IP Library › Patent Application 18793249
Patent Application
App. No. 18/793,249

Valve Position Monitor, And Systems And Methods Of Using Same

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Quick Facts
Patent No.
US None
App. No.
18/793,249
Abstract

A valve position monitor can determining a position of a valve stem of a valve. The valve position monitor can comprise a receptacle for coupling to a valve stem. A rotation sensor can be configured to output a first signal corresponding to a rotational position of the valve stem. A transmitter can be in communication with the rotation sensor. The transmitter can be configured to transmit a second signal corresponding to the rotational position of the valve stem to a remote receiver. A power source can be in communication with the transmitter.

Claims (54)

1 . A valve position monitor for determining a position of a valve stem of a valve of a water transmission system, the valve position monitor comprising:

a housing that is configured to be received within and non-rotatably coupled to a valve box of the water transmission system;

a shaft disposed within and rotatable relative to the housing, the shaft having a first end and a second end, wherein the second end comprises a nut configured for engagement of a wrench;

a square or rectangular receptacle at the first end of the shaft that is configured to receive and couple to a valve stem of the water transmission system;

a rotation sensor within the housing that is configured to output a first signal corresponding to a rotational position of the shaft;

a transmitter within the housing and in communication with the rotation sensor, wherein the transmitter is configured to wirelessly transmit a second signal corresponding to the rotational position of the valve stem to a remote receiver,

wherein the valve position monitor is configured to be retrofit to the valve of the water transmission system.

2 . The valve position monitor of claim 1 , further comprising a battery within the housing and in communication with the transmitter, wherein the transmitter is configured to transmit a signal to the remote receiver upon an amount of charge on the battery dropping below a threshold.

3 . The valve position monitor of claim 1 , wherein the rotation sensor is a rotary encoder.

4 . The valve position monitor of claim 1 , wherein the rotation sensor is a Hall Effect sensor.

5 . The valve position monitor of claim 1 , wherein the transmitter is configured to transmit via at least one of radio frequency (RF), SMS, MMS, or Wi-Fi.

6 . The valve position monitor of claim 1 , further comprising at least one processor and a memory in communication with the at least one processor, wherein the memory comprises instructions that, when executed by the at least one processor, cause the at least one processor to:

receive the first signal from the rotation sensor corresponding to the rotational position of the valve stem, and

determine, based on the first signal from the rotation sensor, a change in rotational position from a first reference position.

7 . The valve position monitor of claim 1 , further comprising at least one processor and a memory in communication with the at least one processor, wherein the memory comprises instructions that, when executed by the at least one processor, cause the at least one processor to:

receive a signal from the rotation sensor corresponding to the rotational position of the valve stem, and

convert the signal from the rotation sensor to an opening percentage based on at least one calibration setting.

8 . The valve position monitor of claim 7 , wherein the at least one calibration setting comprises a first value corresponding to a first rotational position of the valve stem when the valve is fully open and a second value corresponding to a second rotational position of the valve stem when the valve is fully closed.

9 . The valve position monitor of claim 1 , wherein the transmitter is configured to transmit the rotational position of the valve stem upon receiving a request from a remote device.

10 . The valve position monitor of claim 1 , wherein the transmitter is configured to transmit the second signal corresponding to the rotational position of the valve stem in response to a change in the rotational position of the valve stem.

11 . The valve position monitor of claim 1 , wherein the transmitter is configured to communicate via a cellular network.

12 . The valve position monitor of claim 1 , wherein the shaft comprises a telescopic extension comprising a plurality of nested members.

13 . A valve assembly comprising:

an isolation valve configured for use in a water transmission system, the isolation valve comprising:

a valve body;

a flow metering body that is movable within the valve body about and between a closed position and a fully open position; and

a stem coupled to the flow metering body, wherein rotation of the stem is configured to move the flow metering body between the closed position and the fully open position; and

a valve position monitor that is retrofit to the isolation valve, the valve position monitor comprising:

a housing that is configured to be received within and non-rotatably coupled to a valve box of the water transmission system;

a shaft disposed within and rotatable relative to the housing, the shaft having a first end and a second end, wherein the second end comprises a nut configured for engagement of a wrench;

a square or rectangular receptacle at the first end of the shaft that receives and couples to the stem of the isolation valve;

a rotation sensor that is configured to detect a position of the valve stem and output a signal corresponding to a rotational position of the valve stem; and

a transmitter in communication with the rotation sensor, wherein the transmitter is configured to wirelessly transmit the rotational position of the valve stem to a remote receiver.

14 . The valve assembly of claim 13 , wherein the flow metering body comprises one of a gate and a butterfly valve disc.

15 . The valve assembly of claim 13 , further comprising a magnetic sensor that is configured to measure a flow rate of a fluid traveling through the valve body.

16 . A system comprising:

a plurality of valves, wherein each valve is an isolation valve configured for use in a water transmission system, each valve comprising:

a valve body;

a flow metering body that is movable within the valve body about and between a closed position and a fully open position;

a stem coupled to the flow metering body, wherein rotation of the stem is configured to move the flow metering body between the closed position and the fully open position; and

a plurality of valve position monitors, wherein each valve position monitor of the plurality of valve position monitors is retrofit to a respective valve of the plurality of valves, wherein each valve position monitor comprises:

a housing that is configured to be received within and non-rotatably coupled to a valve box of the water transmission system;

a shaft disposed within and rotatable relative to the housing, the shaft having a first end and a second end, wherein the second end comprises a nut configured for engagement of a wrench;

a square or rectangular receptacle at the first end of the shaft that receives and couples to the stem of the respective valve;

a rotation sensor that is configured to detect a position of the valve stem and output a signal corresponding to a rotational position of the valve stem; and

a transmitter in communication with the rotation sensor, wherein the transmitter is configured to wirelessly transmit a signal corresponding to the rotational position of the valve stem;

a display device; and

a computing device in communication with the transmitter of each valve of the plurality of valves and the display device, wherein the computing device comprises at least one processor and a memory, wherein the memory comprises instructions that, when executed by the at least one processor, cause the at least one processor to:

receive the signal corresponding to the rotational position of the valve stem from a valve of the plurality of valves, and

display, on the display device, a value corresponding to a relative position of the valve.

17 . The system of claim 16 , wherein the memory comprises instructions that, when executed by the at least one processor, cause the at least one processor to: convert the signal from the rotation sensor to the relative position of the valve based on at least one calibration setting.

18 . The system of claim 16 , further comprising an input device that is in communication with the computing device, wherein the input device is configured to receive the at least one calibration setting, wherein the at least one calibration setting comprises a first value corresponding to a rotational position of the valve stem when the valve is fully open and a second value corresponding to a rotational position of the valve stem when the valve is fully closed.

19 . The system of claim 16 , wherein the memory comprises instructions that, when executed by the at least one processor, cause the at least one processor to:

compare the rotational position of the shaft relative to a reference position.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 11, 2024
From: HALDEMAN, JAMES; KAMDEM, ROLAND
To: WASHINGTON SUBURBAN SANITARY COMMISSION
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