What is the Difference Between Geomatics and GIS?

Difference between GIS and Geomatics

Geographic Information Systems, GIS, and Geomatics are generally mistaken up to mean the same thing but the two fields are very different. Geomatics is the art of collecting and managing geographically referenced information whereas GIS collect, store, analyze, and visualize geographical data.


1. Definition: 

GIS: This is geographical information stored in layers. The information is integrated with geographic software in order to create, store, and manipulate spatial information.

Geomatics: It is used to define collective data and its associated technology. It also includes preparing and conveyance of spatially referenced information.

2. General Principle: 

GIS: GIS depends on the guideline of geocoding which includes changing over geographic information into pictures in the type of a map.

Geomatics: It includes the introduction of spatial information and procedures towards maintainable advancement and economic growth.

3.Data Integration: 

GIS: GIS includes the incorporation of spatial information and elucidating information to frame data as the final result of the GIS.

Geomatics: It incorporates coordination of geospatial innovation apparatuses like remote detecting, mapping, looking over, and worldwide situating systems.

4. Decision Making: 

GIS: The GIS finished result information can be utilized as a side-effect for dynamic in feasible advancement.

Geomatics: Results in the age of consistent choices for the activity plans or approaches identified with the integrated information. It relies on timely information from various resources

5. Cost-Effectiveness:

GIS: GIS is the most efficient, effective, and expensive method for data management, analysis, and visualization. It requires costly programming to gather and break down information. All information gathered must be down to earth and some of the time it is inclined to blunders.

Geomatics: It is an accurate, timely, and cost-effective tool used for measurement analysis and visualization of phenomena on the earth’s surface.

6.Manage Forest Resources: 

GIS: GIS data is used for forest mapping. Spatial information gathered is valuable for understanding the ground conditions and help in thinking of the timberland the board framework. Remote sensors are valuable in identifying backwoods changes, dissect woods condition, and guide the timberland land.

Geomatics: Geomatics is used in woodland protection. A GPS system conducts a forest survey to identify any Eco-sensitive areas. The information is sent to the remote sensor and utilizations the data to deal with the resources.

7. Better Understanding: 

GIS: GIS allows us to question, control, condense, and attract an example from the gathered information type of reports, outlines, or even maps.

Geomatics: Spatial data content expands the dependability of the final products and furthermore helps in ecological decisions.

8. Resource Allocation: 

GIS: GIs leads to improved arranging and distribution of resources. The broke down information is used in making arrangements for segment changes in an area.

Geomatics: Geomatics uses software engineering in preparing and control of the information system. This guarantees conveyance of spatial information for arranging and asset portion.

9. Environmental Management: 

GIS: GIS software is used for environmental assessment. GIS risk management supports the improvement of straightforward databases for cutting edge layers cost. The integration of GIS allows the assessment of environmental effects on natural resources.

Geomatics: Geomatics innovation advance information on natural examination and the board. It is used as a crucial tool in analyzing environmental information systems and any natural resources.


GIS: Geographic Information System is answerable for mapping capacity. The gathered information is put away in the GIS database and it is spoken to in a mapped design.

Geomatics: Geomatics conveys mapping division with the help of GIS. All analytical processes in combination with mapping data result in map-based information.

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