Claims
- 1. An anode monitoring system for monitoring the integrity of anodes provided on a metallic structure for cathodic protection purposes, the system comprising a signal circuit having at least one signal path comprising the metallic structure and a selected anode whereby the characteristics of the signal circuit depend on the effectiveness of the selected anode, a signal generator for generating and applying a signal to the signal circuit, and a central station for monitoring signals on the signal circuit to thereby determine whether the selected anode is effective, the arrangement being such that at least one of absence and defectiveness of the selected anode is detectable due to the absence of an expected signal.
- 2. An anode monitoring system according to claim 1 in which the signal generator is arranged, when the selective anode is effective, to apply a signal to the signal circuit which is indicative of the effectiveness of the selected anode.
- 3. An anode monitoring system according to claim 1 in which the signal generator is disposed at the selected anode.
- 4. An anode monitoring system according claim 1 which the signal circuit comprises a return path via earth and the selected anode, when effective, provides a conduction path from the metallic structure to earth.
- 5. An anode monitoring system according to claim 1 in which the signal circuit comprises an impedance element provided in series between the selected anode and the metallic structure.
- 6. An anode monitoring system according to claim 5 in which the impedance element is arranged to give a high impedance to time varying signals within at least one selected range of frequencies and a low impedance to signals outside the selected range.
- 7. An anode monitoring system according to claim 6 in which the impedance element is arranged so that the real part of the impedance is substantially zero.
- 8. An anode monitoring system according to claim 5 further comprising at least one of a transmitter and a receiver connected across the impedance means and arranged to respectively transmit and receive signals across the impedance means.
- 9. An anode monitoring system according to claim 1 in which the signal generator comprises a reference signal generator arranged to apply a reference signal to the signal circuit and an effective impedance varier for varying the effective impedance of the signal circuit in accordance with data to be transmitted wherein the reference signal generator is located at a position which is remote from the selected anode and the impedance varier is located adjacent the selected anode.
- 10. An anode monitoring system according to claim 1 which comprises a plurality of signal paths each comprising the metallic structure and a respective anode which is arranged so that signals associated with each anode are generated at different, randomly determined, times.
- 11. An anode monitoring method for monitoring the integrity of anodes provided on a metallic structure for cathodic protection purposes comprising the steps of:generating a signal and applying said signal to a signal circuit, the signal circuit comprising at least one signal path comprising the metallic structure and a selected anode whereby the characteristics of the signal circuit depend on the effectiveness of the selected anode; and monitoring signals on the signal circuit at a central station to thereby determine whether the selected anode is effective, the arrangement being such that at least one of absence and defectiveness of the selected anode is detectable due to the absence of an expected signal.
- 12. An anode arrangement for use in an anode monitoring system, the arrangement comprising a cathodic protection anode arranged for mounting on a metallic structure, an impedance element having one terminal connected to the anode and another terminal arranged for connection to said metallic structure, and an electronics module connected across the impedance element for at least one of transmitting and receiving signals.
- 13. An anode monitoring system for monitoring the integrity of anodes provided on a metallic structure for cathodic protection purposes, the system comprising a signal circuit having at least one signal path comprising the metallic structure and a selected anode whereby the characteristics of the signal circuit depend on the effectiveness of the selected anode, signal generation means for generating and applying a signal to the signal circuit, and a central station for monitoring signals on the signal circuit to thereby determine whether the selected anode is effective, the arrangement being such that at least one of absence and defectiveness of the selected anode is detectable due to the absence of an expected signal.
- 14. An anode monitoring system for monitoring the integrity of anodes provided on a metallic structure for cathodic protection purposes, the system comprising a signal circuit having at least one signal path comprising the metallic structure and a selected anode whereby the characteristics of the signal circuit depend on the effectiveness of the selected anode, a signal generator for generating and applying a signal to the signal circuit, and a central station for monitoring signals on the signal circuit to thereby determine whether the selected anode is effective, wherein the signal circuit comprises a return path via earth and the selected anode, when effective, provides a conduction path from the metallic structure to earth.
- 15. An anode monitoring system according to claim 14 in which the signal generator is arranged, when the selective anode is effective, to apply a signal to the signal circuit which is indicative of the effectiveness of the selected anode.
- 16. An anode monitoring system according to claim 14 in which the signal generator is disposed at the selected anode.
- 17. An anode monitoring system according to claim 14, the arrangement being such that at least one of absence and defectiveness of the selected anode is detectable due to the absence of an expected signal.
- 18. An anode monitoring system according to claim 14 in which the signal circuit comprises an impedance element provided in series between the selected anode and the metallic structure.
- 19. An anode monitoring system according to claim 18 in which the impedance element is arranged to give a high impedance to time varying signals within at least one selected range of frequencies and a low impedance to signals outside the selected range.
- 20. An anode monitoring system according to claim 19 in which the impedance element is arranged so that the real part of the impedance is substantially zero.
- 21. An anode monitoring system according to claim 19 further comprising at least one of a transmitter and a receiver connected across the impedance element and arranged to respectively transmit and receive signals across the impedance element.
- 22. An anode monitoring system according to claim 14 in which the signal generator comprises a reference signal generator arranged to apply a reference signal to the signal circuit and an effective impedance varier for varying the effective impedance of the signal circuit in accordance with data to be transmitted wherein the reference signal generator is located at a position which is remote from the selected anode and the impedance varier is located adjacent the selected anode.
- 23. An anode monitoring system according to claim 14 which comprises a plurality of signal paths each comprising the metallic structure and a respective anode which is arranged so that signals associated with each anode are generated at different, randomly determined, times.
- 24. An anode monitoring method for monitoring the integrity of anodes provided on a metallic structure for cathodic protection purposes comprising the steps of:generating a signal and applying said signal to a signal circuit, the signal circuit comprising at least one signal path comprising the metallic structure and a selected anode whereby the characteristics of the signal circuit depend on the effectiveness of the selected anode; and monitoring signals on the signal circuit at a central station to thereby determine whether the selected anode is effective, wherein the signal circuit comprises a return path via earth and the selected anode, when effective, provides a conduction path from the metallic structure to earth.
- 25. An anode monitoring system for monitoring the integrity of anodes provided on a metallic structure for cathodic protection purposes, the system comprising a signal circuit having at least one signal path comprising the metallic structure and a selected anode whereby the characteristics of the signal circuit depend on the effectiveness of the selected anode, signal generation means for generating and applying a signal to the signal circuit, and a central station for monitoring signals on the signal circuit to thereby determine whether the selected anode is effective, wherein the signal circuit comprises a return path via earth and the selected anode, when effective, provides a conduction path from the metallic structure to earth.
Priority Claims (2)
Number |
Date |
Country |
Kind |
9916410 |
Jul 1999 |
GB |
|
0100104 |
Jan 2001 |
GB |
|
CROSS REFERENCE TO RELATED APPLICATIONS
This application is a Continuation-In-Part of International Patent Application No. PCT/GB00/02493, filed Jun. 23, 2000, claiming priority of Great Britain Patent Application No. 9916410.5, filed Jul. 13, 1999, and Great Britain Patent Application No. 0100104.9, filed Jan. 3, 2001.
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Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
PCT/GB00/02493 |
Jun 2000 |
US |
Child |
10/032471 |
|
US |