CAR CONNECTIVITY CONSORTIUM

Similar documents
Enable and Monetize the Connected Vehicle

Speed up service. fueled by challenge. powering success. sm

Mobility-As-A- Service (MaaS)

Luxoft and the Internet of Things

IoE Monetization & Management Live! 6-7 December 2017 Singapore

Partner Up BUILD A MORE EFFECTIVE AND EFFICIENT MOBILITY PROGRAM WITH YOUR INTERNAL TEAMS AND EXTERNAL PARTNERS

DELIVERING INNOVATIONS TO ENHANCE THE DRIVING EXPERIENCE

S M A R T MOBILITY CONNECT

Cloud Communications & the Modern Workplace

The transformation of industry and impact on suppliers

Effective SOA governance.

CONNECTED TRAFFIC CLOUD. A New Approach to Intelligent Traffic Management

Automotive Innovators: It s Time to Own the Software. Software is driving the perceived value of the vehicle. What s driving your software strategy?

4/26. Analytics Strategy

BMW CASE STUDY. Sajjad Khan, SVP Infotainment and Connected Drive, BMW Group

Autonomous vehicles. Preparing for the changing mobility ecosystem

S U P P L Y C H A I N S O L U T I O N S F O R T H E

Contents. Our Approach 1. Solution Design 5. System Integration 6. Logistics and Compliance 7. Global Support 8. Business Analytics 11

It s time to think about UBI differently

Open Banking, PSD2 and the New API Economy

The guide to capturing the 5G industry digitalization business potential

Mobility at a Crossroads

Why Connecting to the Internet of Things Project List

FROM PERCEPTION TO MEASURED REALITY. Leverage Analytics to Improve Clinical & Economic Outcomes 1 A 5-MINUTE EXECUTIVE BRIEF FROM ECOLAB HEALTHCARE

Capgemini Cloud Platform. Migrate, operate, and innovate every aspect of your business in the cloud

Agile Master Data Management

Driving Innovation in the Smart Car

Systems Engineering and Security Challenges

Improved Automotive Brand Loyalty

Building the Foundation for Digital Insurance. An IDC InfoBrief, sponsored by CSC and EMC September 2016

Enabling the Deployment of Open In-Vehicle ITS Stations

Case Study: North American TPA Achieves Success with. Management Solution

THE END TO END COMMUNICATIONS PARTNER OF CHOICE RESELLER OPTUSINC.COM

Packing Systems: A Critical part of OEM Supply Chain Authors: Anuradha Katti & Rehbar Rahman

DATA-DRIVEN BUSINESS MODELS IN CONNECTED CAR & BEYOND

The Age of Agile Solutions

OpenADx xcelerate your Autonomous Driving development. Andreas Riexinger Robert Bosch GmbH Product Manager Automated Driving

MONETIZING DATA THREE STEPS TO UNLOCK THE DOLLARS HIDDEN IN YOUR DATA

As a Service (XaaS) Business Model for Telecom Industry. Whitepaper

Camunda BPM at Sparta Systems

Deploying autonomous vehicles Commercial considerations and urban mobility scenarios

Autonome Voertuigen hebben de toekomst. Taco Olthoff

Niagara 4 + JACE our newest products are open 4

EMBRACING TECHNOLOGY Q&A WITH MARK SINANIAN

Harness digital for hyper-personalized supply chain solutions

Accenture and SIPG blueprint the future Connected Ports that could create over 30 billion yuan per annum for the Yangtze Hinterland

mautomotive: Latin American Telematics Roundtable Francesca Forestieri, Director mautomotive

The Evolution of Data and the Impact of New Technologies on Agency Finance & Procurement

Microsoft Connected Car Strategy & Solution

Market System Evaluation. June 2017

GROWTH THROUGH PARTNERS Best Practices for Independent Software Vendors

White Paper. Return on Information: The New ROI. Getting value from data

The 5G business potential. Industry digitalization and the untapped opportunities for operators

Telematics and the Internet of Things: Value, Opportunities &

At the Heart of Connected Manufacturing

WL Connected Living solutions. unlock the power. of Internet of Things. through engaging Connected Services

Business Innovation Through Mobility

the value of the m2m platforms offered Saas / in cloud Bo Ribbing Head of Sales Development Product Line Device Connections

Eurofinas and Roland Berger are pleased to invite you to participate in their second joint survey on The Future of European Consumer Finance.

EPM. in Manufacturing: Finally Coming of Age. By Dean Sorensen. What s the value of enterprise performance management (EPM) applications in

ENCODING, PRINTING & VALIDATING RFID TAGS WITH PORTALTRACK

EMBARGOED UNTIL MIDNIGHT ET

EXECUTIVE SUMMARY State of the Connected Infotainment Market and the Growing Opportunity for Third-party Software Suppliers

Guide to Modernize Your Enterprise Data Warehouse How to Migrate to a Hadoop-based Big Data Lake

New Development Bank Information Technology Policy

Accenture and SIPG blueprint the future Connected Ports that could create over 30 billion yuan per annum for the Yangtze Hinterland

White Paper. Why A Company, Big or Small, Might Outsource its EDI

Will planners or passengers design tomorrow s transport networks? EY Mobility Innovation Group

End-to-End Visibility: From Customer & Product Lifecycles to the Connected Car

Fact or Fiction? The Truth about Robotic Process Automation

I n d u s t r i a l IoT Platforms Pave t h e W a y f o r t h e S m a r t F a c t o ry

Digital transformation in the automotive industry

Customer driven. How the auto industry is transforming to let customers lead the way. Highlights. Automotive Point of view

SAS ANALYTICS AND OPEN SOURCE

TELEMATICS, IOT AND BIG DATA:

Digital in Automotive Supply Chain

Acquiring and Processing Data at the Edge of the Energy Grid

White Paper Describing the BI journey

The Intelligent Investment for Boundless Productivity

5 DATA-DRIVEN TECH TRENDS SHAPING CUSTOMER EXPERIENCE AND HOW YOUR BUSINESS CAN QUICKLY ADAPT

Mitchell eglassclaim. (m)powered. Manage, price, and control your glass claims process with built-in, industry-leading tools for:

Landscape Analysis: Evaluation of New Business Models for Automotive Suppliers

PART 1: INTRODUCTION. Purpose of the BIZBOK Guide. What is Business Architecture?

You run your business. We run your operations. Capgemini s Insurance Connect

ACCELERATING IoT CONNECTIVITY

IBM Enterprise Asset Management on Cloud for US Federal (Maximo)

Bill Cariss. The Future of Retail Automotive Count on Change

ITS Action Plan- Internet Consultation

Streamline and integrate your claims processing

THE FIVE BUILDING BLOCKS OF AN EXCEPTIONAL WEB EXPERIENCE. Your guide to winning the personalization race.

Baja: A Java TM - based Architecture Standard for the Building Automation Industry

White Paper. Cloud for the Automotive Industry

Private Label as a service

By automating connectivity management, we accelerate device provisioning to customers. That alone is a percent time savings for Keaz.

Customer Data Management in the Automotive Industry: Creating Value

2017 Technology, Media and Telecommunications Predictions Middle East edition

Making Maquiladoras more efficient in automotive manufacturing. Capgemini paves the road to SAP-compliance with US and Mexico trade agreements

HOW TO ACHIEVE EFFICIENT IoT TRANSPORTATION OPERATIONS SPONSORED BY AERIS

MICROSOFT DYNAMICS NAV FOR INTERNATIONAL

Electronics and High Tech

Transcription:

CAR CONNECTIVITY CONSORTIUM BUILDING CAR DATA ECOSYSTEM INTRODUCTION In the last 10 years, the connected car has evolved from concept to reality. Vehicle connectivity now includes embedded modems directly integrated into car telematics systems. Nomadic approaches also allow users to connect their smartphones directly to the dashboard. Combined, these technologies provide users with an enhanced driving experience. Furthermore, these technologies enable access to the enormous amount of information associated with the car, the driver and the act of driving. This information, available through myriad telematics solutions, has real value. As a result, we are in the early developmental stages of what is becoming the currency of a new and evolving economy. Drivers, automakers, mobile carriers and a variety of industries recognize the need to nurture this new economy and ensure it brings value to all involved. Over the next 5 years, the number of vehicles shipped with some type of connectivity is forecasted to exceed 90 million units per year. And after that, it is unlikely any vehicle sold to a consumer will not include some type of connectivity this means all cars will be part of the car data economy. By 2030 as old, unconnected cars are taken out of service, the active value of car data may well exceed 1.5 Trillion USD according to McKinsey and Company s March 2016 Report Car data: paving the way to value-creating mobility ) https://www.mckinsey.de/files/mckinsey_car_data_march_2016.pdf. 1

One of the factors that can derail the realization of this incredible value is the lack of a universal approach and understanding of the topic. The number of actors in the connected car ecosystem makes proprietary methods used to define, manage and transport data less attractive. Without a consistent approach, the value of the market will never be fully realized. Multiple players all need to be engaged and assured that information is secure and given real value. This includes: From: https://www.mckinsey.de/files/mckinsey_car_data_march_2016.pdf We at Car Connectivity Consortium believe that standardization is a key element to monetizing car data s value. As a result, we are developing a Car Data Exchange to act as a centralized brokerage to connect suppliers of car data to those interested in utilizing that information to provide services. Additionally, we will standardize the data types, data sets and encryption methods. The Car Data Exchange is not a repository or 2

data bank. Instead, this is a way to link data consumers with the data sources. A STANDARDIZED APPROACH TO CAR DATA One of the primary arguments against using an industry standard approach is that that the process of reaching agreement and finding a solution is slow. There is little doubt that the standardization approach is frequently slower than using proprietary solutions. Individual companies will develop their own solutions, sometimes with partners, and deploy them and this is already the case when it comes to car data. Many players in the car data ecosystem have established proprietary methods for acquiring, transporting and acting on car data. One of the most public examples are usage based insurance companies that monitor driving habits via the ODB2 port via some type of dongle. While this approach does work, there are notable limitations resulting from the fact that the ODB2 was never meant for this type of use. While proprietary solutions are easy to deploy and are already in the market, they suffer from major drawbacks. These include a lack of scalability and the inability to be future proof. Whereas standardization allows all interested parties to contribute and use the resulting solutions, the proprietary solution are frequently controlled by its owner. Other companies with similar interests are unable or unwilling to use the solution because they cannot ensure it meets their immediate needs, it requires unfavorable licensing terms or that it will be available to support their business long term. The process of standardization addresses these issues and can move quickly if all partners are engaged and active. PRIVACY OF INFORMATION The issue of privacy of personal information has become one of paramount importance for citizens of the connected world today. The more information is available to share, the greater the possibility that information is misused. To address consumer concerns, two different aspects of the problem must be considered; how to provide consent and how to secure that information. The first step to getting data from drivers and their vehicles is addressing the issue of obtaining consent to share information. In most countries where data is of interest, regulations are in place to protect end users and how their personal information is shared. Once regulatory concerns are addressed, the issue of willingness to share information then comes into play. 3

Drivers in different regions have differing levels of willingness to share their data. In general, nearly 3 in 4 drivers are willing to share some information as long as they can receive some tangible benefit. When specific verticals and regions are considered, the data yields some interesting patterns: From: https://www.mckinsey.de/files/mckinsey_car_data_march_2016.pdf From the above chart, we see a greater willingness for drivers in China to provide this information than other regions. But all three geographies show more willingness to share information when it related to the navigation and mobility. So while some geographic issues regarding willingness are present they are not the main roadblock to building a viable ecosystem. After consent is given the issue comes down to how that information is secured. In proprietary approaches security is handled in different ways with different levels of robustness. Some car data transfer methods utilize security that is overly zealous and results in solution that is more complex than necessary. Other methods deploy solutions that are not sufficiently secure and expose sensitive information. This, again, makes the case for a standardized approach. When the mechanisms for securing information can specified and maintained by an independent third party, the right balance for complexity versus necessary security can be found. CCC can help find that balance and be the objective manager for the systems that enable the car data ecosystem. 4

INFORMATION OWNERSHIP Closely related to information privacy is the issue of who owns the data. This is a somewhat more complex question since both the owner of the vehicle and the auto OEMs have legitimate claims to the rights to the data. Where the data is generated by the smartphone linked to the vehicle, the end user typically has more rights. Where the vehicle generates the data and that transported either via an embedded modem or a tethered smartphone, the question becomes more complex. It is these ownership issues that may be used as a reason not to embrace a solution as CCC is proposing, but we believe it is one that can be overcome. Regardless of the source of the data, the issue would be discussed and resolved as part of the standardization process. It is the responsibility of all CCC players to ensure that the ownership issue is clarified. The requirements for players in the ecosystem must be balanced with the various legal and regulatory regimes that will be engaged. By understanding these issues in the countries where the solution is deployed, CCC can again provide value building the largest possible ecosystem. THE CAR DATA ECOSYSTEM CCC S SOLUTION TO THE NEEDS OF THE MARKET With Car Connectivity Consortium s experience in developing and deploying MirrorLink, the organization already has most of the relevant players in place for this discussion. Our membership includes both handset vendors and automotive OEMs who are already adept at having the needed types of standardization discussions. With the inclusion of other ecosystem players from the automotive insurance industry, mobile service providers, dealer networks, home and workplace automation players and transportation infrastructure vendors, we have created the best place for these necessary discussions to take place. In approaching the market, we believe that there are three areas that are our logical starting points. These are usage based insurance (UBI), road condition/traffic monitoring and integrated vehicle maintenance. These are areas where proprietary solutions are already in place and use cases are clearly defined. Having these clear cases help establish the roadmap for building a standardized solution while balancing different needs. In considering these different needs, the most generalized approach that can be extended into other areas easily will be established. 5

After establishment of the standardized solution, businesses that wish to leverage car data can do so without wasting time on developing technology and infrastructure. These companies can then build business where it really counts utilizing the data to provide better services to their customers and creating value for themselves. CCC isn t looking to create a data bank, CCC is looking to enable ways to make business work when it comes to the use of car data. In broad terms our solution architecture looks like this: The scope of CCC car data project includes definition of standard interfaces for exchange of data between data provider and receiver. The data provider could be either an OEM data bank, or a car, or a phone. Our solution is not based on any one platform or source of data. Data can originate from embedded modems, highway infrastructure or smartphones tethered to vehicles as well as other sources. In addition to the standard interface, CCC plans to define an authentication and authorization service platform that will enable data provider to offer car data through any market place. By enabling the mechanisms for solving the sharing of car data for the entire industry, we provide the best possible way to build a vibrant way to maximize the value from this largely untapped resource. 6

CONCLUSION Car Connectivity Consortium is the best place to build a standardized approach to the complex issue of how to maximize value from data generated by the act of driving. Standardization provides the best way to ensure economy of scale and reduce the need for different players to develop unique and incompatible methods of addressing the problem. We also provide the best playing field for all interested parties to collaborate on the necessary solutions. If car data is to fulfill its promise of delivering the estimated trillions of dollars of value to the industry, then the hard work must be done now. CCC has the right companies and the right history to make that happen and we invite all interested players to join with us to make this exciting possibility a reality. The CCC is dedicated to cross-industry collaboration in developing global standards and solutions for smartphone and in-vehicle connectivity. The organization s more than 80 plus members represent more than 70 percent of the world s auto market, more than 60 percent of the global smartphone market and a who s who of aftermarket consumer electronics vendors. For further information, please visit www.carconnectivity.org. 7