Trusted cyber physical system
US-2019268311-A1 · Aug 29, 2019 · US
US11818216B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11818216-B2 |
| Application number | US-202118019251-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 2, 2021 |
| Priority date | Aug 6, 2020 |
| Publication date | Nov 14, 2023 |
| Grant date | Nov 14, 2023 |
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A network for data transmission, in particular in automation technology, includes: a) a plurality of terminals, b) a common gateway for external connection of the network with the plurality of terminals to an external data transmission network, c) data connections between the common gateway and individual terminals of the plurality of terminals, and d) a plurality of OPC-UA servers. One of the plurality of OPC-UA servers is in each case assigned to the individual terminals, and individual OPC-UA servers communicate with corresponding terminals so that the individual terminals are addressable by the external data transmission network according to OPC-UA. A software component, which creates one of the OPC-UA servers, is in each case stored in the individual terminals. The common gateway loads the software components for creating the individual OPC-UA servers from the terminals and executes them in the common gateway.
Opening claim text (preview).
The invention claimed is: 1. A network for data transmission, in particular in automation technology, comprising: a) a plurality of terminals, b) a common gateway for external connection of the network with the plurality of terminals to an external data transmission network, c) data connections between the common gateway and the individual terminals of the plurality of terminals, and d) a plurality of OPC-UA servers, wherein one of the plurality of OPC-UA servers is in each case assigned to the individual terminals, and individual OPC-UA servers communicate with corresponding terminals so that the individual terminals are addressable by the external data transmission network according to OPC-UA, e) wherein a software component, which is configured to create one of the OPC-UA servers, is in each case stored in the individual terminals, and f) wherein the common gateway loads the software components for creating the individual OPC-UA servers from the terminals and executes them in the common gateway. 2. The network according to claim 1 , wherein the common gateway for communication with the individual terminals in each case has a port for the individual terminals, and wherein the common gateway loads the software component for creating the individual OPC-UA servers in a port-based manner, individually for each of the ports, so that one of the software components is in each case assigned to each of the ports. 3. The network according to claim 1 , wherein the individual terminals are in each case TCP/IP-capable. 4. The network according to claim 1 , wherein the individual OPC-UA servers in each case have a separate IP address in order to provide for an access from the external data transmission network to the individual terminals and for an individual addressing of the individual terminals. 5. The network according to claim 1 , wherein the individual terminals for communication with the assigned OPC-UA servers in each case have one of the following data interfaces: a) Ethernet, b) I/O link according to EN 61131, c) Highway Addressable Remote Transducer (HART). 6. The network according to claim 1 , wherein the terminals in each case include at least one sensor and/or at least one actuator. 7. The network according to claim 1 , wherein the terminals are in each case a module in an I/O station. 8. The network according to claim 1 , wherein the data connection between the common gateway and the individual terminals has a local bus.
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