IoT Devices

所在平台: Coursera

课程主页: https://www.coursera.org/learn/iot-devices-il

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课程简介

课程名称:物联网设备 课程概述:物联网(IoT)将成为计算领域的下一个革命。数十亿台连接到互联网的数据生成设备正在根本改变我们的生活和工作方式。本课程将从基础开始教授物联网技术的深入理解。学生将学习物联网设备编程(Arduino和Raspberry Pi)、传感和执行技术、物联网协议栈(如Zigbee、5G、NFC、MQTT等)、网络回程设计与安全性实施、物联网数据科学以及基于云的物联网平台(如AWS IoT)。作为可选的荣誉活动,学生将在实验室作业的指导下获得实践经验,部署分布式Wi-Fi监控服务、为数万心跳传感器提供的基于云的物联网服务平台等。学生将从课程中掌握快速发展的技术领域的前沿知识,增强在工业环境中进行常见任务的信心。重要提示:完成整个系列的实践部分(荣誉)时,将使用实际硬件进行实验,学生需要自行获取(成本可能在100至200美元之间,具体视地点而定)。第一个课程所需的大部分零件将在后续课程中重复使用。 课程大纲: 第1周:导向、基础知识和实验室说明 描述:欢迎参加我们的物联网课程!您将熟悉课程和学习环境,导向帮助您获得必要的技术技能,能够顺利进行课程学习。本周将了解物联网的基本概念,它由多年来存在的系统、协议和架构构成。为了理解IoT,必须了解互联网的一些关键部分。作为可选的“荣誉”活动,我们将引导您开始实验室项目,帮助您获取实践经验,通过实现2019年本田思域的车载网络和计算基础设施,学习编程物联网组件及车载网络的知识。 第2周:设备:物联网电路 描述:这一周我们将描述建立真实物联网设备所需的电力和物联网电路的基础概念。我们将介绍电力的基本概念及其在电子中的流动,电子元件的选择,以及如何构建电路逻辑。 第3周:物联网设备架构 描述:在计算领域也有架构的概念。本模块将学习物联网系统的架构。我们将描述用于构建物联网系统的高级组件,例如集成电路和分离模块,构建实际物联网设备所使用的计算平台及其典型组件,和替代设计。 第4周:设备:Arduino编程与实验室提交 描述:本周我们将研究物联网平台的设计,学习其组件的组装以及运行其上软件的作用。此外,我们还将收集您在第一周开始的实验室项目的提交。

课程大纲

Name:Week 1: Orientation, Basics and Lab instructions

Description: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.

Name:Week 2 - Devices: IoT circuits

Description: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.

Name:Week 3 - IoT Devices Architecture

Description: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.

Name:Week 4 - Devices: Arduino Programming and Lab Submission

Description: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.

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课程详情

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.

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