Archive for January, 2010

Tab Tip – Tracking Offenders with XMap’s GPS Radar Function

January 26, 2010

November’s DeLorme Professional Newsletter included a list of the major functional enhancements in the newly released XMap 7 suite. If you read the entire article, towards the bottom of the list under the subheading, Other XMap Enhancements, you may have noticed “Improved GPS Radar Search”—a reference to a lesser known but, nonetheless, powerful component of the XMap toolkit.

About XMap 7

A recurring theme in the various descriptions of XMap is that it represents the perfect integration of GPS and GIS technology. DeLorme mapping software has included GPS functionality since its earliest days, when DeLorme was one of the first companies to introduce a GPS receiver for consumer use. It is no surprise, therefore, that when XMap was developed, it inherited a powerful set of GPS tools for tracking, navigation, data collection, and, as seen in the GPS radar functionality, proximity searching.

The idea behind the GPS Radar is very simple: if your GPS receiver is able to discern your precise location and the map on which your position is being displayed includes points of interest or other significant data layers, it is very easy to generate a list of these points that are within a defined distance and to update this list as you move. Originally, this functionality was incorporated into DeLorme software titles to help the traveler find particular businesses and services such as restaurants, hotels, and gas stations. However, it soon became clear that there could be many other applications for this tool.

One such example emerged during a meeting between members of DeLorme’s XMap team and a representative from a state law enforcement agency. The officer, citing studies indicating that most criminal activity is carried out by individuals who have been previously convicted, suggested that if each patrol vehicle were equipped with a system that would alert the officer when they came close to the address of a known offender, many crimes could be prevented. This discussion and other similar meetings, led to the development of a GIS-optimized version of the GPS Radar search function.

GPS Radar is a subtab of the Find tab in XMap and the set-up process involves a few simple steps:

  1. Create or import the GIS layer containing the points that you want to search for. If you are working with a database or a spreadsheet of addresses, XMap’s GIS import function will automatically geocode or assign each record the correct point on the map.
  2. Make sure you have a GPS receiver connected to your computer. If a device is not detected by XMap, the search will originate at the current map center.
  3. Click the Find tab and click the GPS Radar button.
  4. From the Find drop-down list, select either All GIS Points, which will return results from all active GIS point layers, or Custom, which provides a text box within which the name of a specific layer can be typed.
  5. Before beginning the search process, click the Options button to customize the behavior of the search:
    • Select the distance within which the search will be conducted.
    • Set the time between updates to the search results.
    • If required, choose the wording of the verbal prompt that is played when a result is found.
  6. Click the Search button to initiate the GPS Radar search. The results will be displayed in list form with the closest at the top of the list. After the previously determined time interval, a new list of results will be generated. Directions to the closest or selected object will be indicated by a thin green line on the map.

GPS Radar can be employed for a wide variety of applications; however, much of the new functionality was developed to address the specific needs of the mobile law enforcement community.

Read More About XMap 7

Utilizing GPS and GIS Technology for Emergency Management

January 26, 2010

In recent years, there has been a surge in interest in location-based technology among organizations and agencies that would previously have considered these tools to be beyond their means. The emergence of low-cost and Web-based mapping applications and the ubiquitous availability of worldwide satellite-enabled navigation have instilled a spatial mindset within a broad cross-section of the population. Software offerings such as DeLorme’s XMap and GPS receivers such as the rugged Earthmate PN-40 are bringing this technology firmly down to earth.

The utilization of geographic intelligence has been particularly evident in the field of emergency management and response, where GPS technology has long played a critical role and where GIS—Geographic Information System—is now coming to the forefront. Response agencies at the national, regional, and local levels are learning that the efficient management of data plays a critical role in all aspects of emergency management, from mitigation to recovery.

Unlike in many other situations where the benefits of a GIS are measured in terms of increased efficiency, higher productivity, and ultimately dollars and cents, the benefit of this technology for emergency managers is that it saves lives. No matter what the situation, whether it is a major natural disaster, such as an earthquake, hurricane, or flood, or a local search and rescue operation, GIS can and should play a key role.

GIS Defined
While many GIS specialists might offer a more complex definition of their chosen field, the basic tenet of a GIS is fairly straightforward. A GIS is a system for managing data in its locational context. Typically, a GIS is a computer-based system for gathering, storing, organizing, and distributing location-based information.

Why GIS?
A well-organized GIS provides an invaluable tool for collecting data from a variety of sources, organizing it into a usable format, and efficiently redeploying the data to those who need it most. In the field of emergency management, a GIS can reduce response time, eliminate redundancy, streamline the allocation of personnel and resources, and can provide crucial information for planning future operations. Additionally, the common file formats in which GIS data is usually stored offer an easy means to share maps and data with other responding agencies.

Integrating GIS and GPS
It is frequently assumed that GIS and GPS are inherently connected; however, the interoperability of these two technologies is often a difficult process necessitating the conversion of files to allow the exchange of data from one platform to the other. Few handheld GPS receivers offer the option of  viewing GIS layers or aerial imagery, a feature which serves to extend the reach of the GIS infrastructure to remote locations. Nor do they typically provide the means to collect field observations that can be easily integrated into a centrally managed GIS. It was with this in mind that DeLorme developed the Earthmate PN-40, a GPS receiver that offers a unique set of capabilities.

Foremost is its ability to display map data from a wide variety of sources, including aerial imagery, USGS maps, NOAA charts, GIS layers, and more. Additionally, this waterproof device can be used to collect data using the innovative XMap Forms capability. This powerful component of the XMap suite utilizes customized drop-down lists, check boxes and simple text entry to not only mark a critical point but to record a wealth of invaluable information about the location. Back at the command post, the field-collected data from multiple PN-40s is integrated directly into a GIS layer, allowing emergency managers to quickly discern the spatial characteristics of the data and to make better operational decisions.

GIS for Emergency Management
Often the development of a GIS is approached as a three-phase effort: data collection, data processing, and data sharing. For emergency managers, much of the data collection and processing can be performed as part of the preparation work. A broad range of relevant data can be imported or created to reflect what might typically be required in an emergency within the jurisdiction of the responding agency.

When an emergency strikes, the GIS infrastructure needs to be flexible enough to work in the field and to incorporate all of the additional data that will be collected as part of the emergency operation. In such a dynamic and challenging setting, the system must be easy to manage and the data must be accessible to those with limited knowledge of GIS. An overly complex GIS requiring a specialist to run it may become an unwelcome bottleneck when the need for data and maps becomes critical.

Typically, GIS software is designed for office use; however, DeLorme’s XMap, which has been developed on the platform of the company’s renowned navigational software and includes route planning and GPS interoperability as standard features, has helped redefine GIS. XMap is equally at home in the office, in the vehicle, in the field, or wherever emergency operations are managed.

GIS and GPS for Search and Rescue Operations
When a hiker fails to show up at a designated rendezvous spot or a child goes missing after wandering away from a campsite, the local emergency response agency quickly steps up to the plate, often assisted by other organizations and willing volunteers. From the outset, a high degree of organization is essential.

Many searchers will be unfamiliar with the area so there is the risk of escalating the crisis if those who are searching becoming lost themselves. Others, eager to assist, may take it upon themselves to initiate a search without any collaboration with the agency in command and without access to potentially critical directions.

A GIS will allow the emergency manager to identify and record any currently available information: Where was the subject last seen? In which direction was he heading? What are the terrain, land cover, and natural vegetation in the proposed search area? Where are the best access points? With all of this information at hand, a strategy can be developed and a plan initiated.

A useful component of the GIS for both assigning response teams and keeping track of areas covered is a grid superimposed on the search area. By way of preparation, a custom floating grid can be created in XMap and dragged to the target area. For those responders who do not have access to a GPS device, a map displaying this grid along with all of the other pertinent information can be printed. Users of DeLorme’s PN-40 GPS receiver can have the same map sent directly to the device so as they proceed on their designated search path, they can see where they are in relation to the grid.

Upon returning to the command center, the track recorded by each GPS device is imported into XMap and overlaid on the grid to determine which areas have not yet been covered in the search. The GIS tools in XMap allow each track to be buffered creating a wider swath on the map so that a more realistic perspective of the actual area searched can be ascertained. XMap’s spatial querying and symbolization capabilities are then used to create an updated map that is then redeployed to each PN-40.

Classification or color-coding of the tracks is used to map the area searched by each team. For example, the track files that were recorded and downloaded from the GPS receiver used by the canine unit could be represented by a unique color, allowing the emergency manager to see where this particular team should be assigned next.

The collection of point-specific data is also important in the search and rescue effort. Tagging a location where evidence has been found is a simple process using the PN-40. A button on the device is used to create a labeled waypoint to which detailed comments can be added. As with tracks, this point data is easily integrated into a GIS layer allowing all of the information to be centrally managed and, if necessary, updated and redeployed.

If a photographic record is also appropriate, XMap includes a tool for automatically assigning a series of downloaded digital photographs to the precise point on the map at which they were taken. This geo-referenced photo can be displayed as a thumbnail image on the map or as a hyperlink, which opens the full size photograph.

For emergency managers, the application of GIS does not end with the completion of the search operation. All of the data that has been collected during the rescue effort can be reviewed and analyzed to help plan and prepare for future events. It can also be used to create simulations for the purpose of training other responding agencies.

Conclusion
A GIS is a tool that manages information to enable better decision-making and nowhere is the decision-making process more important than in emergency management and response. Among the critical considerations when deciding to apply spatial technology for emergency management and response are the flexibility and suitability of the system for field applications, the accessibility of the technology for novice-GIS users, the interoperability with other applications and data sources, and the ability to efficiently share data with handheld GPS receivers.

XMap GIS software and accompanying Earthmate PN-40 GPS receiver from DeLorme meet all of these requirements and collectively provide a perfect mapping and GPS platform for all emergency operations.

DeLorme Responds to Haiti Disaster

January 26, 2010

A few weeks ago, the XMap team met to discuss the content of January’s edition of the DeLorme Professional Newsletter. It was decided during the meeting that we would focus on the application of XMap and the Earthmate® PN-40 GPS receiver for emergency management. Little did we know at the time that within a few days the nation of Haiti would fall victim to one of the most devastating national disasters in living memory and that DeLorme mapping and GPS tools would be quickly called into service.

As the news of the severity of the earthquake filtered out, and agencies and organizations from around the world mobilized to help the citizens of this already impoverished country, calls started to come in to DeLorme requesting accurate and up-to-date map data as well as assistance deploying our software and GPS products. DeLorme data technicians quickly responded and developed a GPS-accurate, routable road and street map for Port-au-Prince and other affected areas for use in XMap and on the PN-40.

Download Free Haiti Map Packages

Meanwhile customer service representatives and product specialists manned the phones, met with emergency response organizations, and conducted training classes to ensure that everyone who required assistance with their DeLorme product provided the information they needed.

DeLorme products are now being used by emergency personnel and relief organizations in Haiti to map the extent of the destruction, to help navigate around the city of Port-au-Prince and beyond, to assist in the distribution of much-needed supplies, and to plan for the slow rebuilding process.

On behalf of everyone at DeLorme, our heartfelt thoughts are with the residents of Haiti as they come to terms with the loss of friends and relatives and as they begin to rebuild their lives. We also forward our sincerest gratitude to those who selflessly responded to the call for help and who are on the ground in Haiti. DeLorme is pleased that we are able to assist in this effort.

Read the full press release:
As Many as 500 First Responders Relying on DeLorme GeoSpatial Solutions in Haiti