Method for controlling a homogeneous batch of pressurised fluid cylinders
Abstract
The invention relates to a method for controlling a homogeneous batch ( 1 ) of pressurised fluid cylinders ( 2 ) during at least part of the use cycle of said cylinders. According to the invention, each of the cylinders ( 2 ) is provided with a valve ( 3 ) having an electronic device ( 4 ) including at least one sensor ( 14 ) for measuring the pressure (P) inside the cylinder ( 2 ), a system ( 44 ) for storing/acquiring and processing data and an electromagnetic wave transmitter ( 34 ), for example using radio frequency, designed for the remote transmission of at least one of the following items of information: the identity of the cylinder ( 2 ) and the pressure (P) measured inside said cylinder. The method includes a transmission step in which all of the cylinders ( 2 ) in the batch ( 1 ) transmit at least one item of information of the same type when they are in the same phase of the use cycle at the same time and a step in which the same-type items of information transmitted by the cylinders are compared for the automatic detection of an anomaly in the batch ( 1 ).
Claims
exact text as granted — not AI-modified1 . A method for checking a homogeneous batch of pressurized-fluid cylinders during at least part of the cycle of use of the cylinders, the cylinders each being equipped with a valve provided with an electronic device comprising at least one sensor for measuring the pressure (P) obtaining inside the cylinder, a data storage/acquisition and processing system and an emitter of electromagnetic waves designed to transmit to a distance at least one of the information items from among: the identity of the cylinder and the pressure (P) measured inside said cylinder, the method involving an emission step in which all the cylinders of the batch emit at least one information item of the same nature when they are simultaneously in one and the same phase of the cycle of use, and a step of comparing the information items of the same nature emitted by the cylinders in order automatically to detect an anomaly in the batch.
2 . The method of claim 1 , wherein the emission step is performed independently by each electronic device by automatically and repeatedly emitting information at determined time intervals.
3 . The method of claim 1 , wherein the emission step is performed independently and automatically by each electronic device as soon as the data storage/acquisition and processing system detects a trigger condition relating to one of the items of information, such that a pressure threshold (P) is reached.
4 . The method of claim 1 , wherein each emission of information by an emitter is performed by successively sending out several redundant identical messages.
5 . The method of claim 1 , wherein the cycle of use of the batch of cylinders comprises a pre-conditioning phase during which the comparison step comprises:
comparing the number of cylinders detected against a number of cylinders initially intended for the conditioning, and comparing the type of cylinders detected against the intended conditioning, in order to verify that the number and type of cylinder conforms to the intended conditioning.
6 . The method of claim 1 , wherein the cycle of use of the batch of cylinders comprises a post-conditioning phase, and in that it comprises a step of recording the values of the final pressure (P) measured in each of the cylinders and the value of the final temperature (T) in each of the cylinders as measured by a temperature (T) sensor.
7 . The method of claim 1 , wherein the cycle of use of the batch of cylinders comprises a quarantine or storage phase during which the cylinders of the batch are not used, the comparison step comprising: comparing the curves of variation in pressures (P) of the cylinders or comparing the values of the pressure (P) in each cylinder before and after the quarantine phase in order to detect a cylinder that is suffering from a slow leak.
8 . The method of claim 7 , wherein during the quarantine or storage phase, the comparison step comprises comparing the number of cylinders detected on the basis of the information received against the predefined number of cylinders.
9 . The method of claim 1 , wherein the cycle of use of the batch of cylinders comprises a phase of delivering the batch, during which phase the comparison step comprises comparing and recording characteristics of the batch against a predefined batch.
10 . The method of claim 1 , wherein the electronic device comprises a battery and a temperature (T) sensor, the information emitted during the emission step comprising: the identity of the cylinder, the pressure (P) measured inside said cylinder, the measured temperature (T) and the state of the battery.
11 . The method of claim 1 , wherein the electromagnetic waves are emitted at radio frequency.
12 . The method of claim 2 , wherein the emission step is performed independently and automatically by each electronic device as soon as the data storage/acquisition and processing system detects a trigger condition relating to one of the items of information, such that a pressure threshold (P) is reached.
13 . The method of claim 12 , wherein each emission of information by an emitter is performed by successively sending out several redundant identical messages.
14 . The method of claim 13 , wherein the cycle of use of the batch of cylinders comprises a pre-conditioning phase during which the comparison step comprises:
comparing the number of cylinders detected against a number of cylinders initially intended for the conditioning, and comparing the type of cylinders detected against the intended conditioning, in order to verify that the number and type of cylinder conforms to the intended conditioning.Join the waitlist — get patent alerts
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