IoT Devices
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IoT Devices
This course is part of Hands-on Internet of Things Specialization
Instructor: Matthew Caesar
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What you'll learn
Assembly of networked devices, programming of networked devices
Skills you'll gain
- Data Science
- Health Technology
- Computing Platforms
- Security Controls
- Embedded Systems
- Network Infrastructure
- Internet Of Things
- General Networking
- Network Planning And Design
- Communication Systems
- Local Area Networks
- Emerging Technologies
- Cloud Platforms
- Network Protocols
- Digital Communications
- Wireless Networks
- Infrastructure Security
Tools you'll learn
Details to know
10 assignments
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There are 4 modules in this course
The Internet of Things (IoT) stands to be the next revolution in computing. Billions of data-spouting devices connected to the Internet are already fundamentally changing the way we live and work. This course teaches a deep understanding of IoT technologies from the ground up. Students will learn IoT device programming (Arduino and Raspberry Pi), sensing and actuating technologies, IoT protocol stacks (Zigbee, 5G, NFC, MQTT, etc), networking backhaul design and security enforcement, data science for IoT, and cloud-based IoT platforms such as AWS IoT. As an optional honors avtivity, students will be guided through laboratory assignments designed to give them practical real-world experience, where they will deploy a distributed wifi monitoring service, a cloud-based IoT service platform serving tens of thousands of heartbeat sensors, and more. Students will emerge from the class with a cutting-edge education on this rapidly emerging technology segment, and with the confidence to carry out tasks they will commonly encounter in industrial settings. Important: To complete the practical part of the whole series (honors) there will be practical experimentation using actual hardware, which you will need to acquire. (Cost may vary between 100 and 200 USD depending on your location). Most parts that are needed for the first course, will be re-used in the following courses.
Welcome to our first course on Internet of Things! You will become familiar with the course and our learning environment. The orientation will also help you obtain the technical skills required to navigate the course. In this week you'll see that The Internet of Things is amazing, but it's not like it's some completely new thing. The amazing devices and technologies being are made up of systems, protocols, and architectures that have been around for decades. So in order to understand IoT, it's important to understand some key pieces of the Internet. As an optional "honors" activity (which we strongly recommend doing) we'll also get you started on the lab project - the best way to get your hands on things. In this practical lab we will guide you to gain experience with Internet of Things devices. You will do this by implementing a 2019 Honda Civic. In particular, you will be implementing a vehicular network and computation infrastructure comparable to that in the 2019 Honda Civic. Your infrastructure will perform real-time communications within the automobile to perform life-saving features such as obstacle avoidance and lane departure mitigation. Doing this will give you strong experience in programming IoT components, as well as teach you about vehicular networks, an emerging powerful use case for IoT.
What's included
14 videos8 readings3 assignments1 discussion prompt
14 videosβ’Total 92 minutes
- Welcome to Internet of Thingsβ’3 minutes
- Lecture 1: How the Internet Worksβ’7 minutes
- Lecture 2: How Can Many Hosts Communicate?β’7 minutes
- Lecture 3: What is a Protocol?β’4 minutes
- Lecture 4: Protocol Stacksβ’10 minutes
- Lecture 5: Network Addressingβ’9 minutes
- Lecture 6: Addressing Layersβ’6 minutes
- Lecture 7: IoT Protocolsβ’10 minutes
- Lecture 8: Intra-domain vs. Inter-domainβ’6 minutes
- Lecture 9: Example: XO Communications Backboneβ’4 minutes
- Lecture 10: Layer 2 vs Layer 3 Forwardingβ’8 minutes
- Lecture 11: Network Virtualizationβ’4 minutes
- Lecture 12: Delivery Methodsβ’8 minutes
- Lecture 13: Multicast Approachesβ’6 minutes
8 readingsβ’Total 80 minutes
- About this courseβ’10 minutes
- Required Items for the Hardware Labβ’10 minutes
- Course Communication and Discussion Forumsβ’10 minutes
- Updating your Profileβ’10 minutes
- Social Mediaβ’10 minutes
- Course Slides PDFsβ’10 minutes
- Week 1 Overviewβ’10 minutes
- Lab 1: IoT Devices Step 1β’10 minutes
3 assignmentsβ’Total 40 minutes
- Week 1 Quizβ’0 minutes
- Week 1 Honors Checklistβ’10 minutes
- Orientation Quizβ’30 minutes
1 discussion promptβ’Total 10 minutes
- Week 1 Discussionβ’10 minutes
In this week we will describe the foundational notions of electricity and IoT circuits you will need to build real IoT devices. We will start off by describing what electricity is and how it flows through electronics. We will present what electronic components are out there, how to choose the set you need for your target system, and how to construct the circuitry between them to build the logic underlying your device.
What's included
7 videos2 readings2 assignments1 discussion prompt
7 videosβ’Total 117 minutes
- Lecture 1: Introduction to IoT Hardwareβ’4 minutes
- Lecture 2: Background: Electrical Circuit Designβ’24 minutes
- Lecture 3: Use Case: Something That Lights Upβ’9 minutes
- Lecture 4: Use Case: Something That Uses Electricityβ’19 minutes
- Lecture 5: Use Case: Something That Movesβ’11 minutes
- Lecture 6: Use Case: Something That Observesβ’19 minutes
- Lecture 7: Useful Circuitsβ’30 minutes
2 readingsβ’Total 20 minutes
- Week 2 Overviewβ’10 minutes
- Lab: IoT Devices Step 2β’10 minutes
2 assignmentsβ’Total 10 minutes
- Week 2 Quizβ’0 minutes
- Week 2 Honors Checklistβ’10 minutes
1 discussion promptβ’Total 10 minutes
- Week 2 Discussionβ’10 minutes
In computing, we have the concept of architecture as well. You don't just design computing systems. In this module, you will learn about how IoT systems are architected. We will start off by describing the higher-level components used to build IoT systems such as ICs and breakout modules. We will present computational platforms used in constructing real IoT devices, typical components used therein, and alternative designs used to connect them together.
What's included
5 videos3 readings3 assignments1 discussion prompt
5 videosβ’Total 116 minutes
- Lecture 1: Integrated Circuits in Practiceβ’20 minutes
- Lecture 2: Data Encoding: Challengesβ’17 minutes
- Lecture 3: Data Encoding: Approachesβ’31 minutes
- Lecture 4: Microcontrollersβ’25 minutes
- Lecture 5: Programmable Circuitsβ’24 minutes
3 readingsβ’Total 30 minutes
- Week 3 Overviewβ’10 minutes
- Lab: IoT Devices Step 3β’10 minutes
- Lab: IoT Devices Step 3β’10 minutes
3 assignmentsβ’Total 40 minutes
- Week 3 Quizβ’0 minutes
- Week 3 Honors Checklistβ’10 minutes
- Lab Milestoneβ’30 minutes
1 discussion promptβ’Total 10 minutes
- Week 3 Discussionβ’10 minutes
In this week, we will study the design of IoT platforms - how their components are assembled together, and how software running on top orchestrates their actions to perform their intended purpose. We'll also collect your submission of the lab project you started in week 1.
What's included
2 videos3 readings2 assignments1 discussion prompt
2 videosβ’Total 46 minutes
- Lecture 1: IoT Platform Design and Programmingβ’22 minutes
- Lecture 2: Arduino Programmingβ’24 minutes
3 readingsβ’Total 30 minutes
- Week 4 Overviewβ’10 minutes
- Appendices to the Labβ’10 minutes
- Lab: Submission Instructionsβ’10 minutes
2 assignmentsβ’Total 10 minutes
- Week 4 Quizβ’0 minutes
- Week 4 Honors Checklistβ’10 minutes
1 discussion promptβ’Total 60 minutes
- Week 4 Discussion and Lab Submissionβ’60 minutes
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Reviewed on Sep 19, 2024
CONTENT IS VERY HELPFUL IN DAILY LIFE,SO I RECOMENDAD FOR ALL STUDENTS IN 1ST YEAR STUDENT.
Reviewed on May 12, 2022
tβhere should some changes needed beacause of new skills
Reviewed on Dec 15, 2021
This was a great course. I built something and it moved!!!!
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