ITS Full Form|WHAT IS ITS?

Full FormCategoryTerm
Institute for Telecommunications SciencesComputer and NetworkingITS
Intelligent Transport SystemComputer and NetworkingITS
Institute for Telecommunication SciencesTelecommunicationITS
Internet Document SetType of fileITS
Integrated Tertiary SoftwareSoftwareITS
Instrumentation Telemetry StationSpace ScienceITS
Interim Teleprinter SystemSpace ScienceITS
Information and Technology ServicesTechnologyITS
Information Technology SupportTechnologyITS
Information Technology SecurityTechnologyITS
Schedule for Integrated TestsMilitary and DefenceITS
  • ITS – Frequently Asked Question
    • What is the full meaning of ITS in Computer and Networking (or Computer and Networking)?
    • Expand the full name of ITS.
    • What is ITS?
    • What is the abbreviation or acronym?
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AuthorsProfessor Mashrur (Ronnie Chowdhury)(Clemson University in South Carolina, USA).Professor Adel Sadek(State University of New York Buffalo, NY, USA).

Intelligent Transport Systems (abbreviated I.T.S. and written ITS) refers to the use of information and communication technologies in transport. The development of ITS is still evolving. These technologies are used in different countries. The sophistication of their deployment also varies. Global transport professionals need to be able to identify the main applications and capabilities of ITS in order to assess the potential benefits, costs, and the best way to deploy it.

Intelligent Transport Systems (ITS) are the control and information systems that use integrated communications and data processing technologies for the purposes of:

This definition includes a wide range of techniques and approaches. They can be used either as stand-alone applications or in combination with other systems to provide new or enhanced transport services. ITS provides the tools to transform mobility and improve safety – and is particularly relevant in the context of road network operations.

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ITS aims to serve the user of the transport system by providing- for the individual – more reliability and comfort for individual mobility and – for the operator of the transport system – more effective operations and decision making. The overall function of ITS is to improve the operation of the entire transport system (often in real-time) for transport network controllers, travellers, shippers and other users.

ITS deployment is influenced by commercial interests and policy initiatives at the international, national, regional and local level – which impact on the business practices of stakeholders in the public or private sector.

ITS provides a flexible approach to addressing common transport problems – one that emphasises the use of information, optimal decision-making and a high level of system adaptability. This is in contrast to the traditional approach of adding road infrastructure or physical capacity. ITS offers alternatives to meeting future travel demand in situations where conventional approaches may not work – for example in heavily built-up locations or in areas subject to stringent environmental regulations.

More specifically, ITS includes a variety of tools, such as sensing, communications, and computing technologies – which can be applied in an integrated way to the transport system to improve its efficiency, safety, sustainability and the resilience of network operations in the events of serious disruption.

ITS has the potential to relive some of the most difficult problems that affect road transport today. In general ITS applications have the capability to:

ITS can also make travel more convenient by providing travellers with accurate and timely information about the traffic conditions on the network, and available transport options. It can promote economic growth by increasing mobility, reliability, and decreasing energy consumption.

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Many ITS applications have a role to play in effective road network operations – the aims of which include:

In general, ITS applications that are designed to improve the efficiency, safety and/or sustainability of road networks are the applications most frequently adopted. Examples include:

Connected autonomous vehicles are becoming more feasible. This will have significant implications for road network operations. However, it will require careful evaluation. (See Driver Support(

Video:Austria ITS FOCUS Traffic Management and Control

All road users, including drivers and their passengers, pedestrians and cyclists – across all modes of road transport, including private cars, buses, coaches and commercial vehicles – can benefit from greater use of ITS. For example, ITS applications support:

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