WO9715024A1

Extended working range dataform reader including fuzzy logic image control circuitry

Abstract

A portable data collection system including a dataform reader module (10) having a board camera electrically coupled to a control and decoder board (14) in an open loop feedback configuration. The control and decoder board (14) includes fuzzy logic image control circuitry (18) which analyzes a captured frame of a video image including a dataform produced by the board camera (14). Based on the analysis of the captured image, the fuzzy logic image control circuitry (18) generates control signals to adjust operating parameters of the board camera (14) such that an image suitable for decoding is produced.

WO9715024A1, drawing sheet 1
Sheet 1 of 11

Term

No projected expiry on record.

  1. Priority and filed
  2. Published
  3. Today

19 claims: 4 independent, 15 dependent

  1. 1
    CLAIMS 1. A dataform reader comprising:a) a board camera including a two dimensional photosensor array comprising a set of pixels and control circuitry for generating a video signal representative of the illumination content on each pixel in the set of pixels over an exposure period;b) the board camera control circuitry including a gain control signal input and an exposure period control signal input;and c) a fuzzy logic control unit coupled to the board camera to receive the video signal, capture and analyze a portion of tlic video signal and, based on the analysis of the captured portion of the video signal, generate at the least one of the gain control signal and the exposure period control signal;and d) the fuzzy logic control unit accessing one or more membership function charts stored in memory to analyze the video signal, each of the one or more membership function charts including a plurality of overlying functions wherein one function os the plurality fo functions represents a normal condition for the captured portion of the video signal and at least one function representing a non-normal condition for the captured portion of the video signal.
  2. 9
    A method of reading a dataform in a target area, said method including:a) imaging said target area including said dataform onto a two dimensional photosensor array;b) generating a video signal representative of said image in accordance with a gain control input and an exposure period input;c) generating at least two membership function input values representing characteristics of said video signal;and d) applying a fuzzy logic control function to said membership function values to generate at least one of said gain control input and said exposure period input.
  3. 16
    A method of reading a dataform in a target area, said method including:a) imaging said target area including said dataform onto a two dimensional photosensor array;b) selecting at least one of an exposure period value and gain control value in accordance with values selected during a previous dataform reading session;c) generating a video signal representative of said dataform and in accordance with at least one of the exposure period value and gain control value;d) generating at least two membership function input values representative of characteristics of said video signal;e) applying a fuzzy logic control function to said membership function input values to determine at least one of an updated exposure period value and gain control value;and f) storing a value representative of said updated values in memory for use in a subsequent dataform reading session.
  4. 19
    A low power consumption dataform reader for reading a dataform in a target area, the reader comprising:a) an illumination source directing illumination towards the target area;b) a two dimensional photosensor array comprising a set of pixels and receiving reflected illumination from the target area and generating a signal representative of accumulated illumination incident on each of said pixels during an exposure period;and c) illuminator control circuitry providing operating power to the illumination source during the exposure period when the exposure period is in excess of a predetermined duration and not providing operating power to the illumination source when the exposure period is less than or equal to the predetermined duration.