
Examine protocol standardization for IoT, contrasting internet of things with web of things, and how web technologies enable fast prototyping, data integration, and seamless sensor–actuator integration.
IoT protocols introduces the two pillars of the web: pillar one, HTML, HTTP, and URL; pillar two, web browsers with multi-layered architecture and application servers, within a three-tier client–server model.
Explore machine-to-machine and wireless sensor network protocols, architectures, security, data transfer standards, device management, and the role of I Tripoli 1451 and DDS in IoT.
Explore SCADA and RFID protocols in industrial automation, detailing SCADA architecture with IED and IoT devices, OPC data exchange, and distributed processing across substations.
Learn the Modbus protocol, a simple, client-server, master-slave messaging model for industrial automation and hvac applications, supporting serial and ip-based links, with addresses, function codes, data fields, and error checks.
Explore ZigBee, a 2.15.4 based high-level IoT protocol for low-power personal area networks, enabling home automation and medical data collection via mesh networks with coordinators, routers, and end devices.
Explore IP-based protocols for IoT, including mqtt for lightweight publish-subscribe messaging and 6LoWPAN for IPv6 over low-power networks with mesh under and route over concepts.
Compare IPv4 address limitations with IPv6's large 128-bit address space for IoT. Identify IPv6 concepts such as unicast, multicast, anycast, and the RFC 4291 framework guiding coexistence with IPv4.
In this course, learners will be going to learn about various protocols designed for the implementation of the Internet of Things (IoT) applications. The prerequisite for this course will be learners must have basic knowledge about networking and different networking protocols. In this course, learners will be going to learn about Protocol Standardization for the Internet of Things (IoT). After that learners will going to learn about Machine to Machine (M2M) and Wireless Sensor Network (WSN) Protocols. Then learners will also be going to learn about the Radio Frequency Identification (RFID) Protocol. Then new protocol i.e. Modbus Protocol will be studied in this course. After this Modbus protocol, learners will be going to study about Zigbee Protocol, its Architecture, and other important points related to the Zigbee Protocol. Then learner will be going to study some important IP-based protocols in this course. Those IP-based protocols will be Message Queuing Telemetry Transport (MQTT Secure) Protocol, IPv6 over Low -Power Wireless Personal Area Networks (6LoWPAN) Protocol, etc. After successful completion of this course, learners will get the basic idea about the Protocol Standardization for IoT, M2M and WSN Protocols, RFID Protocol, Modbus Protocol, Zigbee Architecture. IP-based Protocols like MQTT (Secure), 6LoWPAN, etc.