EP4011007B1

Systems and methods for selecting a worst service first priority grid test route path

Abstract

This record has no abstract on file.

EP4011007B1, drawing sheet 1
Sheet 1 of 5

Term

13.9 yearsleft in the term

Expires 10 August 2040.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

15 claims: 2 independent, 13 dependent

  1. 1
    A method performed by a system comprising:assigning each of a plurality of test points (38) to a respective physical space of a target building (32);using previously collected grid RF test results of adjacent buildings (34, 36) that are relevant to the target building (32) to calculate a respective predictive RF result for each of the plurality of test points (38);using the respective predictive RF result for each of the plurality of test points (38) to calculate an optimized test path through the target building (32);measuring a respective actual RF signal value of each of the plurality of test points (38) in succession along the optimized test path;counting failing ones of the plurality of test points (38) for which the respective actual RF signal value is below a passing threshold value;and when a counted number of the failing ones of the plurality of test points (38) exceeds a failure threshold value, stopping measurements of the respective actual RF signal value of each of the plurality of test points (38) in succession along the optimized test path.
  2. 10
    A system (20) comprising:a programmable processor (28);a transceiver device (30);a database device (24) storing previously collected RF grid test results of adjacent buildings (34, 36);and a signal measurement device (26), wherein the programmable processor (28): assigns each of a plurality of test points (38) to a respective physical space of a target building (32), retrieves the previously collected RF grid test results of adjacent buildings (34, 36) that are relevant to the target building (32) from the database device, uses the previously collected RF grid test results of adjacent buildings (34, 36) that are relevant to the target building (32) to calculate a respective predictive RF result for each of the plurality of test points (38), uses the respective predictive RF result for each of the plurality of test points (38) to calculate an optimized test path through the target building (32), and transmits the optimized test path to the signal measurement device, and wherein the signal measurement device (26): measures a respective actual RF signal value of each of the plurality of test points (38) in succession along the optimized test path, counts failing ones of the plurality of test points (38) for which the respective actual RF signal value is below a passing threshold value, and when a counted number of the failing ones of the plurality of test points (38) exceeds a failure threshold value, stop measurements of the respective actual RF signal value of each of the plurality of test points in succession along the optimized test path.