Intermap Technologies and Auburn University Use GIS to Reduce Fuel Consumption

DENVER—(BUSINESS WIRE)—August 6, 2007— Intermap Technologies Corp. announced it has provisioned a grant to Auburn University to investigate and evaluate ways to save fuel using the Company's GIS 3D road geometries. The project's initial focus is on achieving simulation results and designing a predictive cruise controller and automatic gear shifting algorithm to calculate optimal vehicle speed and gear selection that improve fuel economy and operating costs.

A significant amount of the fuel expense in the heavy trucking industry is attributed to changes in road slope. In an effort to address this problem, Intermap has sponsored a research team headed by Dr. David Bevly, assistant professor in mechanical engineering at Auburn University's Samuel Ginn College of Engineering.

Eaton Corporation, one of the world's major suppliers of heavy duty transmissions, is serving in an advisory role and sees significant efficiency opportunities in the project. "We are looking forward to the results of this work," states Daniel G. Smedley, manager of advanced automation & control for Eaton Corporation's Truck Technology group. "It opens up a new avenue of pursuit to help our customers get more miles out of a gallon of diesel fuel."

According to Wei Huang, a member of Bevly's research team leading the research effort, the project is unique in two ways, "First, the designed system is tested with real commercial 3D road geometry. Then, the influence of the road geometry and sensor accuracy on fuel economy is investigated. The 3D road geometry and GPS-based control system is designed to reduce the heavy trucks' fuel consumption. The system consists of vehicle state estimators, the road geometry, and an optimal control system."

GPS technology is applied to estimate the truck position, while Intermap's 3D road geometry is used to identify information on the road slope that lies ahead. An optimal control system is then designed to predict and achieve ideal truck velocity and/or engine speed, based on the road geometry, with the consideration of fuel consumption and travel time. The basic function of this optimal control system is to automatically gauge when best to accelerate, decelerate, or change gears going into and coming out of slopes and curves.

"Early results have shown that truck fuel consumption can be reduced up to three percent without significantly increasing traveling time, when compared with a conventional cruise control system," adds Huang. According to the American Trucking Association, motor carriers spent $103.3 billion on fuel in 2006. Increased fuel efficiency will help carriers reduce their fuel consumption and overall operating costs - potentially saving approximately $3 billion dollars and a billion gallons of diesel per year. The Auburn study will also look at the tradeoffs between increased travel time and additional fuel savings.

"This is exciting news for the industry," states Eric DesRoche, senior vice president of Intermap's Automotive & Consumer Electronics division. "We are proud to be part of such a unique and visionary project that has the potential of reducing our vehicle carbon footprint and providing a substantial savings for the trucking industry."

About Intermap Technologies

Intermap (TSX: IMP)(AIM:IMAP) enables customers to facilitate better decision-making and create applications for numerous commercial, governmental, military, and consumer products through the purchase of high quality and affordable 3D geometric datasets. The Company is proactively remapping entire countries and building unprecedented national databases, called NEXTMap(R), consisting of highly accurate digital geometric maps that include elevation data.

Demand for NEXTMap(R) data is growing as new commercial applications are emerging, including geographical information systems (GIS), engineering planning, transportation, automotive, navigation, flood, irrigation, environmental management and planning, telecommunications/wireless network planning, aviation, simulation, and 3D visualization. Internet applications include virtual tours, topographic maps, and computer games. Datasets are also used to add interactive intelligence to airborne and satellite imagery.

Headquartered in Denver, Colorado, Intermap employs more than 500 people worldwide, with additional offices in Calgary, Detroit, Jakarta, London, Munich, Ottawa, and Prague. For more information, visit www.Intermap.com.

Intermap Reader Advisory

This news release contains certain forward-looking statements, which include certain assumptions with respect to the future business and operations of the Company. The reader is cautioned that assumptions used in the preparation of such information may prove to be incorrect. All such forward-looking statements involve substantial known and unknown risks and uncertainties, certain of which are beyond the Company's control. The Company's actual results, performance or achievements could differ materially from those expressed in, or implied by, these forward-looking statements and, accordingly, no assurances can be given that any of the events anticipated by the forward-looking statements will transpire or occur, or if any of them do so, what benefits that the Company will derive therefrom. All subsequent forward-looking statements, whether written or oral, attributable to the Company or persons acting on its behalf are expressly qualified in their entirety by these cautionary statements. Furthermore, the forward-looking statements contained in this news release are made as at the date of this news release and the Company does not undertake any obligation to update publicly or to revise any of the included forward-looking statements, whether as a result of new information, future events or otherwise, except as may be required by applicable securities laws.

The TSX has not reviewed and does not accept responsibility for the adequacy or accuracy of this release.

Contact:

Intermap Technologies Corp.
Kevin Thomas, 303-708-0955
Vice President, Marketing
Email Contact

 

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