TC_3 Sample Clauses

TC_3. Global switch‐off of devices in the meeting room. The safety server is a component similar to CMS/UDG server and will alert management. When the safety server receives a temperature value be in charge of the from the 6lowpan xxxx, a set of different rules are executed. If the temperature is low, the safety server registerss the value in a monitoring database. If the temperature is high, the safety server launches a set of alert messages towards IoT6 components. The communication between the safety server and the other IoT6 components is realised by a CoAP interface using the data format defined (JSON and oBIX). In the Test Case, the safety server processes the temperature values transmitted by the 6lowpan xxxx and detects a critical value when the temperature is higher than a pre- established threshold (e.g. 30°C). Then, the safety server sends a message to the CMS/UDG system for switching-off all legacy devices. Then the CMS sends a switch-off command to the multicast address associated to the legacy devices for deactivating the electronic components. In this Test Case, the Smart Board must ensure the forwarding from multicast IPv6 address to multiples legacy devices (KNX and BACnet). Figure 23: Test Case 3 t / f Below, an example of CoAP messages generated to switch off all legacy devices in the room where a high temperature was detected is shown. POST COAP://[Mul icast-IPv -Address] switch-of To support multicast addressing of legacy technologies, the Smart Board provides group communication objects. These groups map the IPv6 multicast addresses to basic oBIX value object types. In this Test Case, the obix:Point contract is used. To support group communication, the iot:groupCommContract has been developed. The contract implements querying a data point for its group as well as mechanisms o join or leave a group. The defined operations thereby expect an IPv6 multicast address as input.
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