IP Library Patent Application 14472883
Patent Application
App. No. 14/472,883

Network infrastructure component, network system having a plurality of network infrastructure components, and use of the network system

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Quick Facts
Patent No.
US None
App. No.
14/472,883
Abstract

The invention relates to a network infrastructure component and a distributed network system for supply purposes comprising a plurality of network infrastructure components, wherein the network infrastructure component comprises at least one contact unit for connection to a further network infrastructure component, and at least one coupling module for coupling a functional group, wherein the network infrastructure component is designed to communicate with a coupled functional group at least at a supply level, wherein the network infrastructure component is designed to communicate with at least one further network infrastructure component at least at the supply level and/or a data level, such that a self-configured network system for linking a plurality of functional groups can be produced with a network of a plurality of network infrastructure components. Preferably, the network infrastructure component comprises a control device for controlling operating parameters, in particular for load control at the supply level.

Claims (46)

1 . A network infrastructure component comprising the following:

at least one contact unit for connection to a further network infrastructure component, at least one coupling module for coupling a functional group, wherein the network infrastructure component is designed to communicate with a coupled functional group at least at a supply level, wherein the network infrastructure component is designed to communicate with at least one further network infrastructure component at least at the supply level and/or a data level, such that a self-configured network system for linking a plurality of functional groups can be produced with a network of a plurality of network infrastructure components.

2 . The network infrastructure component as claimed in claim 1 , furthermore comprising a control device for controlling operating parameters.

3 . The network infrastructure component as claimed in claim 2 , wherein the control device is furthermore designed to detect characteristic data of the coupled functional group.

4 . The network infrastructure component as claimed in claim 2 , wherein the control device is designed to take account of operating parameters of at least one further contacted network infrastructure component during the control.

5 . The network infrastructure component as claimed in claim 2 , wherein the control device is designed to communicate detected operating parameters at the data level to at least one further contacted network infrastructure component.

6 . The network infrastructure component as claimed in claim 2 , furthermore comprising at least one sensor element, wherein the at least one sensor element can be addressed by the control device.

7 . The network infrastructure component as claimed in claim 1 , which is furthermore designed to communicate with at least one further network infrastructure component and/or the coupled functional group at an auxiliary energy level.

8 . The network infrastructure component as claimed in claim 1 , which comprises an authentication unit for a user.

9 . The network infrastructure component as claimed in claim 2 , wherein the control device provides rule-based access rights for a user.

10 . The network infrastructure component as claimed in claim 2 , wherein the control device is designed to carry out load limiting and/or load disconnection for the coupled functional group.

11 . The network infrastructure component as claimed in claim 1 , wherein the communication at the data level with the at least one further network infrastructure component and/or the coupled functional group is carried out by means of wireless data transmission.

12 . The network infrastructure component as claimed in claim 1 , which furthermore comprises an identification unit, which allows the network infrastructure component and each coupling module and/or each contact unit to be unambiguously identified.

13 . A distributed network system for supply purposes, which is designed for transporting a network medium at a supply level, comprising a plurality of coupled network infrastructure components each comprising the following:

at least one contact unit for connection to a further network infrastructure component, at least one coupling module for coupling a functional group, wherein the network infrastructure component is designed to communicate with a coupled functional group at least at a supply level, wherein the network infrastructure component is designed to communicate with at least one further network infrastructure component at least at the supply level and/or a data level, such that a self-configured network system for linking a plurality of functional groups can be produced with a network of a plurality of network infrastructure components.

14 . The network system as claimed in claim 13 , wherein the network medium is electrical energy.

15 . The network system as claimed in claim 13 , wherein the network infrastructure components can be coupled to in each case at least one functional group designed as consumer, supplier and/or store.

16 . The network system as claimed in claim 13 , wherein at least one network infrastructure component can be coupled at least temporarily to an external monitoring system which allows observation and detection of operating parameters and service data.

17 . The network system as claimed in claim 13 , furthermore comprising a line system for connecting the coupled network infrastructure components.

18 . The network system as claimed in claim 17 , wherein the line system comprises a supply network for the network medium and a data network for communication data.

19 . The network system as claimed in claim 17 , which furthermore comprises an auxiliary energy network.

20 . The network system as claimed in claim 13 , wherein furthermore at least one converter unit is provided between a network infrastructure component and a coupled functional group.

21 . The network system as claimed in claim 13 , wherein at least one coupled functional group provides a readable representation of characteristic data which can be fed to the control device of one of the network infrastructure components.

22 . The network system as claimed in claim 13 , wherein the network infrastructure components provide integrated load control for the entire distributed network system.

23 . The network system as claimed in claim 13 , wherein each contact unit and each coupling module of each network infrastructure component can be unambiguously identified.

24 . The network system as claimed in claim 13 , wherein a plurality of supply levels embodied by different supply lines is provided.

25 . The network system as claimed in claim 13 , wherein a plurality of functional groups are provided, which are coupled to a network infrastructure component and which are designed as rechargeable energy stores, wherein the network system provides store management.

26 . The network infrastructure component of claim 2 , wherein the control device is for load control at the supply level.

27 . The network infrastructure component as claimed in claim 3 , wherein the control device is furthermore designed to detect characteristic data of the coupled functional group at the supply level and/or the data level.

28 . The network infrastructure component as claimed in claim 6 , furthermore comprising at least one temperature sensor element and/or an acceleration sensor element, wherein the at least one sensor element can be addressed by the control device.

29 . The network infrastructure component as claimed in claim 7 , which is furthermore designed to communicate with at least one further network infrastructure component and/or the coupled functional group at an auxiliary voltage level.

30 . The network infrastructure component as claimed in claim 8 , wherein said authentication unit is coupled to the control device.

31 . The network system as claimed in claim 14 , wherein the supply level is designed as a DC voltage network.

32 . The network system as claimed in claim 19 , which furthermore comprises an auxiliary voltage network.

33 . The network system as claimed in claim 20 , wherein furthermore at least one converter unit is provided between a network infrastructure component and a coupled voltage converter.

34 . The network system as claimed in claim 24 , wherein a plurality of supply levels embodied by a combination of lines for electrical energy and lines for thermal energy.

35 . The network infrastructure component as claimed in claim 11 , wherein the communication at the data level with the at least one further network infrastructure component and/or the coupled functional group is carried out by means of electromagnetic waves.

36 . The network infrastructure component as claimed in claim 11 , wherein the communication at the data level with the at least one further network infrastructure component and/or the coupled functional group is carried out by means of RFID technology.

37 . A method comprising the step of using a distributed network system for supply purposes for at least one of a group consisting of

the drive of a vehicle with an at least partly electrical drive,

as supply system for regenerative energies,

for operating network-independent electric tools,

as buffer store for foreign networks, and

as change station for exchanging energy stores;

wherein the distributed network system is designed for transporting a network medium at a supply level, comprising a plurality of coupled network infrastructure components each comprising the following:

at least one contact unit for connection to a further network infrastructure component, at least one coupling module for coupling a functional group, wherein the network infrastructure component is designed to communicate with a coupled functional group at least at a supply level, wherein the network infrastructure component is designed to communicate with at least one further network infrastructure component at least at the supply level and/or a data level, such that a self-configured network system for linking a plurality of functional groups can be produced with a network of a plurality of network infrastructure components.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 27, 2017
From: UNICORN ENGINEERING GMBH
To: UNICORN ENERGY GMBH
Reel/Frame 041386/0156 →
CHANGE OF NAME Recorded Feb 27, 2017
From: ROPA DEVELOPMENT GMBH
To: UNICORN ENGINEERING GMBH
Reel/Frame 041821/0775 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 11, 2014
From: DOERNDORFER, JOHANNES
To: ROPA DEVELOPMENT GMBH
Reel/Frame 034147/0417 →