WATER LEVEL MONITORING SYSTEM
20190101428 ยท 2019-04-04
Assignee
Inventors
Cpc classification
International classification
Abstract
A water level monitoring system includes at least one floating unit, a load cell and a sensor module. The floating unit is used for sinking in water. The load cell is connected to the floating unit for generating a force value reflecting buoyancy generating from the floating unit entering the water. The sensor module is connected to the load cell for sensing the force value from the load cell and includes an amplifier for amplifying a sensed value. A processor connected to the amplifier receives the sensed value from the amplifier and calculating a water level depth to be measured. Thus the water level motoring system has features of low cost, high stability and flexibility.
Claims
1. A water level monitoring system comprising: at least one floating unit for sinking in water; a load cell, connected to the floating unit for generating a force value reflecting a buoyancy generating from the floating unit entering the water; and a sensor module, connected to the load cell for sensing the force value from the load cell, and comprising: an amplifier for amplifying a sensed value; and a processor, connected to the amplifier for receiving the sensed value from the amplifier and calculating a water level depth to be measured.
2. The water level monitoring system of claim 1, wherein the sensor module further comprises: a low pass filter, connected to the amplifier for filtering the sensed value from the amplifier to reduce noise; and an analog-to-digital converter, electrically connected to the low pass filter and the processor for converting the sensed value from the low pass filter into a digital format and then sending back to the processor for further calculation.
3. The water level monitoring system of claim 1, wherein the processor is further electrically connected to a communication unit for transmitting sensing information to an external system via network.
4. The water level monitoring system of claim 1, further comprising a temperature sensing module disposed on the load cell and electrically connected to the sensor module, wherein the temperature sensing module comprises: a sensing unit for sensing an environmental temperature and a temperature of the load cell; and an amplifier unit, electrically connected to the sensing unit for amplifying values from the sensing unit and then sending back to the processor of the sensor module.
5. The water level monitoring system of claim 4, wherein the sensing unit is a temperature detector.
6. The water level monitoring system of claim 1, wherein the floating unit is further connected with a first floater for extending length of a whole floater.
7. The water level monitoring system of claim 1, wherein the processor is a microprocessor.
8. The water level monitoring system of claim 1, wherein the load cell is disposed atop the floating unit.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
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[0014] The sensor module 3 is connected to the load cell 2 for generating value signals by a sensing manner. The sensor module 3 is used for sensing the buoyancy value from the load cell 2 by which a water level can be calculated.
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[0018] It will be appreciated by persons skilled in the art that the above embodiments have been described by way of example only and not in any limitative sense, and that various alterations and modifications are possible without departure from the scope of the disclosed example as defined by the appended claims.