[미국특허]
Communication device and method for redundant message transmission in an industrial communication network
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
H04L-012/26
H04L-012/46
H04L-012/24
H04L-001/08
H04L-001/22
H04L-012/707
출원번호
US-0458869
(2014-08-13)
등록번호
US-9673995
(2017-06-06)
우선권정보
EP-13180335 (2013-08-14)
발명자
/ 주소
Angst, Hermann
Götz, Franz-Josef
Klotz, Dieter
Lohmeyer, Joachim
Scheffel, Matthias
출원인 / 주소
Siemens Aktiengesellschaft
대리인 / 주소
Cozen O'Connor
인용정보
피인용 횟수 :
2인용 특허 :
0
초록▼
For redundant message transmission in an industrial communication network having an arbitrarily meshed network topology, mutually independent paths are ascertained for a communication link that is redundant at least in sections between two network nodes within the industrial communication network, w
For redundant message transmission in an industrial communication network having an arbitrarily meshed network topology, mutually independent paths are ascertained for a communication link that is redundant at least in sections between two network nodes within the industrial communication network, where the mutually independent paths comprise separate network nodes of a single communication network, and messages with duplicate identifiers are interchanged between transmission and reception units of communication devices of the industrial communication network in accordance with forwarding rules that correspond to the ascertained paths.
대표청구항▼
1. A method for redundant message transmission in an industrial communication network, in which at least one communication device comprises at least a first and a second transmitter/receiver that each have an interface for a network connection of the industrial communication network and are connecte
1. A method for redundant message transmission in an industrial communication network, in which at least one communication device comprises at least a first and a second transmitter/receiver that each have an interface for a network connection of the industrial communication network and are connected to a coupling element of the communication device, the first and second transmitter/receivers have an associated signal processor of the at least one communication device that sends messages that are to be sent in redundant form by the communication device in duplicated form from the first and second transmitter/receivers and detects messages received in redundant form from the first and second transmitter/receivers of the communication device, and in which messages that are redundant with respect to one another are denoted by a common duplicate identifier, the method comprising: ascertaining mutually independent paths for a communication link that is redundant at least in sections between two network nodes within the industrial communication network, the mutually independent paths comprising separate network modes of a single communication network; andinterchanging messages with duplicate identifiers between the first and second transmitter/receivers of the communication device in accordance with forwarding rules that correspond to the ascertained paths;wherein the industrial communication network has a meshed network topology;wherein a respective virtual local area network is set up for the ascertained mutually independent paths; andwherein the ascertained mutually independent paths are identified from an identity for their associated virtual local area network. 2. The method as claimed in claim 1, wherein the coupling element connects a singly connected network node to the first and second transmitter/receivers, wherein duplicate identifiers are inserted by the singly connected network node into messages that are to be sent in redundant form, and wherein duplicate identifiers are removed by the singly connected network node from messages that are received in redundant form. 3. The method as claimed in claim 1, wherein the coupling element connects a singly connected network node to the first and second transmitter/receivers, and wherein duplicate identifiers are inserted by the signal processor into messages that are to be sent in redundant form from the singly connected network node, and wherein duplicate identifiers are removed by the signal processor from redundantly received messages for the singly connected network node. 4. The method as claimed in claim 1, wherein the mutually independent paths are ascertained by the signal processor. 5. The method as claimed in claim 1, wherein the mutually independent paths are ascertained by a central entity within the industrial communication network. 6. The method as claimed in claim 1, wherein the mutually independent paths are ascertained locally by the network nodes of the industrial communication network. 7. The method as claimed in claim 1, further comprising: storing, by memory associated with the signal processor, duplicate identifiers from messages already received without error, andchecking, by the signal processor, upon receiving a new message, the duplicate identifier thereof for a match with an already stored duplicate identifier. 8. A communication device for a redundantly operable industrial communication network, comprising: at least first and second transmitter/receivers that each have an interface for a network connection of the industrial communication network;a coupling element connected to the transmitter/receivers; anda signal processor associated with the first and second transmitter/receivers, the signal processor comprising a replicator for duplicating messages that are to be sent in redundant form by the first and second transmitter/receivers and comprising a filter configured to detect redundantly received messages, messages redundant with respect to one another being denoted by a common duplicate identifier;wherein the communication device is configured to operate in an industrial communication network having a meshed network topology;wherein mutually independent paths are ascertained for a communication link that is redundant at least in sections between two network nodes within the industrial communication network, said mutually independent paths comprising separate network nodes of a single communication network; andwherein the signal processor further comprises a forwarding unit configured to ensure messages with duplicate identifiers are interchanged between the first and second transmitter/receivers of the communication device in accordance with forwarding rules that correspond to the ascertained paths. 9. The communication device as claimed in claim 8, wherein the coupling element connects a singly connected network node to the transmitter/receivers; wherein the signal processor further comprises a functional unit configured to ensure duplicate identifiers are inserted by the signal processor into messages that are to be sent in redundant form from the singly connected network node; andwherein the signal processor further comprises a functional unit configured to ensure duplicate identifiers are removed by the signal processor from redundantly received messages for the singly connected network node. 10. The communication device as claimed in claim 8, wherein a respective virtual local area network is set up for the ascertained mutually independent paths, wherein the ascertained mutually independent paths are identifiable from an identity for their associated virtual local area network, and wherein the coupling element comprises a controller configured to operate virtual local area networks. 11. The communication device as claimed in claim 9, wherein a respective virtual local area network is set up for the ascertained mutually independent paths, wherein the ascertained mutually independent paths are identifiable from an identity for their associated virtual local area network, and wherein the coupling element comprises a controller configured to operate virtual local area networks. 12. The communication device as claimed in claim 8, wherein the signal processor is configured to ascertain the mutually independent paths. 13. The communication device as claimed in claim 8, wherein the first and second transmitter/receivers are one of (i) directly connected to the coupling element and (ii) connected to the coupling element via the signal processor. 14. The communication device as claimed in claim 8, wherein the signal processor is one of (i) directly connected to the first and second transmitter/receivers and (ii) connected to the first and second transmitter/receivers via the coupling element. 15. The communication device as claimed in claim 8, wherein the signal processor comprises memory for storing duplicate identifiers from messages already received without error, and wherein the filter is configured to check a duplicate identifier thereof for a match with an already stored duplicate identifier when receiving a new message.
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