The present invention relates to a communication system for providing communication between a control module and an oil and/or gas module.
Different types of subsea modules are used in subsea oil/gas installations. In
A control module (SCM) is connected to a connection interface 2a (
The SCM comprises several connectors for connection between the SCM and the connection interface 2a of the subsea module 2. These connectors are AC and/or DC power connectors, high pressure and/or low pressure hydraulic connectors and communication connectors.
Today, the owner and/or operator and/or legislator of the respective oil/gas field have different requirements for the subsea modules and its SCMs. Accordingly, almost all SCMs are tailor-made for its specific subsea module, which contributes to manufacturing costs and a substantial delivery time.
In
The oil and gas industry is facing several challenges with respect to reducing costs for subsea equipment and subsea operations. Hence, one object is to reduce the size and cost of control devices for subsea modules and their control modules. Another object of the invention is to standardize the design of such control modules while at the same time allowing the owner and/or operator of the oil/gas field to adapt the control modules according to their specifications.
One way of adapting a control module to several oil and/or gas modules is to use an adapter, as known from U.S. Pat. No. 8,720,576. Here, the same control module may be used for different oil and/or gas modules, since the adapter is connected between the control module and the oil and/or gas module. The adapter contains hydraulic fluid lines, communication lines and electrical power lines for transferring hydraulic fluid, communication signals and electric power between the control module and the oil and/or gas module. This adapter will increase the weight of the overall system. Moreover, if there are many different possible configurations of the oil and/or gas module, many different adapters will be needed.
One object of the present invention is to reduce the number of project specific variants of such modules, which in turn will reduce the costs and workload required for testing such variants. Hence, one object is to increase the standardization of such modules and/or to increase the flexibility of such control modules.
Another object of the present invention is to reduce the weight of such control modules, or at least avoid increasing the weight of such control modules.
The present invention relates to a communication system for providing communication between a control module having a connection interface with a plurality of connectors releasably connectable to a connection interface of an oil and/or gas module, where the communication system comprises:
In one aspect, the first type of communication is different from the second type of communication. However, the types of communication may be of the same type for redundancy purposes.
According to the invention described above, it is achieved that the hardware of the first and second electronic communication units can be standardized and these units are not dependent on the types of connectors defined by a specific project. Accordingly, the communication system of the control module may be adapted to the respective specification of the module in a simple and efficient way. The disadvantages of the extra adaptor unit of prior art described above is also avoided.
In one aspect, the reconfiguration unit is configured to perform configuration and/or reconfiguration of the connections between the respective connectors and the first and second electronic communication units by changing the software in the reconfiguration unit. In this way, only a change in software is necessary to reconfigure the communication types used by the connectors of the control module.
In one aspect, the reconfiguration unit comprises a plurality of multiplexer units, each multiplexer unit having an output terminal connected to one of the connectors, input terminals connected to the first and second electronic communication units and a control terminal connected to a control unit. The control unit is preferably a software control unit.
In one aspect, the electronic communication units and the reconfiguration unit are provided within a pressure-sealed housing, where the connectors of the connection interface are provided on the outside of the housing.
In one aspect, the first and second electronic communication units are providing communication by means of one of either CAN-bus communication, Ethernet communication, RS 422 communication, RS 485 communication or 4-20 mA communication.
In one aspect, the connectors are separated into a first group of connectors and a second group of connectors where the reconfiguration unit is provided for allowing connection of only one of the first or second electronic communication units to the first group of connectors.
In one aspect, each connector comprises several connector pins, where the reconfiguration unit is providing reconfiguration of the connections between the respective connector pins of the connectors and the first and second electronic communication units.
Embodiments of the invention will now be described with reference to the enclosed drawings, where:
It is now referred to
The present embodiment relates to a subsea control module 6 for controlling a subsea oil and/or gas module 2. However, the communication system 10 may also be used for communication between land-based control modules for controlling land-based oil and/or gas modules 2. The housing 13 is a pressure-compensated housing 13 with a connection interface 11 provided on the outside of, and in the lower part of, the housing 13. The connection interface 11 comprises a plurality of communication connectors 12 for releasable connection of the control module 6 to the oil and/or gas module 2. Hence, the control module 6 may be lowered onto, or elevated up from, a connection interface 2a of the oil and/or gas module 2. The subsea module 2 can be a manifold unit, a Christmas tree unit, a subsea umbilical termination unit, an electrical distribution module (EDM), a pipeline end manifold unit (PLEM), a boosting station, a riser base unit and other subsea modules which needs a supply of electric power and/or needs to send sensor signals.
The communication device 10 comprises communication units 20, 30. The electronic communication units 20, 30 are connected to a control system generally referred to with reference number 9 in
The first electronic communication unit 20 is providing a first type of communication via the connection interface 11, while the second electronic communication unit 30 providing a second type of communication via the connection interface 11. Of course, more than two electronic communication units may be provided. In
In
It is now referred to
The output terminal 42 of one multiplexer unit 41 is connected to one of the respective connectors 12. Hence, each of the connectors 12 is connected to a multiplexer unit 41. The input terminals 43 of the multiplexer unit 41 is connected to the electronic communication units 20a, 20b, 30a, 30b. The control terminal 44 of each multiplexer unit 41 is connected to a control unit 45.
By means of the control unit 45 it is now possible to configure and reconfigure which connector 12 that should be connected to which of the electronic communication units 20a, 20b, 30a, 30b. As mentioned above, configuration and reconfiguration may be performed by changing the software in the control unit 45.
In
Preferably, each connector 12 is connected to at least two electronic communication units, where the type of communication used by the first communication unit is different from the type of communication used by the second communication unit. However, for redundancy purposes, a connector 12 may also have the possibility to be connected to two different electronic communication units that are using the same type of communication. Moreover, it is of course possible to let one or more of the connectors 12 to be directly connected to a communication unit 20a, 20b, 30a, 30b, i.e. that no multiplexer unit 41 is involved in transferring the signal for that or those connectors 12.
It should also be noted that
Another simplification of
It is now referred to
It should be noted that the communication units 20, 30 and the reconfiguration unit 40 may be provided as separate electronic circuits on separate printed circuit boards within the housing 13. However, it s also possible to provide the communication units 20, 30 and the reconfiguration unit 40 on the same printed circuit board within the housing 13.
In the description above, all connectors 12 are communication connectors. However, it should be noted that the connectors 12 typically comprises several pins, where some pins are used for communication and other pins are used for transferring electric energy between the control module 6 and the subsea module 2. It should be noted that only the communication pins are connected to the reconfiguration unit (40).
Number | Date | Country | Kind |
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20170964 | Jun 2017 | NO | national |
Filing Document | Filing Date | Country | Kind |
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PCT/EP2018/064907 | 6/6/2018 | WO | 00 |