Showing posts with label Internet of Things. Show all posts
Showing posts with label Internet of Things. Show all posts

Monday, 8 June 2015

Brillo: Now Android Joins the IoT Bandwagon





Last week in Google I/O Google made an announcement about its latest OS: Brillo. With Brillo Google aims to create an operating system that links our real world things with each other so that our appliances like microwave, televisions, washing machines, air conditioners can all communicate with each other .
In I/O Google also confirmed that Project Brillo will be based on its existing Android operating system but it will be significantly simplified for use in objects other than smartphones and tablets.
Some of the key features which Brillo offers are:
  • Its derived from Android
  • Has minimal System Requirements
  • Broad Silicon Support
  • Easy to Secure

A screen capture from I/O provides a better insight on the same

But Brillo is not alone , Brillo is packed with a powerful communicating layer called Weave. This is the layer which would enable IoT devices to communicate with each other , it’s the glue which will bind the cloud, your mobile and your appliance together . Using Weave it will be possible for devices to publish their current state and also the various supported states. Weave will support JSON based developers APIs thus providing out of the box cross platform support and making the entire system developer friendly.

Brillo will be available to the developer community from Q3 this year and we can expect the complete developer stack with Weave somewhere around Q4.

With Brillo Google has taken a giant step in bringing together this fragmented world of IOT, Google has put forward a very well formed strategy, now its the execution which will decide whether Brillo will prove to be another Android in Making or just another research product to be shelved.
(Image Source: Google I/O )
For experiencing and discussing Brillo based Mobile apps or other Internet of Things Projects please do reach us(Recrosoft Technologies Pvt. Ltd. ) at  http://www.recrosoft.com

Wednesday, 7 January 2015

Tizen: The OS of Everything

Few days back Samsung announced that come 2015 , all the Smart TVs of Samsung will be powered by an Operating  System called “Tizen”. The company announced that it will be bringing up  a platform which is suitable for tomorrow’s  connected world. Tizen  has been build keeping in mind the way society consumes entertainment from multiple devices. Tizen is designed to deliver an integrated entertainment experience that is at once streamlined and powerful. The Tizen powered devices would empower the connected world, these devices would be able to search and identify near by devices and would be able to establish connection with them , thus allowing easy sharing of content . 

 What is Tizen: 
 Tizen is a flexible and open Operating System built from the ground to cater the needs of IOT ecosystem. Tizen was developed by a community of developers and is open for all to participate and contribute Tizen has been built to support  multiple industries and support a vast variety of devices, thus making connected world a feasible possibility. Tizen comes in various profiles to support the devices coming from different industries. Some of the common Tizen profiles which are available for customization  are:
  • Tizen IVI (in-vehicle infotainment),
  • Tizen Mobile,
  • Tizen TV
  • Tizen Wearable
The customization feature of these profiles help the vendors to modify the underlying platform as per their device memory, processing power and other hardware specifications also it gives them power to develop devices which can match the customer needs without bothering on the OS requirements. For developers Tizen provides support for both native and  web based development by providing a consummate support for HTML5.  As Tizen supports a plethora of  devices , it gives the developers the immense power to create apps in a simple way without worrying about the specifications of hardware . 

Tizen Architecture:
  Tizen Architecture 


 Application Framework: This provides application management using. It is also responsible for launching system services like the dialer app.  The Application Framework also notifies applications of common events like low memory, low battery, changes in orientation etc. Database and settings support is also taken care by this framework. 

Graphics and UI : Graphics and UI consist of the system graphic and UI stacks, which includes EFL (Enlightenment Foundation Libraries), an X11-based window management system, input methods, and OpenGL* ES. 
EFL, the heart of the Graphics component, is a suite of libraries. EFL is used to create rich graphics with ease, for all UI resolutions. The libraries build UIs in layers, allowing for 3D transformations and more. EFL includes the Evas canvas API library and the elementary widget library. 

 Multimedia:  Tizen’s Multimedia services are based on GStreamer and provides support for video, audio ,imaging and VoIP. Pulseaudio based audio server functionality is  also present 

 Web:   This includes a version of Webkit ,  a layouting engine, for rendering of web pages. Also it provides a complete implementation of Tizen Web API which is customized for a vied variety of devices. The component is also responsible for providing a web runtime for web applications. 

Messaging:  This is the component from where all the message management is done. This component provides support for SMS, IM, Email  and Multi Media Messages.

Location:  This provides Location Based Services and is based on GeoClue. Thus enabling location tracking from multiple sources like GPS, Wifi Positioning System , Cell Id and other sensors.

Security: It’s responsible for ensuring security across the system and supports features like access control, certificate management, secure app distribution. Also Simplified Mandatory Access Control Kernel (SMACK) is a key ingredient in Tizen security. 

 System:  It takes care of all the system and device management features , it provides an interface to various connected devise, hardware or sensors etc. Another feature which is handles at this component is the power management like controlling the display brightness and when to trigger a sleep. It also handles various device handling events  like USB , charger ear jack events , Alarm/ time management. The system upgrade and package management is also handled by it. 

Base: It contains linux base essential system libraries. The base is a self sufficient unit and with it one can boot to console. Base also provides support for database, internationalization and XML Parsing

Connectivity:  This component takes care of all the connectivity related functionalities like Wifi, 3G, Bluetooth, NFC, HTTP. 

Telephony: It provides support for all cellular related functionalities like:
  1. Call and Non Call related information management
  2. Services for UMTS and CDMA
  3. SMS related services
  4. Management of SIM , Phonebook and Security
  5. Management of SIM application toolkit
PIM:  PIM stands for Personal Information Management and helps in managing user data on device like management of calendar, contacts , tasks etc.   References:
  1. Tizen Architecture Overview by Sunil Saxena (https://www.tizen.org/sites/default/files/tizen-architecture-linuxcollab.pdf)
  2. https://www.tizen.org/
For experiencing and discussing Tizen based Mobile apps or other Internet of Things Projects please do reach us(Recrosoft Technologies Pvt. Ltd. ) at  http://www.recrosoft.com

Saturday, 20 December 2014

Connected Car: The Google Way

We all have been using Android phones in our cars, we rely on these Android devices for a plethora of things, whether it’s for GPS based routing or for playing our favorite music or just taking a phone call, our Android device is there to help us. If that’s the case then why the project Android Auto is making so much buzz these days .. Is there anything special underlying there or it’s just a transitory craze.. Let’s dig deeper into the project to find out what exactly is Android Auto..

Image Source: Android.com
Android Auto was designed giving safety the utmost priority. We all know how many times we have to look at the smartphone screen when we try to use the same in our car. Most of the time the information is not easily available and we have to make some interesting swipes to reach it and that too while driving.. Android Auto provides simple and intuitive interfaces, provides an integration with steering wheel controls  and supports voice commands thus minimizing the attention required for operation and also ensuring that you get what you require without disturbing your driving.

ImageSource: Androd


Android Auto uses cards to bring out all the useful information that is relevant for you. The cards are smart enough to appear when you actually need them. It also provides a voice guided navigation and traffic update so that you take the right route. Also Android Auto support seamless integration with your  smartphones thus taking care of your music, contacts ,notifications  and calls when you are on your way. Last but not the least there are beautiful auto apps already in market which can be used with Google Auto..

Enough  of Gyaan I am a developer , whats there for me in Google Auto:

 As Google says.. Android Auto basically extends the Android Platform into the car. When a user connects is Android 5.0+ smartphone to a compatible vehicle , the Auto provides an Android Experience to the user which is optimized for the car. Once connected , user can interact with compatible apps and services through voice commands and Car’s Interface like steering controls / dashboard buttons.

The developers can write their apps without having to worry about the vehicle specific  hardware , they don’t have to worry about screen resolution , touch controls, knobs or other hardware controls , the apps created using this platform provide same user experience on all the compatible vehicles running Google Auto.

As of now there are two type of apps which are supported by Auto :
  •     Audio Apps: These apps all users to browse and play music and spoken audio content in car.
  •     Messaging Apps : They receive incoming notifications, read out messages and send out replies using the voice interface.

To start with the development  , no vehicle specific hardware is required even a normal android tablet/ smartphone is good enough to begin the development, all you need to do is to just adjust your manifest for the car capabilities that you need to use. The support for Auto is available from Android 5.0 (API level 21)


The Road Ahead:  Although the Auto is going good but Google is planning  for something much bigger than this . If rumors are to be believed then Google is planning to build a version of Android  directly into the cars, thus allowing drivers to use all Android specific features even without plugging their smartphones in the car. As Auto was tightly coupled with the connected smartphone.  But if Android M provides this feature then it would not only solidify Google’s position in the market but also  provide a reply which is much  bigger than the offering of their rival apple (As Car Play is pretty much similar to Android Auto )

For experiencing and discussing Auto based apps please do reach us(Recrosoft Technologies Pvt. Ltd. ) at  http://www.recrosoft.com

Sunday, 23 November 2014

The Connected World: A future which is not that distant

Recently I was going through some articles on Internet of Things and came across a wonderful  article from IDG. The article talks about how IoT will play a major role in the connected enterprise. So just read on ......


When people talk about the Internet of Things (IoT), the most common examples are smart cars, IP-addressable washing machines and Internet-connected refrigerators. But IoT is coming to the enterprise as well, and CIOs should already be thinking about the ways it will shake up the corporate network.“Products and services which were previously outside their (CIOs’) domain will increasingly be under their jurisdiction,” says Daniel Castro, senior analyst with the Information Technology and Innovation Foundation (ITIF), a US-based research and educational institute.

So, what are these devices?

Castro says that companies increasingly will be operating in “smart buildings” with advanced HVAC systems that are connected to the rest of the corporate network.

Many utility companies will be deploying Web-connected smart meters at customers’ facilities to allow for remote monitoring.

Companies are tying their physical security to their network security, so that data from security cameras and authentication readers are coming under the purview of enterprise IT. Most of the retailers already use RFID and other tracking technologies to manage supply chain logistics, says IDC’s Michael Fauscette. IoT is therefore a natural next step.

Then there’s operational technology (OT), where enterprise assets such as manufacturing equipment, fleet trucks, rail cars, even patient monitoring equipment in hospitals become networked devices, says Hung LeHong, research vice president at Gartner.

“Those types of assets are becoming Internet-enabled,” LeHong says. And even though they are managed by field operations or hospital services, they could become end-points on the corporate network.

Other examples of OT might include companies deploying vending machines that are connected to the Internet, so that they can be automatically restocked when certain items run low.

Another key area where IoT is making an appearance is what Gartner calls the digital supply chain. That’s when a company’s end-products, such as consumer electronics or large machinery, are Internet-enabled so that the manufacturer can keep track of maintenance schedules and other such aspects.
Besides, IoT is also showing up in consumer offerings such as home automation and smart grid. IT executives in industries such as gas and electric utilities will need to stay abreast of developments such as how smart meters and other types of data-generating solutions will affect IT and the corporate network.

And finally, IoT is emerging in so-called smart cities, where all kinds of devices and assets such as traffic lights, parking meters and garbage truck fleets are gradually being connected to the Internet. Municipal government IT executives will need to be aware of how these assets tie in to the network.

IT and OT Convergence

What will likely happen is a convergence of OT and IT. “As these machines go onto the corporate network, CIOs need to start talking together about what the future will look like when traditional IT and OT overlap on the network,” LeHong says.

“Who is responsible for providing security, for example,” LeHong asks. “There are existing IT skill sets that are very developed, but are at the same time, new or not a prime focus for the operations guy. There can be some synergies.”

IT executives will need to prepare themselves for situations such as when an IP-based vending machine is creating software replenishment orders for out-of-stock items using an ERP application, he believes.

“When it creates the replenishment order, does the vending machine need a user license for the ERP application?” LeHong asks. “CIOs need to get an understanding of this. Even if they are not going to own the vending machines, they need to worry about things like these. That’s what we mean by convergence. OT and IT need to discuss things like governance, security, software licensing and maintenance.”

In terms of networking technology and strategies at enterprises, IoT will have a significant impact. According to a report on IoT trends published by Gartner in 2012, things will be connected, but not necessarily in the ways most familiar to companies today. “Wi-Fi, 3G/4G cellular and Bluetooth are the wireless connectivity technologies we are most familiar with. However, they will not be the only way things connect to the Internet,” the report says.

These network technologies and protocols consume lots of power and are designed for higher-bandwidth applications, the firm says, but many things (for example, a temperature/humidity sensor in a remote agricultural setting) will require low bandwidth, long range and very low power consumption.

Looking ahead to the next few years, growth of the IoT will probably be greatest in areas such as inventory tracking and supply chain management, says Castro from ITIF. But given the way technology is developing, it’s likely that the IoT will be pervasive in many aspects of business.

Source:  http://www.connectedenterprise.in/feature/internet-things-coming-network-near-you#front

For experiencing IoT in real life please do reach us at http://www.recrosoft.com


Saturday, 15 November 2014

Bluetooth Low Energy and Android

Bluetooth low energy or Bluetooth LE or Bluetooth Smart  is basically a wireless personal area
network technology designed and marketed by the Bluetooth Special Interest Group aimed at novel applications in the healthcare, fitness, security, and home entertainment industries.

With Android 4.3 (API Level 18)  the support for Bluetooth Low Energy comes built in the platform and also the multiple APIs have been made available which the apps can use to discover devices, query for services, and read/write characteristics.

When compared to Classic Bluetooth, Bluetooth Smart considerably reduces the power consumption  and the maintenance cost  while maintaining a similar communication range.  This allows Android apps to communicate with BLE devices that have low power requirements, such as proximity sensors, heart rate monitors, fitness devices, and so on. The fields for which these apps can be build are endless , but to start with I am listing down a few areas where BLE based apps are picking up at a very fast pace:
a.       Health Care
b.      Sports and Fitness
c.       Notifications and Messaging Alerts
d.      Proximity sensing

This video from google provides a great overview of how Android is leveraging this technology to spread joy among the  android community and preventing  battery drain..




For experiencing and discussing awesome apps  please do reach us(Recrosoft Technologies Pvt. Ltd. ) at  http://www.recrosoft.com

Sunday, 26 October 2014

The ABC of Internet of Things

We found an interesting article on IoT ( courtsey: computerworld.in) and thought of sharing the same with you.


What is the Internet of Things?

There is no agreed-upon definition, but there is a test for determining whether something is part of the IoT: Does one vendor’s product work with another’s? Does a door lock by one vendor communicate with a light switch by another vendor, and do you want the thermostat to be part of the conversation?

Here’s the scenario: As you approach the front door of your house, a remote control built into your key unlocks the door. The door’s wireless radio messages the network, which prompts the hall light to turn on. The house thermostat, which was lowered after you left for work, returns to a comfort zone. Everything is acting in concert, which brings us to the elegant definition of IoT by Paul Williamson, director of low power wireless for semiconductor maker CSR: “A true Internet of Things is coordination between multiple devices.”

What makes the Internet of Things almost human?

In a word: Sensors. Many IoT devices have sensors that can register changes in temperature, light, pressure, sound and motion. They are your eyes and ears to what’s going on the world. Before we talk about what they do, let’s describe them. These sensors are part of a device category called a microelectromechanical system (MEMS) and are manufactured in much the same way microprocessors are manufactured, through a lithography process. These sensors can be paired with an application-specific integrated circuit or an ASIC. This is a circuit with a limited degree of programming capability and is hardwired to do something specific. It can also be paired with microprocessor and will likely be attached to a wireless radio for communications.

Can you give an example of how IoT sensors work?

Here’s the scene: You are away on vacation and the house is empty. A moisture sensor detects water on the basement floor. That sensor finding is processed by an app, which has received another report from a temperature sensor that detects the flow of water in the main water pipe. (When water flows, it takes away heat and lowers the temperature).

That both sensors are detecting anomalies is cause for concern. A high rate of flowing water may signal a burst pipe, triggering an automated valve shutoff; a slight water flow might be a running toilet, and the water on the basement floor by routine leakage from a heavy rain. In either case, you get a machine-generated message describing the findings.

Here’s how you investigate. Via a mobile app, you get two one-time codes to unlock your front door, one for your neighbor and another for a plumber. When the door is unlocked, a text alert tells you who entered. Having knowledge of the condition of your home may be a big driver of IoT adoption.

How will IoT sensors work in public spaces?

Take parking. Cities are embedding sensors in on-street parking spaces from a company called Streetline that can detect if a car is parked in one. Drivers looking for a parking space use the company’s mobile app, which lets them know when a space becomes available. Streetline has also added sound level and surface temperature sensors to help cities determine the best times to apply salt and use noise sensors to ensure compliance with ordinances.

In the public arena, a smartphone can double as a sensor. In Boston, as people drive down a road, the phone’s accelerometer sensor will keep track of bumps. An accelerometer can tell up from down, but more precisely it measures acceleration. All it took to turn a smartphone into a road condition monitoring tool, was an app that used its existing sensor in a new way.

Do you want your bathroom scale to talk to your refrigerator?

The IoT opens up a lot of opportunity for creative app writers. Let’s start with a smart refrigerator. You buy your groceries online and have them delivered to your home. It has now become advantageous for grocers and food product makers to add RFID tags to their products. The refrigerator knows what is inside via weight-sensitive shelves and expiration dates. It can also help you keep a grocery list, automate orders and provide nutritional information.

For instance, let’s say you decide to take a pint of Ben and Jerry’s ice cream out of the freezer. When that happens, a connected wireless speaker announces, loudly: “Please reconsider this selection. As requested, here is your most recent weight and BMI.” The wireless speaker is reporting data collected from your bathroom scale. The scale was never designed to communicate with a refrigerator, but an app writer made it so by linking data from the scale and fridge. This scale-fridge-speaker combination may seem silly, but here’s the point: In the IoT, app writers now have the ability to connect seemingly disparate things to create new types of functionality.

How do IoT devices communicate?

An IoT device will have a radio that can send and receive wireless communications. IoT wireless protocols are designed to accomplish some basic services: Operate on low power, use low bandwidth and work on a mesh network. Some work on the 2.4 GHz band, which is also used by Wi-Fi and Bluetooth, and the sub-GHz range. The sub-GHz frequencies, including 868 and 915 MHz bands, may have the advantage of less interference.

Why is low power and low bandwidth important in IoT?

Some IoT devices will get power from electrical systems, but many, such as door locks and standalone sensors, will use batteries. These devices send and receive small amounts of information intermittently or periodically. Consequently, the battery life of an IoT device can range from 1.5 years to a decade, if the battery lasts that long. One IoT maker, Insteon, uses both radio and powerline communication, which can send data over existing electrical wiring as well as via a radio, which it says will offer an increased measure of reliability.

What is a mesh network?

Devices in a mesh network connect directly with one another, and pass signals like runners in a relay race. It is the opposite of a centralized network. The transmission range of an IoT device on a mesh network is anywhere from 30 feet to more than 300 feet.

Since mesh network devices can hand-off signals, they have an ability to connect thousands of sensors over a wide area, such as a city, and operate in concert. Mesh networks have the added ability of working around the failure of any individual device. Wireless mesh IoT protocols include the Z-Wave Alliance, the Zigbee Alliance, and Insteon, which also has an alliance of vendors. These protocols aren’t directly interoperable, although there are workarounds via hubs (more on this later).

ZigBee is an open protocol, but its critics say that not all of its implementations are necessarily the same. ZigBee runs a certification to ensure standard deployments. Insteon and Z-Wave are proprietary, which may ensure standardization of implementation.

What’s the best wireless network for the IoT?

Today, no wireless technology has a dominant market share in IoT applications. Nick Jones, an analyst at research firm Gartner, said more than 10 IoT wireless technologies will “get significant traction” in IoT applications. These wireless technologies include cellular, satellites and new communications such as Weightless, which uses “white space,” or unoccupied TV channels. More importantly, no one wireless technology will meet every need and circumstance. A connected car, for instance, will use a cellular network to contact your home network.

Will I need a gateway or hub in the IoT?

A gateway, bridge or hub provides a connection point between your home network and other devices. The hub works with your home router and provides communications to the machines, devices and sensors that are part of your IoT universe. You will want, by default, your Zigbee smart meter to communicate with your Z-Wave or Insteon thermostat. This will also be true for the washing machine that is connected to a smart metering system and starts a wash only when electric rates are at their lowest point. These connections will be established through hubs that support multiple wireless technologies.

SmartThings, for instance, makes a hub that supports both Zigbee and Z-Wave, as well as a platform to build connecting applications. Eventually, these wireless technologies may be included in home routers, set-top boxes from your cable companies, or even devices such as a Google Chromecast.

Won’t Bluetooth win in the end?

Bluetooth Low Energy was originally aimed at wearable technology, not the broad IoT market. But in early 2014, CSR, a semiconductor maker, announced a mesh network for Bluetooth, meaning it could now connect to thousands of things.

Bluetooth’s ubiquity in mobile devices means that a Bluetooth mesh network as a broad IoT platform will have some advantages. Because Bluetooth is already a feature on smartphones, a smartphone could act as a management hub inside a home. But it’s not perfect. A hub will be needed if someone wants to connect with the home network remotely, such as from work.

Do the big consumer product vendors really want an Internet of Things?

Skeptics say it’s unlikely that all the big vendors will embrace open standards. A more likely outcome for the IoT are technological islands defined by proprietary data interchanges.

Without open standards or open communication protocols, devices on the network won’t be able to share data and work in concert. Will Apple develop products that can connect with Samsung products? Will Bosch products communicate with those from Samsung or Sears? Maybe not.

Consumers will be frustrated and will be told that they need to buy into a particular vendor’s product partner network to get a full IoT experience.

Can open source force the big vendors to play nice?

Open source advocates are hoping they can avert a fracturing of the IoT. The Linux Foundation, a nonprofit consortium, created the AllSeen Aliance and released a code stack in late 2013 that can be used by any electronics or appliance maker to connect to another product. The alliance hopes that the sheer weight of adoption of this stack, called AllJoyn, will help to push the IoT toward open standards. AllJoyn is agnostic about wireless protocols, and support for Bluetooth LE, ZigBee and Z-Wave can be added easily by the community.

Will the IoT destroy what little privacy you have left?

Privacy advocates are plenty worried about the IoT’s impact on consumers. Part of this is due to the arrival of IPv6 addresses, the next generation Internet protocol. It replaces IPv4, which assigned 32-bit addresses, with a total limit of 4.3 billion; IPv6 is 128-bit, and allows for 340 trillion trillion trillion addresses or 340,000,000,000,000,000,000,000,000,000,000,000,000. This makes it possible to assign a unique identifier to anything that’s part of the IoT (although not everything needs to be IP addressable, such as light switches). This may enable deep insights into a home. Smart metering systems, for instance, will be able to track individual appliance use.

“Information about a power consumer’s schedule can reveal intimate, personal details about their lives, such as their medical needs, interactions with others, and personal habits,” warned the Electronic Privacy Information Center, in testimony in late 2013 at a Federal Trade Commission workshop. This is information that may be shared with third parties. At this same FTC workshop, another leading privacy group, the Center for Democracy and Technology, outlined its nightmare scenario.

Light sensors in a home can tell how often certain rooms are occupied, and temperature sensors may be able to tell when one bathes, exercises or leaves the house; microphones can easily pick up the content of conversations. The message is clear: Courts, regulators and lawmakers will be fighting over IoT privacy safeguards for years to come.

Will my smart washer attack me?

Security experts are worried that consumers won’t be able to tell the difference between secure and insecure devices on their home network. It will be a threat to enterprise networks as well. These devices, many of which will be cheap and junky and made by who-knows-who overseas, may not have any security of their own.

Security researchers imagine problems, such as the connected toilet, demonstrated at a recent Black Hat conference, which flushed and closed its lid repeatedly. Hackers could create havoc by turning appliances and HVAC systems on and off. Baby monitors have been successfully taken over by outsiders. One advantage that IoT security may have is it’s still in its early stages, and the security community has a chance to build IoT systems with a strong measure of protection. Cisco is fishing around for ideas. The company is running a contest (with a June 17 submission deadline) with $300,000 in prize money for ideas for securing the IoT.

When will the Internet of Things be ready for prime time?

Vendors will be sorting out the various protocols and technologies for years. Consumers are curious, perhaps, but sensors and hubs for the home aren’t flying off the shelves. There are real IoT uses today, especially for home monitoring and security. For now, the big users of sensor networks and remote intelligence gathering are businesses and governments.

Governments are deploying sensors to alert them to failed street lights, leaks in water systems and full trash cans. Sensors will likely have a major role in traffic control, forest fire and landslide detection. Remote sensing is already mainstream in many industries, office buildings and in the energy supply.

It’s the consumer applications that get the most attention because they involve almost every industry and platform: health systems, home energy use, hardware, home building, electronics and the entire category of wearables, including clothing. Even plumbers will have to be aware of the IoT because of connected shut-off valves. But no one is going to stand in line for the latest smart refrigerator. It isn’t the next iPad. The IoT rollout will be slow and will occur over many years, as appliances are replaced and home electrical systems are upgraded with smart devices.

What’s the worst case scenario?

That a true coordination between multiple devices never comes to pass. Vendors, initially, will build islands, closed IoT environments that only work with their products and those made by selected partners. Privacy protections may be treated loosely, with users forced to opt out if they don’t want their home turned into a giant spy cam for marketers.

We haven’t even mentioned things like Google Glass. Imagine a scenario where people agree to share live streams as part of a Neighborhood Block Watch. A surveillance state may arrive on a flood of good intentions. But the IoT has potential to make life more efficient, safer, healthier and environmentally friendly.

In particular, people who install solar energy systems and use net metering, essentially selling surplus energy back to the utility, will have powerful reasons to install aware and connected systems. But whether these systems can work together will depend on the willingness of vendors to make their products connectable. There is no vendor large enough to control the IoT, but there are vendors large enough to make a mess of it

Source : http://www.computerworld.in/feature/the-abcs-of-the-internet-of-things7

For experiencing IoT in real life please do reach us at http://www.recrosoft.com