14-17, 2009 Manchester, NH Rick Backlund – FHWA Office of Operations.
0 Christopher A. Pangilinan, P.E. Special Assistant to the Deputy Administrator Research and Innovative Technology Administration, ITS Joint Program Office.
Managing Travel for Planned Special Events: What, Why, & Benefits Walt Dunn, P.E. Dunn Engineering Associates, P.C. Talking Operations Seminar January.
Engaging State DOT’s Engaging State DOT’s 2008 ITS America State Chapters Council Annual Meeting and State Chapters Strengthening Workshop Bernie Arseneau,
Chapter 5 1 Chapter 5. The Transportation- Planning Process 1.Explain how travel demand modeling fits into the transportation-planning process 2.Explain.
Metro’s Capital Improvement Needs Presented to the National Capital Region Transportation Planning Board By Tom Harrington, Director of Long Range Planning.
Transportation leadership you can trust. presented to Safety Data Analysis Tools Workshop presented by Krista Jeannotte Cambridge Systematics, Inc. March.
MIT - October 1, 2004Jeffrey D. Ensor 1 RSTP Planning for Operations Jeffrey D. Ensor Malaysia Transport Group M.I.T. October 1, 2004.
1 Using Intelligent Transportation Systems (ITS) Technologies and Strategies to Better Manage Congestion Jeffrey F. Paniati Associate Administrator of.
U.S. Department of Transportation Federal Highway Administration DOT Livability Initiative Smart Mobility Framework Workshop June 16, 2009 Presented by:
Context and Priorities April 9,  Why FHWA Focuses on Improving Operations  FHWA Operations Program Areas  Key Current Program Priorities.
Freight-21: A National Strategic Freight Mobility Program & Trust Fund Coalition for America’s Gateways and Trade Corridors.
30-Year National Transportation Policy Framework to the Future September 12,
Regional Concept for Transportation Operations: An action plan to address transportation operations in Southeast Michigan Talking Technology & Transportation.
Submission Document went to cabinet … Planning for the Future Core Strategy and Urban Core Plan (the Plan) is a key planning document and sets out the.
NTOC National Summit November 7, 2011 Washington, DC Aliyah Horton Douglas E. Noble, P.E., PTOE Aliyah Horton Douglas E. Noble, P.E., PTOE Operations:
Integrated Corridor Management Initiative ITS JPO Lead: Mike Freitas Technical Lead: John Harding, Office of Transportation Management.
Operations in the 21 st Century DOT Meeting Customers Needs And Expectations.
1 Status Report on the Bus Systems in the National Capital Region Report of the Regional Bus Subcommittee to the National Capital Region Transportation.
Transportation System Management & Intelligent Transportation Systems May 5, 2009 Steve Heminger Metropolitan Transportation Commission.
Transportation Systems Management and Operations: Why It Matters Presenter Name Date AGENCY LOGO Photo: © Shutterstock.com/iofoto ( )
Intelligent and Non-Intelligent Transportation Systems 32 Foundations of Technology Standard 18 Students will develop an understanding of and be able to.
ADVANCED TRANSPORTATION AND CONGESTION MANAGEMENT TECHNOLOGIES DEPLOYMENT (ATCMTD) PROGRAM 1 Bob Arnold, Director Office of Transportation Management,
2040 LONG RANGE PLAN UPDATE Congestion Management Process Plan (CMPP) Major Update February 24, 2016.
TSMO Program Plan Development Roundtable
Effectiveness of Funding Mechanisms and
Project Overview – Phase 1
What is the Regional Transportation Plan?
Going beyond LOS: Towards a Performance Measure Framework for State DOTs January 9, 2016.
Overview of Climate Resilience in Transportation Planning October, 2017 Savannah, GA Jill Stark, FHWA, Office of Planning.
Chapter 5. The Transportation-Planning Process
Transportation Task Force Mission and Vision
MODULE 5: TSMO to Improve Reliability
MODULE 2: TSMO Strategies
What is TSMO? TSMO encompasses a broad set of strategies that aim to optimize the safe, efficient, and reliable use of existing and planned transportation.
What is TSMO? TSMO encompasses a broad set of strategies that aim to optimize the safe, efficient, and reliable use of existing and planned transportation.
MODULE 2: TSMO Strategies
MODULE 11: Creating a TSMO Program Plan
MODULE 5: TSMO to Improve Reliability
Module 2: TSMO Strategies
Presentation transcript:

A Vital Role for MPOs Regional Operations in the 21 st Century

Purpose of This Meeting: Share Thoughts & Discuss Challenges brought about by the changing transportation environment and MAP 21 How “operations” and supporting technologies can help address these challenges The importance of “mainstreaming” operations into the regional planning and programming processes o “Planning for Operations” – an objectives-driven, performance-based approach 2

Transportation Systems Management and Operations (TSMO, TSM&O) “Integrated strategies to optimize the performance of existing infrastructure through the implementation of multimodal and intermodal, cross-jurisdictional systems, services, and projects” (MAP 21) Regional integration an important consideration o Many strategies are multi-modal o All require inter-agency collaboration, including coordinating with enforcement and first responders What is Operations?

Example Operations Strategies and Solutions Work Zone Management Traffic Incident Management Special Event Management Road Weather Management Transit Management Freight Management Traffic Signal Coordination Traveler Information Ramp Management Managed Lanes Active Traffic Management Integrated Corridor Management 4 Implemented and operated by transportation agencies (State DOT, transit agency, local DOT) on a day-to-day basis.

5 Increased reliance on information and technology Increasing customer needs and expectations Growing emphasis on outcomes and performance measurement MAP 21 requirements Reduced financial resources Technology also offers opportunities – enhanced operations and regional multi- modal integration The Transportation Environment is Changing

(Source: Portland TriMet) Increased availability of information o Internet connectivity, wireless communications, cloud computing o Information is available 24/7 on mobile devices Customers’ perception: technology can improve efficiency and service The future – even more innovative technologies and a shorter shelf life o New data services o Connected / autonomous vehicles Technology Is Transforming Our World

7 Public’s expectations of government o Increased productivity and efficiency o Greater demand for accountability – value expected from the use of tax dollars and transit fares o Transportation network viewed as a “whole”; not concerned with which agency owns the facility Improved performance and service for commuter, freight, recreational, and other trips: o Mobility including reduced delays and congestion o Safety o Accurate, timely, and accessible information o Reliability (a focus of SHRP 2 program) Customer Expectations and Needs are Changing

Performance Measures 8 Safety Infrastructure Condition Congestion Reduction System Reliability Freight Movement and Economic Vitality Environmental Sustainability Reduced Project Delivery Delays Element of increased accountability “The game gets serious when you start to keep score!” Increasing focus on outcomes – improvements in safety, mobility, reliability, on-time performance, emissions, etc. Emphasized in MAP 21 Goals and associated measures being established for:

MAP 21 and Performance Based Planning MPOs and State DOTs must consider projects and strategies as part of their planning process that promote efficient operations Metropolitan planning processes will use a performance-based approach to transportation decision making o Plan will include performance measures, targets, and system performance report o TIP will link investment priorities to performance targets in Plan to extent possible 9

Average Sales Weighted MPG Increased fuel efficiency o New CAFE standards o Emerging fleet of electric vehicles and plug-in hybrids pay no fuel tax MUST DO MORE WITH LESS Decreasing fuel tax revenues going into Trust Fund No change in the federal gas tax since 1993 o Predictions that fund will become insolvent soon Increasing Financial Constraints

11 Leverage Technology Preserve and maximize existing capacity Enhance safety Promote mobility and customer outreach Improve reliability for commuters and freight Enhance sustainability and livability Monitor performance Implement quickly at relatively low cost Help achieve regional goals Operations Can Help Address These Challenges

12 Regional Goals Incident Management Transit Management Traffic Signal Coord. Traveler Information ATM – Variable Speeds Managed Lanes Integrated Corridor Mobility Reliability Safety Environment Benefits From Operations

13 Operations StrategyExample Benefits Variable Speed LimitsCrashes reduced 10-30% Secondary crashes reduced 50% Improved reliability Hard Shoulder RunningTravel times reduced up to 25% No impact on safety Ramp MeteringCrashes reduced 15-40% Travel times increased 10% + Transit Signal PriorityBus times improved % Minimal impact to side streets Adaptive Signal ControlDelay reduced 4-40% Integrated CorridorEstimated B/C of 5-10 : 1 Operations in Support of Mobility and Safety

14 Examples of Environmental Benefits Traffic signal control: Emissions reduced 3-22% Congestion mitigation strategies (e.g., incident management): CO2 reduced 7-12% Variable speed displays: CO2 reduced 10-20% Operations and ITS support “eco driving” measures Promotes the entire “triple bottom line” Economic o Improved mobility and reliability Social o Enhanced safety Environmental o Reduced emissions and GHG Operations in Support of Sustainability

15 Addresses safety Helps provide range of transportation choices o Multi-modal traveler information o Connecting the modal pieces (ICM) Supports fast, frequent, and dependable public transportation Enhances the environment o Reduced emissions including GHG Supports travel demand management (TDM) approaches o Traveler information, managed lanes, and pricing Operations in Support of Livability

Operations in Support of Climate Adaptation Extreme WeatherSupporting Operations / ITS Hot Days (buckling pavements, cars overheating, wildfires)  ATM (variable speed limits)  Incident management  Work zone management Rising Sea Levels / Storm Surge  Traveler information  Roadway / transit diversions Increased number / intensity of precipitation events  ATM (variable speed limits)  Incident management Increased Hurricane and Super Storm Frequency  Contra-flow operations  Ramp management / closures  Integrated Corridor Management along evacuation routes Resiliency Operations Critical Before and After Weather Event

17 Causes of Congestion (Source: FHWA) Predict future (long range) traffic volumes Fund major capital projects to provide additional capacity This only addresses 40% of the congestion problem Also becoming more and more difficult to provide new capacity Traditional Approach to Managing Transportation

New construction will continue to be important. But we can’t build our way out of congestion! Core attributes of planning process (LRTP, TIP); have been for decades Operations should be integrated into the traditional planning & programming processes “Mainstreaming” Building the necessary infrastructure Keeping in a state of good repair (maintenance & reconstruction) Operating and managing the infrastructure on a day- to-day basis Providing Effective, Safe and Reliable Transportation

Develop and program operations strategies based on regional goals, objectives & performance measures Enhance the process so that operations investments are on par with construction & preservation funding. Help meet requirements of MAP 21 (i.e., “promote efficient operations”) “Planning for Operations” – a joint effort between planners & operators to merge operations into traditional planning and programming Mainstreaming Operations

20 “Objectives – Driven Performance Based Approach” Multi-modal collaboration between agencies and jurisdictions, and between planners and operators Focus on regional goals, objectives and specific outcomes o Not just implement a project or solve a location-specific problem. Prioritize investments to achieve operations objectives and improve transportation system performance Include operations strategies and supporting technologies in Transportation Plans and TIP Demonstrate accountability through performance measures Key Attributes of Planning for Operations

21 Objectives – Driven Performance Based Approach

22 Operations objectives are developed through collaboration with a broad range of regional participants and reflect regional values S pecific. Sufficient to guide approaches M easurable. Quantitative/qualitative measurement A greed. Consensus among partners R ealistic. Can be accomplished with available resources T ime-Bound. Identified time-frame for accomplishment Associated performance measures are outcome - based SMART Operations Objectives

23 Operations is a critical component for managing the transportation network on a daily basis. o Enhance mobility, reliability, safety, and environment o Provide a sustainable transportation network o Support a performance-based approach, focusing on outcomes o Achieve quick and cost-effective implementation To be successful, operations need to be “mainstreamed” into the regional planning and programming processes and documentation You have an important role to play in this regard. Summary

Significant collaboration Consideration on non- recurring congestion & operations An objectives-driven approach Performance based focus on outcomes Network and region-wide applications Include on-going costs for operations & maintenance Needed (In Addition) Long term Capital investment Project orientation Capacity deficiencies Link improvements Environmental impacts Recurring congestion (from forecasts) Traditional Focus Help Mainstream Operations into the Planning Process

25 Demonstrate commitment and involvement – today’s issues require regional approaches Support the mainstreaming of operations o Develop a Regional Operations Plan and objectives o Integrate operations into the CMP and TIP Empower the people in your respective agencies who can make it happen and give them the resources they need. If you need assistance – Contact: FHWA: Steve Clinger AASHTO: Gummada Murthy Next Steps

Questions

27 ADDITIONAL SLIDES AS APPROPRIATE

28JEn Planning for travel variability has costs for users, including individuals, transit operators, freight and their end users Consistency or dependability in travel times As measured from day to day, or across different times of day Less tolerance for unexpected delays What is “Reliability”?

Automated Vehicle Location (AVL) Computer Aided Dispatch (CAD) Automatic Passenger Counting (APC) Bus Rapid Transit (BRT) Transit Signal Priority (TSP) Transfer Connection Protection Automated Fare Media Example Benefits AVL / CAD improved schedule adherence by 9 – 23% TSP improved bus travel times by 2 – 15% (minimal impact on side street traffic) Transit Management