1 / 2

Impact of IoT on Digital Engineering Services

Explore the role of IoT in reshaping digital engineering services. Learn about its impact on automation, scalability, and innovation in engineering. Get your PDF today!

Camille18
Download Presentation

Impact of IoT on Digital Engineering Services

An Image/Link below is provided (as is) to download presentation Download Policy: Content on the Website is provided to you AS IS for your information and personal use and may not be sold / licensed / shared on other websites without getting consent from its author. Content is provided to you AS IS for your information and personal use only. Download presentation by click this link. While downloading, if for some reason you are not able to download a presentation, the publisher may have deleted the file from their server. During download, if you can't get a presentation, the file might be deleted by the publisher.

E N D

Presentation Transcript


  1. Impact of IoT on Digital Engineering Services Impact of IoT on Digital Engineering Services What is the Internet of Things (IoT)? What is the Internet of Things (IoT)? IoT refers to the interconnected network of systems, sensors and devices that share and communicate data with each other via the internet. What is Digital engineering? What is Digital engineering? It is a specific practice in which new applications are planned and delivered. The process, utility and methodology of developing new digital products end-to-end are encompassed. Following are the steps required to leverage IoT and digital engineering Following are the steps required to leverage IoT and digital engineering services: services: 1.Problem identification: Firstly, the specific business problem is identified that can be worked out by leveraging IoT and digital engineering services. Requirements for IoT and digital engineering solutions should be gathered and documented. This includes security, performance and functional requirements. 2.The solution needs to be designed: The user interface and architecture for IoT and digital engineering solutions are designed and the appropriate tools and technologies that need to be used are ascertained.

  2. 3.Sensor and device development: Devices, sensors and other physical components of the IoT solution are developed and integrated 4.Developing software and cloud: The cloud infrastructure and software are developed that will be used to store, collect and analyze the data generated by the IoT devices 5.Quality assurance and testing: Security testing, performance testing and functional testing are used to test digital engineering services and IoT platforms. Testing is conducted to make sure that the requirements are met and deployment can be done accordingly 6.Initiating the deployment process: Both solutions are deployed by configuring the solution settings, setting up the necessary infrastructure and launching the solution 7.Carrying out the monitoring and maintenance process:The solution’s performance is monitored accordingly. Troubleshooting is done for any issues that may arise and regular software upgrades and updates are performed 8.Ensuring security and scalability: The interoperability, security and scalability of digital engineering and IoT solutions are continuously monitored and improved 9.The significance of user adoption: Users are provided with the required information about the benefits of the solution and thus providing the necessary resources and tools.

More Related