Smart Cities & Integrated Corridors: from Automation to Optimization



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Smart Cities & Integrated Corridors: from Automation to Optimization Presentation to the National Rural ITS Conference August 28, 2013 Cary Vick, Director of Business Development; Smart Mobility for Smart Cities

Agenda Smart Cities & Smart Communities Market Drivers Technology as an Enabler USDOT Integrated Corridor Management (ICM) Program Automation to Optimization Q&A 2

Schneider Electric the global specialist in energy management Balanced geographies FY 2011sales billion sales (last twelve months) of sales in new economies (last twelve months) North America 23% Rest of World 18% Western Europe 32% Asia Pacific 27% people in 100+ countries of sales devoted to R&D Diversified end markets FY 2011 sales Utilities & Infrastructure 24% Industrial & machines 22% Data centres 16% Non-residential buildings 29% Residential 9% 3

The Global Energy challenge Cities today and by 2050 Earth s surface World population World population Global energy consumption Global CO 2 emissions Years to double the urban capacity developed over the past 4000 years will take place in Cities 4

As cities grow, so do their challenges Scarcity of resources Aging and overloaded infrastructure Reduce costs & manage debt Traffic congestion Environmental targets & pollution Attract global investment, jobs, talent crimes of long term sustainability! 5

Mobility Challenges - By the Numbers 34 hours of delay per commuter per year (14 hours more than 1982) 10.5 billion world population by 2050 $100 billion cost of delay per year ($750 per commuter and growing; by 2015 will be $133B total and $900 per commuter) 40% of total delay outside of typical rush hours (making it harder to avoid congestion) Source: 2011 Urban Mobility Report, Texas Transportation Institute By 2050, cities will be home to an astounding 70 per cent of our population, necessitating more urban infrastructure. Source: World-Population-1800-2100 - Wikipedia 6

Cities need to become smarter Urban efficiency delivers liveability and sustainability Increasing competitiveness Creating jobs Delivering clean, connected growth Improving attractiveness for residents, citizens and visitors Improving the efficiency of the city s underlying urban infrastructures Becoming a better place to live, work and play Improving public services: schools, safety, transportation 7

5 steps to smart Set the vision: an efficient + liveable + sustainable city. Combine hardware + software solutions to improve the efficiency of urban operating systems Bring in integration to improve overall city efficiency (operation & information). Add innovation to make a holistic sustainable future a reality. Drive collaboration between best-in-class global and local players across the whole Smart City value-chain. 8

6 areas of infrastucture Smart Energy Smart Mobility Smart Water Smart Public Services Smart Buildings & Homes Smart Grid Automation & Flexible Distribution Smart Metering Management & Demand Response Renewables Integration & Micro Grid Real-Time Smart Grid Software Suite Gas Distribution Management EV Charging Infrastructure & Supervision Services Traffic Management Tolling & Congestion Charging Integrated Mobility Public Transit Traveler Information Distribution Management & Leak Detection Power, Control & Security Systems integration Stormwater management and Urban Flooding Public Safety Video Surveillance Emergency management Digital City Services egovernment Education Healthcare Tourism Street Lighting management High-performance Buildings* Energy Efficiency & Security solutions Energy Services Efficient Homes Home Energy management Connection to the Smart Grid Smart Connections Power, Security, Building, IT, & Process Management Systems integrated Architecture Integrated Mobility Management Platform Security Systems & Management Energy & Environment Management Information System Weather Intelligence * Hospitals, industrial facilities, datacenters and commercial buildings 9

Smart City Architecture Systems Engineering Process People Processes Technologies City Protocol Standards Performance Metrics 10

U.S.DOT s Integrated Corridor Management Initiative Blazing Trails in Congestion Management ICM will help manage congestion by: Optimizing existing transportation infrastructure along a corridor. Enabling travelers to make informed travel decisions and dynamically shift mode. Reducing travel times, delays, fuel consumption. Increasing travel time reliability and predictability.

U.S.DOT s Integrated Corridor Management Initiative San Diego, CA (I 15) Dallas, TX (US 75) Pioneer Sites Dallas, TX Houston, TX Minneapolis, Montgomery County, MD Oakland, CA San Antonio, San Diego, CA Seattle, WA

Dallas ICM Project Scope US 75 - Freeway with Frontage Roads Managed HOV lanes Dallas North Tollway 167 Miles of Arterials DART Bus Network DART Light Rail DART Park & Ride Lots 900+ Signals Multiple Agencies / TMCs Regional ATIS / 511 Decision Support System 13

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Dallas ICM Strategies Advanced Traveler Information (all scenarios) Better pre-trip, en-route, and multi-modal information Route Diversion Strategy (minor incident) Diverts traffic to parallel frontage roads Route Diversion Strategy (major incident) Diverts traffic to frontage road and strategic arterials Mode Diversion Strategy (major incident) Diverts travelers to DART Red Line Combined Route and Mode Diversion Strategy Diverts travelers to frontage roads, strategic arterials, and DART Red Line 15

ICM Benefits Minneapolis Dallas San Diego Annual Travel Time Savings (Person- Hours) 740,000 132,000 246,000 Improvement in Travel Time Reliability 3% 4.4% 10.6% Gallons of Fuel Saved Annually 981,000 17,600 323,000 Tons of Mobile Emissions Saved Annually 9,400 175 3,100 10-Year Net Benefit $104M $264M $82M Benefit-Cost Ratio 20:1 22:1 10:1 Source: USDOT; AMS Results 16

Solution Categories Traffic Management Electric Vehicle Charging Infrastructure Tolling & Pay-As-You-Drive Traveler Inforrmation Transit Management Smarter Mobility Solutions Key Benefits Better City Management Better management of multi-modal transit network and increased resiliency to disruptions Increased Sustainability Reduction of traffic congestion, increased public transit use & lower emissions Improved City Services Better transit information and facilitation of easier travel across modes of transport 17

Multi-Agency Collaboration Smarter Cities; Smarter Communities; Smarter States Mobility management is inherantly multi-agency Collaboration is better than centralized control Areas of Responsibility fixed & dynamic Work Flow Management for optimal group decision making & response 18

Proactive Mobility Management Operational Strategies based on Regional Goals & Policies Arterial Management Expressway Management Public Transport Priority Management Predictive Analytics Traveler Information Dissemination Managed Lanes: HOV HOT ATM Weather Forecasts & Air Quality Alerts Performance Monitoring for Optimal Results 19

Decision Support System 20

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Business Intelligence Dashboards Real-time status & trend data visible to all Can only manage what you can measure Continuous improvement in key performance indicators (KPIs) Optimal use of limited resources 22

Questions?? 23

Make the most of your energy 24