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Venkatesh Srirangam

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The number of cars using roads is increasing by leaps and bounds as road networks improve across the country and additional highways are created. This results in traffic congestion, which may be a daily issue for commuters, drivers, traffic cops, and others. Services linked to traffic management and modes of transportation may be developed using an intelligent transport system (ITS), which allows users to have greater access to information and use transportation networks in a more efficient and timely manner.

We rely significantly on public transit for our day-to-day job, given the state of the Indian transportation business. There have been situations in the past where passengers have suffered directly or indirectly as a result of a lack of surveillance and fleet management. After much deliberation, the authorities came to the conclusion that the market was in desperate need of an update. Safety features, vehicle tracking systems, GPS, driver monitoring devices, and other improvements were identified. Is there, however, a universal answer for so many needs? There indeed is, and it’s the AIS-140 Standard. So, This whitepaper will look at AIS-140 and the difference between anticipation and actuality.

AIS-140

On November 28, 2016, the Ministry of Road Transport and Highways passed an act to ensure passenger safety and vehicle management. As a result of the mandate, the ARAI (Automotive Research Association of India) produced a set of standards that combines a vehicle tracking system, a video surveillance system, and an emergency request button. The Automotive Industry Standard 140 is the name of this collection of guidelines (AIS-140).

The latest and most modern Automotive Industry Standard, AIS-140, was adopted to make a journey safer for passengers and easier for drivers. According to AIS-140 standards:

  • All public and commercial vehicles must be equipped with a GPS tracking system, an emergency button (also known as a panic button or SOS button), and a video surveillance system.
  • This will also help the concerned authorities find the car because they will receive continuous updates on its whereabouts and will be able to track it down in the event of an emergency.
  • In the event of a disaster, there is also an option for the passenger to directly alert the authorities in the control room using the dedicated panic button.

The system-level approval and the vehicle-level approval are both parts of the Intelligent Transportation Systems (ITS) AIS. The approval at the system level is necessary to ensure that the current operating vehicle is capable of working with the ITS system. This will allow the ITS backend infrastructure to develop in tandem with the State Road Transport Undertakings in the long run (STUs). It will also guarantee that all operating cars capable of coping with the system, not only new vehicles, are fitted with the AIS to make the infrastructure more responsible.

Challenges that lead to the adoption of AIS-140

With the rise in the number of cars, there has also been a rise in the number of accidents and deaths as a result of them. The Indian government implemented AIS 140 in response to the growing turmoil caused by these incidents and the declining rate of road safety. For all public-use vehicles, it is referred to as a critical intelligent transportation need. The AIS 140 devices are part of the Intelligent Transportation System (ITS), which is designed to assist ensure and improve road safety in India.

  • Alerts & Emergency Notifications

During the situation of a huge accident, the time it takes for any person to contact the government authorities and let them know of the situation causes a huge delay in the arrival of relief and emergency personnel. And with the AIS-140 system in place, it is required to have at least one SOS button in a vehicle that is accessible to drivers and passengers alike. This would drastically shorten reaction time in the event of an accident, and it could also be used to easily notify government officials in the event of a disaster involving the car.

  • Behavior of drivers

If you have a fleet and aren’t sure how your drivers are treating your vehicles, it might lead to road accidents. With AIS-140, you can maintain track of your driver’s conduct on the road to determine whether they’re trustworthy and fit for the task at hand if they’re speeding, driving rashly, harsh braking, or performing any other unprofessional conduct during driving.

  • Non-optimized systems depleting work efficiency

Previously, without any system in place, it would take too much time for any person related to the road safety and fleet management system to take measures for recovering from a calamity. But Not only would you be enhancing the safety of your cars on the road by using the features of AIS-140, but you would also be raising your job productivity and production, which would lead to a higher customer satisfaction rate, and therefore better client acquisition.

Roadmap of Implementation of AIS-140 & Current Scenario

Within a year of the deployment of AIS-140, it was envisaged that all cars will have AIS-140 components. Even if all of the components were not completed, the goal was to complete the most important ones. So, below are the crucial components under AIS-140 that were meant to be installed mandatorily in vehicles:

  • NavIC location tracking
  • GPS assisted 3-axis accelerometer and gyroscope
  • Internal 4-hour battery backup
  • IMEI number or unique ID
  • Emergency response
  • Alert ID when pressing the emergency button
  • Surveillance cameras
  • PVT data requires dual IP addresses
  • PVT data should be reported to specified backend government systems
  • E-SIM may work in a range of voltages from 8 to 32 volts

In 2015, India saw an increase in sophisticated cab services. It’s been more than five years, and these cab services have effectively supplanted all traditional cabs in most major areas. Despite the fact that these modern transportations feature GPS, an emergency button was found to be absent from the majority of the transports.

The irony is that even if the emergency button is present, the passenger is either unaware of it or has it concealed from view. This is one of the reasons why individuals continue to have problems when traveling, and public transportation receives frequent reports of harassment or poor behavior. So, at present, the AIS-140 standard lacks in the majority of the vehicles on the roads of India and needs a solid strategy to deal with the road transport challenges in the country.

Conclusion

There is no doubt that the possibilities for transportation are infinite, given the global expansion of Artificial Intelligence and the Internet of Things. Furthermore, these technologies, when combined with future deep learning technology, will undoubtedly make the AIS-140 far more efficient for both passengers and authorities to adopt. It will only be a matter of time until these technologies become commonplace in the transportation sector. Data processing and administration have already been made much easier thanks to cloud technologies. Similarly, Machine Learning and AI will collaborate with transportation in the future.

Road accidents have long been a major priority in transportation research because they cost economies a lot of money and do a lot of harm to people. The fact that both the concept and technology of transportation are continuously developing is one factor that makes road safety research an even higher priority at this moment in time. So, this whitepaper would discuss the role of emerging technologies in improving road safety and fleet management.

  • Telematics

Telematics refers to the use of GPS, sensors, dashboard cameras, and other tools and technologies to track assets and vehicles. Its origins may be traced back to the 1960s when it was developed as a military technology to track nuclear submarines. Since then, telematics has progressed at a breakneck pace, becoming apparently ubiquitous across fleet management systems. Telematics touches on nearly every element of fleet management, providing your fleet managers with a multitude of use cases. It provides the fleet managers with benefits such as real-time fleet updates, safer fleets on road, reduced fuel costs, better maintenance, and cheaper insurance costs.

  • IoT (Internet Of Things)

When it comes to fleet management systems, telematics and the internet of things (IoT) are inextricably linked. It would be a half-measure to address Emerging Technologies in Road Safety & Fleet Management without acknowledging current advances in sensor technology. According to a report, the IoT-powered fleet-management market will be worth $8.28 billion by the end of 2021. According to reports, 11% of units arriving at distribution facilities are damaged. That’s a huge hit to any company’s earnings, and it’s a long-standing problem that fleet managers have tried and failed to address. Sensors connected to the internet of things (IoT) alert managers and owners of any potential package damage. Nothing escapes the sensors, whether it’s abrupt shocks, temperature and humidity fluctuations, or even the brightness around the box.

  • Big Data, Artificial Intelligence, and Machine Learning

Every driver, vehicle, terminal, route, and even cargo is a possible data set these days. You’ve just read about how telematics can help you discover the most efficient route and save money on gas. And this is only feasible because Big Data, AI, and Machine Learning are always striving to devise lucrative solutions to fleet management’s common pain points. The use of AI, ML, and Big Data has helped a lot of organizations in saving costs on fleet management through better decision making and predicational analysis. One such example could be UPS, the courier services giant. They have made use of these technologies in employing a policy that has saved them anywhere around $300-400 Million in just a short period of time. And the policy is just about minimizing the use of left turns during their trips.

  • Augmented Reality

Another emerging technology that will have a significant impact on fleet management & road safety in the future is augmented reality (AR). AR has applications in nearly every area of fleet management, from loading the vehicle to driving it safely on the road. It can assist the organizations in the following primary domains:

  • It can help in providing easier maintenance and repair operations by featuring AR-based recognition and simulation over different platforms, helping personnel in getting better information on the subjects.
  • It can also help in driver training and assistance by providing environments to train people in different road conditions as well as situations, leading to a better learning environment that is comparatively safer than a practical approach.
  • Freight processing and transportation is another domain where AR can help in improving the situation by letting people in the organization know about the status of freight as well as its positions for a better operations chain.
  • Blockchain

The potential of blockchain technology may be used to alter and transform the fleet management ecosystem. It might also contribute to faster advancement in the intellectualization and mobility of transportation networks. Further advancements in IoT and IoV will result in a significant rise in data quantities, and blockchain might become a useful tool for decentralised distributed storage and security management in this situation.

  • Autonomous Vehicles

Autonomous cars have piqued the interest of both ordinary people and fleet management. The advantages of having a computer drive the vehicle are clear, particularly for business fleets. Self-driving cars don’t require extended stops, are safer on the road, and save money. Waymo, which is already well-known for its fleet of self-driving cars, has just begun testing self-driving trucks. Several other firms are making considerable progress toward developing self-driving vehicles. Autonomous vehicles, whether a Tesla Semi or Mercedes-autonomous Benz’s future truck slated to arrive in 2025, are the next big thing in fleet management.

Role of ADAS & DMS in saving lives & ITS for Pedestrians & Bikers’ Safety

The ADAS and DSM System is a system designed for commercial vehicle situations. The device is equipped with forwarding Collision Warning (FCW) and driver tiredness monitoring and is based on deep-learning technology, substantially decreasing accidents and saving lives.

The hardware for the Advanced Driver Assistive System (ADAS) module is installed at the front of the car. The ADAS is a safety system that prevents and mitigates collisions. A smart camera is mounted on the front windshield of the car as part of the system. SmartComm vehicle, lane, traffic sign, and pedestrian detection technologies are used to detect traffic signs, estimate the distance between cars, lane markers, and pedestrians, and provide lifesaving notifications to the driver.

When the ADAS Camera identifies a possible risk, such as a collision with the car in front, a vehicle that is too near to the vehicle in front, or an inadvertent lane departure, the system will voice-alert the driver to take action. The DSM Camera will detect aberrant driving habits such as tiredness, distraction, smoking, talking on the phone, sipping water, and not wearing a seat belt. It will also use face recognition technology to validate the driver’s identification.

Bicyclists can be given precedence through traffic management and the deployment of ITS (Intelligent Transport System) technology. Highways, junctions, and signs are among the measures. Cycling rides may be made more efficient and safe with the aid of traffic management. Information interfaces are increasingly being utilized in road travel to assist cyclists to be more informed and enhance the efficiency of their rides. This may incorporate digital signposts that give real-time traffic information, alternate routes, and potential supplementary means of transportation.

Conclusion

Driving automation and linked transportation networks are only two areas where new technology is likely to have a substantial impact on road safety. These modifications, on the other hand, may introduce new safety concerns that did not exist previously.

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