IP Library Granted Patent US 11,874,321
Granted Patent B2
US 11,874,321 · App. 17/541,574 · Granted Jan 16, 2024

Mobile terminal testing device and mobile terminal testing method

Inventors: Takumi Nakamura (Kanagawa, JP); Zhihui Wu (Kanagawa, JP)
Assignee: ANRITSU CORPORATION
G01R31/2822G01R31/2868H04B17/102H04B17/13
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Quick Facts
Patent No.
US 11,874,321
App. No.
17/541,574
Granted
Jan 16, 2024
Kind
B2
Abstract

In an integrated control device 10 of the measurement device 1 , a reception sensitivity test control unit 18 repeatedly performs a reception sensitivity test of measuring a throughput of a signal under measurement transmitted from a DUT 100 which has received a test signal while changing an output level of the test signal non-linearly for each of a first orientation (PSa) regulated by a predetermined step interval of a spherical coordinate system and a second orientation (PSb) regulated by a step interval finer than the predetermined step interval, and a peak power measurement control unit 19 sets, as a peak power candidate, reception power within a range of a power width (ΔPw) from the maximum reception power of reception power measured for each first orientation, measures the reception power for each second orientation with respect to the peak power candidate, and determines the peak power based on a measurement result.

Claims (63)

1. A mobile terminal testing device comprising:

a positioner that is provided in an internal space of a radio anechoic box; and

measurement control means for measuring reception power by receiving a radio signal from a mobile terminal, which is a device under test, using a test antenna in the internal space, wherein

the measurement control means includes

rotation control means for executing, with respect to the positioner, first rotation control that causes the mobile terminal to sequentially face each of orientations regulated by a predetermined step interval of a spherical coordinate system, and second rotation control that causes the mobile terminal to sequentially face each of second orientations regulated by a step interval finer than the predetermined step interval,

reception sensitivity test execution means for transmitting a test signal from the test antenna, repeatedly performing a reception sensitivity test of receiving a signal under measurement transmitted from the mobile terminal which has received the test signal using the test antenna and measuring a throughput based on the signal under measurement for each of the first orientations and the second orientations while changing an output level of the test signal non-linearly, and calculating reception sensitivity when the measured throughput satisfies a predetermined throughput measurement end condition, and

peak power measurement means,

reception power is measured for each of the first orientations and the second orientations by executing the reception sensitivity test for each of the first orientations and the second orientations,

the peak power measurement means measures maximum reception power as peak power based on the measured reception power, and

the peak power measurement means includes

candidate selection means for selecting, as peak power candidates, the first orientations having the reception power within a range of a predetermined power width from the maximum reception power among the reception powers measured for each first orientation, and

determination means for measuring the peak power for each second orientation by executing the second rotation control on a region within a predetermined range around the each of first orientations corresponding to each of the peak power candidates, and determining the peak power based on a measurement result.

2. The mobile terminal testing device according to claim 1 , further comprising:

holding means for holding each data of a first grid pattern that regulates the first orientation and a second grid pattern that regulates the second orientation, wherein

the rotation control means executes the first rotation control and the second rotation control, respectively, based on the first grid pattern and the second grid pattern.

3. The mobile terminal testing device according to claim 2 , wherein

the first grid pattern and the second grid pattern are any of a constant angular distance type in which each of angular distances of the first orientation and the second orientation is constant, or a constant density type in which each of densities of the first orientation and the second orientation is constant.

4. The mobile terminal testing device according to claim 3 , wherein

the throughput measurement end condition is obtained by determining that the measured throughput falls below a predetermined threshold value for the first time while repeatedly executing a setting for sequentially reducing a step of the output level of the test signal, and

the reception sensitivity test execution means detects, as the reception sensitivity, an output level immediately before the output level in a case where the determination is obtained.

5. The mobile terminal testing device according to claim 3 , wherein

the reception sensitivity test execution means includes

output level setting means for setting the output level of the test signal to be different from a previous output level according to a comparison result between a measurement result of the throughput and a predetermined threshold value, and

measurement result output means for continuing transmission and reception of the test signal and the signal under measurement in a case where a variation width of the output level with respect to the previous output level exceeds a predetermined variation width set in advance, and outputting a test result assuming that the throughput measurement end condition is satisfied in a case where the variation width of the output level with respect to the previous output level is within a range of the predetermined variation width.

6. The mobile terminal testing device according to claim 3 , wherein

the reception sensitivity test execution means includes

drop determination means for determining whether or not the measured throughput is in a dropped state to a preset proportion in a steep drop area in which the throughput drops steeply, and

output level setting means for performing a setting process of setting the output level of the test signal to be different from a previous output level according to a comparison result indicating whether or not a measurement result of the throughput exceeds a predetermined threshold value and a determination result indicating whether or not the measured throughput is in the dropped state determined by the drop determination means, the setting process including a process of performing level down or level up on the output level of the test signal with respect to the previous output level in units of the variation width in a case where it is determined to be the dropped state, and

transmission and reception of the test signal and the signal under measurement are continued in a case where a variation width of the output level with respect to the previous output level exceeds a predetermined variation width, and a test result is output assuming that the throughput measurement end condition is satisfied in a case where the variation width of the output level with respect to the previous output level is within a range of the predetermined variation width.

7. The mobile terminal testing device according to claim 2 , wherein

the throughput measurement end condition is obtained by determining that the measured throughput falls below a predetermined threshold value for the first time while repeatedly executing a setting for sequentially reducing a step of the output level of the test signal, and

the reception sensitivity test execution means detects, as the reception sensitivity, an output level immediately before the output level in a case where the determination is obtained.

8. The mobile terminal testing device according to claim 2 , wherein

the reception sensitivity test execution means includes

output level setting means for setting the output level of the test signal to be different from a previous output level according to a comparison result between a measurement result of the throughput and a predetermined threshold value, and

measurement result output means for continuing transmission and reception of the test signal and the signal under measurement in a case where a variation width of the output level with respect to the previous output level exceeds a predetermined variation width set in advance, and outputting a test result assuming that the throughput measurement end condition is satisfied in a case where the variation width of the output level with respect to the previous output level is within a range of the predetermined variation width.

9. The mobile terminal testing device according to claim 2 , wherein

the reception sensitivity test execution means includes

drop determination means for determining whether or not the measured throughput is in a dropped state to a preset proportion in a steep drop area in which the throughput drops steeply, and

output level setting means for performing a setting process of setting the output level of the test signal to be different from a previous output level according to a comparison result indicating whether or not a measurement result of the throughput exceeds a predetermined threshold value and a determination result indicating whether or not the measured throughput is in the dropped state determined by the drop determination means, the setting process including a process of performing level down or level up on the output level of the test signal with respect to the previous output level in units of the variation width in a case where it is determined to be the dropped state, and

transmission and reception of the test signal and the signal under measurement are continued in a case where a variation width of the output level with respect to the previous output level exceeds a predetermined variation width, and a test result is output assuming that the throughput measurement end condition is satisfied in a case where the variation width of the output level with respect to the previous output level is within a range of the predetermined variation width.

10. The mobile terminal testing device according to claim 1 , wherein

the throughput measurement end condition is obtained by determining that the measured throughput falls below a predetermined threshold value for the first time while repeatedly executing a setting for sequentially reducing a step of the output level of the test signal, and

the reception sensitivity test execution means detects, as the reception sensitivity, an output level immediately before the output level in a case where the determination is obtained.

11. The mobile terminal testing device according to claim 1 , wherein

the reception sensitivity test execution means includes

output level setting means for setting the output level of the test signal to be different from a previous output level according to a comparison result between a measurement result of the throughput and a predetermined threshold value, and

measurement result output means for continuing transmission and reception of the test signal and the signal under measurement in a case where a variation width of the output level with respect to the previous output level exceeds a predetermined variation width set in advance, and outputting a test result assuming that the throughput measurement end condition is satisfied in a case where the variation width of the output level with respect to the previous output level is within a range of the predetermined variation width.

12. The mobile terminal testing device according to claim 1 , wherein

the reception sensitivity test execution means includes

drop determination means for determining whether or not the measured throughput is in a dropped state to a preset proportion in a steep drop area in which the throughput drops steeply, and

output level setting means for performing a setting process of setting the output level of the test signal to be different from a previous output level according to a comparison result indicating whether or not a measurement result of the throughput exceeds a predetermined threshold value and a determination result indicating whether or not the measured throughput is in the dropped state determined by the drop determination means, the setting process including a process of performing level down or level up on the output level of the test signal with respect to the previous output level in units of the variation width in a case where it is determined to be the dropped state, and

transmission and reception of the test signal and the signal under measurement are continued in a case where a variation width of the output level with respect to the previous output level exceeds a predetermined variation width, and a test result is output assuming that the throughput measurement end condition is satisfied in a case where the variation width of the output level with respect to the previous output level is within a range of the predetermined variation width.

13. A mobile terminal testing method for performing a test of a mobile terminal using a mobile terminal testing device including

a positioner that is provided in an internal space of a radio anechoic box,

rotation control means for executing, with respect to the positioner, first rotation control that causes the mobile terminal, which is a device under test, to sequentially face each of first orientations regulated by a predetermined step interval of a spherical coordinate system, and second rotation control that causes the mobile terminal to sequentially face each of second orientations regulated by a step interval finer than the predetermined step interval,

reception sensitivity test execution means for transmitting a test signal from the test antenna, and repeatedly performing a reception sensitivity test of receiving a signal under measurement transmitted from the mobile terminal which has received the test signal using the test antenna and measuring a throughput based on the signal under measurement for each of the first orientations and the second orientations while changing an output level of the test signal non-linearly, and calculating reception sensitivity when the measured throughput satisfies a predetermined throughput measurement end condition,

measurement control means for executing a processing step of measuring reception power by receiving a radio signal from the mobile terminal using the test antenna in the internal space by executing the reception sensitivity test for each of the first orientations and the second orientations, and

peak power measurement means for executing a processing step of measuring maximum reception power as peak power based on the measured reception power,

the mobile terminal testing method comprising:

as the processing step of measuring the maximum reception power as the peak power,

a candidate selection step of selecting, as peak power candidates, the first orientation having reception power within a range of a predetermined power width from the maximum reception powers among the reception power measured for each first orientation; and

a determination step of measuring the reception power for each second orientation by executing the second rotation control on a region within a predetermined range around the each of first orientations corresponding to each of the peak power candidates, and determining the peak power based on a measurement result.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 3, 2021
From: NAKAMURA, TAKUMI; WU, ZHIHUI
To: ANRITSU CORPORATION
Reel/Frame 058281/0290 →
Priority Claims (1)
JP 2021-008455 · Jan 22, 2021 · national
Continuity (1)
Related Publication 20220236316A1 · Jul 28, 2022