IoT Cloud

所在平台: Coursera

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

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课程简介

课程名称:物联网云(IoT Cloud) 概述:该课程是我们四门课程系列的最后一门,建立在前三门课程:物联网设备(IoT Devices)、物联网通信(IoT Communications)和物联网网络(IoT Networking)的基础上。在完成小型自驾车辆的构建和编程后,我们将增强其连接性并添加重要的安全基础设施。本课程将更深入地探讨各种剩余类型的去中心化网络拓扑结构。在实验室中,我们还将涵盖基于机器学习的重要云技术。在前两周的讲座中,我们将介绍网络的重要组成部分。比喻来说,学习人体工作原理时,要先了解“器官”,如胃、肝脏等。同样,我们可以通过理解构成网络的各个组件及其功能,来更好地理解网络。 大纲: - 第1周:课程导览与网络设备(第一部分) 描述:本周我们将开始探讨网络设备的基本概念,并深入了解它们的运作、配置及其如何协同工作以实现网络的各种特性和目标。 - 第2周:基础设施:网络设备(第二部分) 描述:继续探索第一周的主题,注意本周的测验将涵盖第一和第二周的内容。 - 第3周:基础设施:物理基础设施与布线(第一部分) 描述:随着互联网的普及,我们需要解决物理挑战,学习如何保护系统免受环境因素的影响。将讨论不同种类的布线和金属,如何设计和维护以应对各种实际环境中的挑战。 - 第4周:基础设施:物理基础设施与布线(第二部分) 描述:继续深入探讨第三周的主题,注意本周的测验将涵盖第三和第四周的内容。 此课程适合希望深入了解物联网云技术及其基础设施的人士,尤其是对网络设备和物理基础设施有兴趣的学员。

课程大纲

Name:Week 1: Course Orientation and Networking Devices Part 1

Description:You almost made it! This course is the last course in our series of four courses and builds on the previous three courses: IoT Devices, IoT Communications, and IoT Networking. After we have built and programmed a small self-driving vehicle, we then set out to enhance its connectivity and add important security infrastructure. In this course we will now look closer into various remaining types of decentralized network topography. In the honors lab (which we strongly recommend), we will additionally cover important cloud technologies based on machine-learning. In the first two weeks' lectures, we will cover important components of networks. Metaphorically speaking, when you learn how the human body works, you start by understanding the "organs", the stomach, the liver, and so on. Likewise, we can best understand networks by understanding the individual components that make them up and their function. In this lecture series we will study "devices" such as routers, switches, firewalls, load balancers, and many more. We will learn about how they individually operate, how they are configured, and how they work together to achieve various network-wide properties and goals.

Name:Week 2: Infrastructure: Networking Devices Part 2

Description:This week, we continue to explore further the topic of week 1. Please be aware that the quiz of this week will cover both week 1 and 2.

Name:Week 3: Infrastructure: Physical Infrastructure and Wiring (Part 1)

Description:As the Internet becomes "everything", we need to deal with physical challenges. We will study how to protect our systems from the elements and other challenges that occur in deployments in real environments. We will learn about different kinds of wiring and metals, how their makeup and design can protect against the elements, we will talk about how to deploy, maintain, and troubleshoot in the air, the sea, and in jungles. The goal of this lecture series is to make you aware of challenges, and to design robust systems that work well in a broad spectrum of real environments.

Name:Week 4: Infrastructure: Physical Infrastructure and Wiring (Part 2)

Description:This week, we continue to explore further the topic of week 3. Please be aware that the quiz of this week will cover both week 3 and 4.

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课程详情

This course is the last course in our series of four courses and builds on the previous three courses: IoT Devices, IoT Communications, and IoT Networking. After we have built and programmed a small self-driving vehicle, we then set out to enhance its connectivity and add important security infrastructure. In this course we will now look closer into various remaining types of decentralized network topography. In the lab, we will additionally cover important cloud technologies based on machine-learning. In the first two weeks' lectures, we will cover important components of networks. Metaphorically speaking, when you learn how the human body works, you start by understanding the "organs", the stomach, the liver, and so on. Likewise, we can best understand networks by understanding the individual components that make them up and their function. In this lecture series we will study "devices" such as routers, switches, firewalls, load balancers, and many more. We will learn about how they individually operate, how they are configured, and how they work together to achieve various network-wide properties and goals.

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