WO03106931A2

Drive techniques for a digital flowmeter

Abstract

Drive techniques for a digital flowmeter are described. The drive techniques account for delays caused during digital signal processing of sensor signals that correspond to a motion of a flowtube, as well as drive signals that impart motion to the flowtube. Such delays may be caused by a variety of factors, including delays associated with analog/digital conversion of the signals and/or filtering of the signals. The techniques include open-loop techniques and closed-loop techniques, which can be used separately or together during the start-up and operation of the digital flowmeter. Startup and operational techniques for a digital flowmeter also are described. The startup and operational techniques select an optimal mode of operation for the digital flowmeter, depending on a current environment of the flowmeter, where the mode of operation might be chosen from, for example, a random sequence mode, a positive feedback mode, or a digital synthesis mode. In either the positive feedback mode or the digital synthesis mode, the digital flowmeter may revert to a previous mode to regain stable and desired oscillation of the flowtube, such as might be required during a recovery operation associated with a disturbance to an operation of the digital flowmeter.

WO03106931A2, drawing sheet 1
Sheet 1 of 23

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

89 claims: 6 independent, 83 dependent

  1. 1
    WHAT IS CLAIMED IS:1. A method comprising: inputting a first signal at a flowmeter, the first signal corresponding to a vibration of a flowtube;compensating for a delay of the first signal, the delay being associated with a digital element associated with the flowmeter;and outputting a second signal from the flowmeter, the second signal corresponding to the vibration of the flowtube.
  2. 26
    A digital flowmeter, comprising:a vibratable flowtube;a sensor connected to the flowtube and operable to relay information about a motion of the flowtube by way of a sensor signal;a driver connected to the flowtube and operable to impart motion to the flowtube by way of a drive signal;and a digital control and measurement system connected to the driver and the sensor, the digital confrol and measurement system comprising circuitry to maintain the sensor signal and the drive signal substantially in phase with one another.
  3. 40
    A digital flowmeter, comprising:a vibratable flowtube;a driver connected to the flowtube and operable to impart motion to the flowtube by way of an analog drive signal;a sensor connected to the flowtube and operable to sense a motion of the flowtube by way of an analog sensor signal;and a digital transmitter connected to the sensor and the driver, the digital transmitter including a digital component and operable to perform signal processing related to the analog sensor signal and the analog drive signal, wherein the signal processing compensates for a delay associated with the digital component to ensure that the analog sensor signal and the analog drive signal are substantially in phase with one another.
  4. 47
    A method for operating a digital flowmeter comprising:operating the digital flowmeter in a random sequence mode, where the random sequence mode is characterized by a first drive signal that includes randomly-generated values and that causes a vibration of a flowtube;operating the digital flowmeter in a positive feedback mode, where the positive feedback mode is characterized by a sensor signal that corresponds to the vibration and that is used as a second drive signal for maintaining the vibration;and operating the digital flowmeter in a digital synthesis mode, where the digital synthesis mode is characterized by a synthesis of a third drive signal for maintaining the vibration.
  5. 68
    A digital flowmeter comprising:a vibratable flowtube;a sensor connected to the flowtube and operable to sense information about a motion of the flowtube;a driver connected to the flowtube and operable to impart energy to the flowtube;a filter system;a random-value generator operable to generate random-frequency signals;and a confrol and measurement system operable to apply the filter system to the random- frequency signals and supply filtered, random-frequency signals to the driver for application to the flowtube of a first drive signal during a first mode, and further operable to transition the digital flowmeter into a second mode characterized by a second drive signal.
  6. 83
    A flowmeter comprising:a vibratable flowtube;a sensor connected to the flowtube and operable to sense information about a motion of the flowtube by way of a sensor signal;a driver connected to the flowtube and operable to impart energy to the flowtube by way of a drive signal;and a digital transmitter operable to select and implement, from among a plurality of operational modes, an operational mode determined to be best-suited for a current operational environment of the digital flowmeter.