Open neutral detector
US-10868417-B2 · Dec 15, 2020 · US
US11150282B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11150282-B2 |
| Application number | US-201816617113-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 25, 2018 |
| Priority date | May 31, 2017 |
| Publication date | Oct 19, 2021 |
| Grant date | Oct 19, 2021 |
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A single-phase electric meter having a phase conductor intended to be connected to a phase of an electric line located upstream of the single-phase electric meter and to a phase of an electric installation located downstream of the single-phase electric meter, the single-phase electric meter further including a breaking unit mounted on the phase conductor, an upstream voltage sensor arranged to periodically measure an upstream voltage upstream of the breaking unit, and a processing device arranged to acquire upstream voltage measurements and to open the breaking unit when the upstream voltage drops below a first predetermined threshold voltage.
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The invention claimed is: 1. A single-phase electricity meter including a phase conductor that is intended to be connected to one phase of an electrical line that is located upstream of the single-phase electricity meter and to one phase of an electrical setup that is located downstream of the single-phase electricity meter, the single-phase electricity meter further comprising a switching member that is fitted to the phase conductor, an upstream voltage sensor that is arranged to periodically measure an upstream voltage upstream of the switching member, and processing means that are arranged to acquire upstream voltage measurements and to open the switching member when the upstream voltage falls below a first predetermined threshold voltage. 2. The single-phase electricity meter according to claim 1 , wherein the processing means are arranged to open the switching member when the upstream voltage transitions from a normal value to a value that is lower than the first predetermined threshold voltage in a time that is shorter than a predetermined duration. 3. The single-phase electricity meter according to claim 1 , wherein the processing means are arranged to close the switching member when the upstream voltage rises above a second predetermined threshold voltage. 4. The single-phase electricity meter according to claim 3 , wherein the processing means are arranged to close the switching member after a random duration starting from when the processing means detect that the upstream voltage has risen above the second predetermined threshold voltage. 5. The single-phase electricity meter according to claim 4 , the processing means being arranged to increase the random duration after the processing means have closed the switching member twice because of an upstream voltage that is lower than the first predetermined threshold voltage. 6. The single-phase electricity meter according to claim 5 , wherein the processing means are arranged, after two closures of the switching member, to increase the random duration after each new closure due to an upstream voltage lower than the first predetermined threshold voltage. 7. The single-phase electricity meter according to claim 1 , further comprising a powerline communication module connected to the line and to the processing means, the powerline communication module being arranged to transmit a warning message over the electrical line when the upstream voltage falls below the first predetermined threshold voltage. 8. The single-phase electricity meter according to claim 7 , further comprising a device for opening the switching member and an energy storage component that is suitable for supplying power to the device for opening the switching member and the communication module for a duration of transmission of the warning message in the event of a voltage drop no longer allowing the single-phase electricity meter to be supplied with power. 9. A system comprising a first single-phase electricity meter according to claim 1 and a second single-phase electricity meter, the first single-phase electricity meter and the second single-phase electricity meter being each connected to a distinct phase of the same three-phase electrical line, the second single-phase electricity meter not comprising a switching member. 10. A monitoring method implemented in a single-phase electricity meter according to claim 1 , including the steps of: measuring the upstream voltage; opening the switching member when the upstream voltage falls below a first predetermined threshold voltage. 11. The monitoring method according to claim 10 , further including the step of closing the switching member when the upstream voltage rises above a second predetermined threshold voltage. 12. A method for protecting a second electrical setup by the single-phase electricity meter of a first electrical setup, the second electrical setup including a second single-phase electricity meter comprising no switching member, the first electrical setup and the second electrical setup being connected, respectively, to a first phase and to a second phase of one and the same electrical line, the first electrical setup and the second electrical setup being connected to a neutral of the electrical line, the protection method being implemented in the single-phase electricity meter and comprising the steps of the monitoring method according to claim 10 . 13. A computer program comprising instructions for implementing the method for protecting a second electrical setup by the single-phase electricity meter of a first electrical setup according to claim 12 . 14. A storage means which stores a computer program comprising instructions for implementing the method for protecting a second electrical setup by the single-phase electricity meter of a first electrical setup according to claim 12 . 15. A computer program comprising instructions for implementing the monitoring method according to claim 10 . 16. A storage means which stores a computer program comprising instructions for implementing the monitoring method claim 10 .
in power transmission or distribution networks, i.e. with interconnected conductors · CPC title
operated by voltage falling below a predetermined value, e.g. for no-volt protection · CPC title
and with permanent disconnection after a predetermined number of reconnection cycles · CPC title
responsive to mechanical injury, e.g. rupture of line, breakage of earth connection · CPC title
Reconnection being a consequence of eliminating the fault which caused disconnection · CPC title
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