Friday, 6 January 2023

Perception Tech Available for More ADAS Cars: CES 2023

                                                         IOT WORLD TODAY




StradVision has used CES to announce a major update for its AI-driven perception tech for the automotive industry.

The company, based in Seoul, South Korea, confirmed in Las Vegas that its award-winning SVNet software is now available for designers using the Texas Instruments (TI) TDA4 automotive processor for Level 2 advanced driver assistance systems (ADAS) and automated driving features.

StradVision’s cutting-edge software now enables external vehicle perception with more than 18 platforms, including TI’s. SVNet allows accurate detection and recognition of objects such as other vehicles, lanes, pedestrians, animals, free space, traffic signs and lights – even in poor lighting or harsh weather conditions.

It was the first deep neural network to run deep learning-based object detection software using TI’s TDA2HF processor and will now provide deep neural networking across the TDA4VM processor family, too. 

According to StradVision, the implementation for the TDA4 processor is optimized for high performance and low power consumption, meaning reduced bills. This, it claims, allows ADAS features to be made available at a fraction of the market cost compared with competitors. And, in turn, this will enable wider mass-market production of L2 systems among automotive OEMs.

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Thursday, 5 January 2023

INTERNET OF THINGS

    

                                                   



                                According to a report from global research firm Omdia, the APAC region is set to witness unprecedented IoT growth.

The researchers note that APAC has lagged behind in ‘Full IoT Deployment’ within enterprises (38% for APAC versus 42% in the 'Rest of the World'). 

                        Internet of Things (IoT) is a network of physical objects or people called “things” that are embedded with software, electronics, network, and sensors that allows these objects to collect and exchange data. The goal of IoT is to extend to internet connectivity from standard devices like computer, mobile, tablet to relatively dumb devices like a toaster.

IoT makes virtually everything “smart,” by improving aspects of our life with the power of data collection, AI algorithm, and networks. The thing in IoT can also be a person with a diabetes monitor implant, an animal with tracking devices, etc. This IoT tutorial for beginners covers all the Basics of IoT.


History of IoT

  • 1970- The actual idea of connected devices was proposed
  • 1990- John Romkey created a toaster which could be turned on/off over the Internet
  • 1995- Siemens introduced the first cellular module built for M2M
  • 1999- The term “Internet of Things” was used by Kevin Ashton during his work at P&G which became widely accepted
  • 2004 – The term was mentioned in famous publications like the Guardian, Boston Globe, and Scientific American
  • 2005-UN’s International Telecommunications Union (ITU) published its first report on this topic.
  • 2008- The Internet of Things was born
  • 2011- Gartner, the market research company, include “The Internet of Things” technology in their research.

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Wednesday, 4 January 2023

INTERNET OF THINGS

                            Internet, one of the most significant inventions of all time helped us to connect with people using computers and Smartphone. The new generation of network IoT (internet of things), connects things with the ability to sense, control and communicate.  Find out what are the applications of Internet of Things?


1. Smart Home and Office

smart-home
Source: Visioforce Automation

Smart home applications with the use of smart sensors are becoming popular now. Any smart device can be configured and connected to the internet and control using simple mobile application.

Smart Door access control system

Smart locks and door access systems are one of the most popular and cost effective solutions of Internet of Things. Smart locks are easy to implement and control using a web interface or Smartphone application.

Integration with RDIF tags, smart door accessing systems can be securely implemented. Users can grant access to the doors using mobile app and lock again once the person leaves the premises.

Example: a person wants to enter your house while you are not around, you will be able to open the door for that person using Smartphone application.

Smart lighting for home and office

Smart lighting is one the attractive smart home application using internet of things. In addition to energy saving, it also enables us to manage effectively. Light ambience can be changed using smart hub devices or smart phone app.

Smart lighting can be configured to respond to voice commands and motion detectors / proximity sensors. These sensors will activate the light when someone enters the room or leaving the room.  Moreover, it can be configured to turn on when the ambient light is below certain threshold (turn on during sun light is low).

Automated Gate and garage

Using smart sensor technology and internet of things, gates and garages can be controlled (operated) conveniently. Once you are about to enter the house or after leaving the premises, you may open or close the gate using mobile devices.

Smart thermostats and humidity controllers

Smart thermostats are cost effective and convenient smart home solutions which can be controlled using an internet connection and smart hub device (or using Smartphone app).

Common sensors for home/office automation:

  • Motion / proximity sensors
  • Voice controlled sensor
  • Light sensor
  • Temperature and humidity sensors
  • Smoke/fire sensor
  • Precipitation sensor

Traffic Management

Analyzing traffic over a period of time gives an insight of possible trends and pattern that could occur during peak hours. It will help to inform commuters to take alternative routes to avoid congestion and delay.

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INTERNET OF THINGS




Some of the advantages of IoT include the following:

  • ability to access information from anywhere at any time on any device;
  • improved communication between connected electronic devices;
  • transferring data packets over a connected network saving time and money; and
  • automating tasks helping to improve the quality of a business's services and reducing the need for human intervention.

Some disadvantages of IoT include the following:

  • As the number of connected devices increases and more information is shared between devices, the potential that a hacker could steal confidential information also increases.
  • Enterprises may eventually have to deal with massive numbers -- maybe even millions -- of IoT devices, and collecting and managing the data from all those devices will be challenging.
  • If there's a bug in the system, it's likely that every connected device will become corrupted.
  • Since there's no international standard of compatibility for IoT, it's difficult for devices from different manufacturers to communicate with each other.

IoT standards and frameworks

There are several emerging IoT standards, including the following:

  • IPv6 over Low-Power Wireless Personal Area Networks (6LoWPAN) is an open standard defined by the Internet Engineering Task Force (IETF). The 6LoWPAN standard enables any low-power radio to communicate to the internet, including 804.15.4, Bluetooth Low Energy (BLE) and Z-Wave (for home automation).
  • ZigBee is a low-power, low-data rate wireless network used mainly in industrial settings. ZigBee is based on the Institute of Electrical and Electronics Engineers (IEEE) 802.15.4 standard. The ZigBee Alliance created Dotdot, the universal language for IoT that enables smart objects to work securely on any network and understand each other.
  • LiteOS is a Unix-like operating system (OS) for wireless sensor networks. LiteOS supports smartphones, wearables, intelligent manufacturing applications, smart homes and the internet of vehicles (IoV). The OS also serves as a smart device development platform.
  • OneM2M is a machine-to-machine service layer that can be embedded in software and hardware to connect devices. The global standardization body, OneM2M, was created to develop reusable standards to enable IoT applications across different verticals to communicate.
  • Data Distribution Service (DDS) was developed by the Object Management Group (OMG) and is an IoT standard for real-time, scalable and high-performance M2M communication.
  • Advanced Message Queuing Protocol (AMQP) is an open source published standard for asynchronous messaging by wire. AMQP enables encrypted and interoperable messaging between organizations and applications. The protocol is used in client-server messaging and in IoT device management.
  • Constrained Application Protocol (CoAP) is a protocol designed by the IETF that specifies how low-power, compute-constrained devices can operate in the internet of things.
  • Long Range Wide Area Network (LoRaWAN) is a protocol for WANs designed to support huge networks, such as smart cities, with millions of low-power devices.

IoT security and privacy issues

The internet of things connects billions of devices to the internet and involves the use of billions of data points, all of which need to be secured. Due to its expanded attack surface, IoT security and IoT privacy are cited as major concerns.

In 2016, one of the most notorious recent IoT attacks was Mirai, a botnet that infiltrated domain name server provider Dyn and took down many websites for an extended period of time in one of the biggest distributed denial-of-service (DDoS) attacks ever seen. Attackers gained access to the network by exploiting poorly secured IoT devices.

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Tuesday, 3 January 2023

INTERNET OF THINGS AND APPLICATIONS




                            The internet of things, or IoT, is a system of interrelated computing devices, mechanical and digital machines, objects, animals or people that are provided with unique identifiers (UIDs) and the ability to transfer data over a network without requiring human-to-human or human-to-computer interaction.

thing in the internet of things can be a person with a heart monitor implant, a farm animal with a biochip transponder, an automobile that has built-in sensors to alert the driver when tire pressure is low or any other natural or man-made object that can be assigned an Internet Protocol (IP) address and is able to transfer data over a network.

Increasingly, organizations in a variety of industries are using IoT to operate more efficiently, better understand customers to deliver enhanced customer service, improve decision-making and increase the value of the business.

How does IoT work?

An IoT ecosystem consists of web-enabled smart devices that use embedded systems, such as processors, sensors and communication hardware, to collect, send and act on data they acquire from their environments. IoT devices share the sensor data they collect by connecting to an IoT gateway or other edge device where data is either sent to the cloud to be analyzed or analyzed locally. Sometimes, these devices communicate with other related devices and act on the information they get from one another. The devices do most of the work without human intervention, although people can interact with the devices -- for instance, to set them up, give them instructions or access the data.

The internet of things helps people live and work smarter, as well as gain complete control over their lives. In addition to offering smart devices to automate homes, IoT is essential to business. IoT provides businesses with a real-time look into how their systems really work, delivering insights into everything from the performance of machines to supply chain and logistics operations.

IoT enables companies to automate processes and reduce labor costs. It also cuts down on waste and improves service delivery, making it less expensive to manufacture and deliver goods, as well as offering transparency into customer transactions.

As such, IoT is one of the most important technologies of everyday life, and it will continue to pick up steam as more businesses realize the potential of connected devices to keep them competitive.

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INTERNET OF THINGS AND APPLICATIONS




 IoT technology is one of the most prominent technologies trends to have emerged in the past few years. Through the years, IoT has been shaping many business activities, technological functions, and consumer trends. The global Covid-19 pandemic was a big roadblock for many industries and IoT was a major driving force during this time.

1. Productive Work From Home with IoT

With the use of Siri, Alexa, Google Home, and other household IoT-enabled applications, IoT has become one of the most important aspects of our daily routine. Moreover, these devices have become a part of our new normal work culture i.e., Work from Home. The features like automated scheduling and intelligent advance calendar tools in these devices, it has helped to manage all the work-related activities without compromising on personal time. Plus, your overall productivity during Work from Home has been enhanced with the interactive video conferencing and virtual meeting rooms.

2. IoT in Healthcare

The global pandemic has created a huge need for advanced healthcare facilities. Today, the healthcare sector is fully utilizing the benefits of IoT technology and efficiently working with it. The output to the business reflects in the form of customer satisfaction, quality service, 24*7 availability, off-clinic patient monitoring. and various other benefits.

3. IoT in Retail

With the help of smart gadgets and connected devices we are expecting safer and more efficient stores and supermarkets. Additionally, retailers can not only create innovative use cases to enhance customer experiences but also reduce operational costs. They can gain an advantage in their business with:

  • Better supply-chain management with GPS sensors and RFID tags.

  • Smart inventory management based on customer-buying behavior to avoid overstocking, stockouts, and shrinkage.

  • Retailers can automate inventory visibility with IoT and also develop procurement planning.

  • Automate and even personalize checkouts for customers.

4. More Smart Cities with IoT

In the coming years, with the emerging usage of technology and smart devices, we can expect more smart cities initiatives globally. A smart city is largely dependent of flow of information and actionable insights from the real-time city data. Here is where IoT technology can help with numerous city functions such as:

  • Intelligent monitoring of traffic on the road to avoid roadblocks and easy commute.

  • Scheduling of public transports can be improved with smart GPS.

  • Sensors and RFIDs can help with better management of civic amenities like recycling centers and segregation of waste.

5. IoT in Automotive

One sector that has a large scope for IoT is the automotive industry. Internet of things application can be utilized in the process of achieving V2X technology i.e., Vehicle to everything technology. Other uses can include:

  • Predictive maintenance of the automobile to reduce the risk of malfunctioning of the vehicle; wear and tear of the parts.

  • In-car infotainment powered by 4G/5G wifi for hands-free navigation and access to Google assistance or Siri.

  • Compliance to environmental and traffic rules for safety.

6. IoT for Agriculture and Environmental Issues

The Internet of Things application has strong capabilities to improve and strengthen the current agriculture sector. As per a report by Statista, the use of IoT in agriculture is set to grow worldwide. Reports suggest that the IoT market size for the agriculture sector in 2018 was at 14.79 billion USD, but it is projected to reach 30 billion USD by 2030. Here are a few IoT use cases in agricultural processes:

  • Agricultural Drones for imaging, mapping, and surveying the farms.

  • IoT sensors can help farmers get accurate information on greenhouse conditions like temperature, humidity, lighting, etc.

  • Just as in crop monitoring, these IoT sensors can also perform real-time cattle monitoring.

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INTERNET OF THINGS AND APPLICATIONS





                     Internet of Things (IoT) is quite a vast concept, but we can summarize it as an ecosystem that consists of smart objects with networks, sensors and processing technologies. It integrates and works together to create an environment providing smart services to end-users. IoT is an emerging technology platform that enables various devices around us to communicate with each other through sensors, connected via the internet to make our lives easier.


                    Internet of Things (IoT) is quite a vast concept, but we can summarize it as an ecosystem that consists of smart objects with networks, sensors and processing technologies. It integrates and works together to create an environment providing smart services to end-users. IoT is an emerging technology platform that enables various devices around us to communicate with each other through sensors, connected via the internet to make our lives easier.

Impact of IoT in Our Daily Lives

                    This emerging spectrum of IoT cloud applications has its presence in multiple sectors. Currently, the applications of IoT cover adverse areas including manufacturing or the industrial sector, agriculture, health sector, smart cities, security, and emergency services among many others.

                        IoT enables the development and deployment of smart devices to solve real-world challenges and issues. Hence, most of us today are surrounded by various 'smart devices' like smart homes, smart cars, smart televisions, smartwatches, etc. that are helping us make our lives easier and smoother.

                    Another example of achievement in IoT is the Smart Health Sensing system (SHSS). It is a compact intelligent device that monitors our health. This device is predominantly used within the healthcare industry in hospitals and especially in trauma centers to monitor the critical health conditions of patients.

                    It goes without any doubt that this combination of internet and smart devices has entered into our routine lives and has been positively impacting it.

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A Milestone for securing the Internet of Things: Infineon welcomes introduction of a voluntary U.S. IoT security label.

  Today, U.S. Deputy National Security Advisor Anne Neuberger, Chairwoman of the Federal Communications Commission (FCC) Jessica Rosenworcel...