IP Library Granted Patent US 12,693,819
Granted Patent B2
US 12,693,819 · App. 18/624,951 · Granted Jul 28, 2026

Server apparatus and method therefor

Inventor: Satoshi Araki (Mishima Shizuoka, JP)
Assignee: TOSHIBA TEC KABUSHIKI KAISHA
G06F3/126G06F3/1208
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Quick Facts
Patent No.
US 12,693,819
App. No.
18/624,951
Granted
Jul 28, 2026
Kind
B2
Abstract

A server apparatus that communicates with a plurality of image forming apparatuses respectively having scan functions and a user terminal that provides an image that should be formed by any one of the plurality of image forming apparatuses. The server apparatus includes a receiving unit, an analyzing unit, and a determining unit. The receiving unit receives job information indicating the image that should be formed transmitted by the user terminal. The analyzing unit analyzes density in the image from the job information. The determining unit determines, based on the density information and image quality information of each of the plurality of image forming apparatuses obtained by scanning, in each of the plurality of image forming apparatuses, reference paper on which monochrome reference images having gradations in a second direction orthogonal to a first direction are formed in separated positions of at least two parts in the first direction, a proper machine suitable for forming the image out of the plurality of image forming apparatuses.

Claims (39)

1 . A server apparatus configured to communicate with (i) a plurality of image forming apparatuses respectively having scan functions, and (ii) a user terminal providing an image that should be formed by any one of the plurality of image forming apparatuses, the server apparatus comprising:

a receiver configured to receive job information indicating the image that should be formed transmitted by the user terminal;

an analyzer configured to analyze, from the job information, density information concerning density in the image; and

a calculator configured to determine, based on the density information and image quality information of each of the plurality of image forming apparatuses obtained by scanning, reference paper on which monochrome reference images having gradations in a second direction orthogonal to a first direction are formed in separated positions of at least two parts in the first direction, a proper machine configured to form the image out of the plurality of image forming apparatuses.

2 . The apparatus according to claim 1 , wherein

in each of the plurality of image forming apparatuses, the first direction and the second direction are a same direction in the scan and the image formation,

the analyzer is configured to analyze, in the image that should be formed, same monochrome density parts present in separated positions of at least two parts in the first direction of the image formation corresponding to the separated positions of the at least two parts in the first direction of the scan, and

the calculator is configured to determine the proper machine when the same monochrome density parts are present.

3 . The apparatus according to claim 2 , wherein the calculator is configured to determine, out of the plurality of image forming apparatuses, as the proper machine, a machine having a small density difference between densities of the same monochrome density parts in the separated positions of the at least two parts in the first direction of the image formation.

4 . The apparatus according to claim 1 , wherein

the server apparatus includes first and second server apparatuses capable of communicating with each other via a network,

the receiver and the analyzer are included in the first server apparatus, and

the calculator includes:

a first portion included in the first server apparatus and configured to transmit the density information to the second server apparatus;

a second portion included in the second server apparatus and configured to determine the proper machine based on the density information and the image quality information, and notify the determined proper machine to the first server apparatus; and

a third portion included in the first server apparatus and configured to receive the notification of the proper machine to determine the proper machine.

5 . The apparatus according to claim 1 , further comprising a transmitter configured to transmit the job information to the image forming apparatus determined as the proper machine.

6 . The apparatus according to claim 1 , further comprising a transmitter configured to transmit a determination result indicating the image forming apparatus determined as the proper machine to an external apparatus.

7 . The server apparatus according to claim 1 , wherein

the first direction is a main scanning direction of the scan and the image formation, and

the second direction is a sub-scanning direction of the scan and the image formation.

8 . The server apparatus according to claim 1 , wherein the calculator is configured to determine the proper machine out of image forming apparatuses limited as machines in use by the user terminal among the plurality of image forming apparatuses.

9 . The server apparatus according to claim 1 , further comprising a storage configured to store the image quality information obtained by each of the plurality of image forming apparatuses.

10 . A method of communicating with a plurality of image forming apparatuses respectively having scan functions and a user terminal that provides an image that should be formed by any one of the plurality of image forming apparatuses, the method comprising:

receiving job information indicating the image that should be formed transmitted by the user terminal;

analyzing, from the job information, density information concerning density in the image; and

determining a proper machine suitable for forming the image out of the plurality of image forming apparatuses, based on the density information and image quality information of each of the plurality of image forming apparatuses obtained by scanning, in each of the plurality of image forming apparatuses, reference paper on which monochrome reference images having gradations in a second direction orthogonal to a first direction are formed in separated positions of at least two parts in the first direction.

11 . The method according to claim 10 , wherein

in each of the plurality of image forming apparatuses, the first direction and the second direction are a same direction in the scan and the image formation,

analyzing, in the image that should be formed, same monochrome density parts present in separated positions of at least two parts in the first direction of the image formation corresponding to the separated positions of the at least two parts in the first direction of the scan, and

determining the proper machine when the same monochrome density parts are present.

12 . The method according to claim 11 , further comprising determining as the proper machine, out of the plurality of image forming apparatuses, a machine having a small density difference between densities of the same monochrome density parts in the separated positions of the at least two parts in the first direction of the image formation.

13 . The method according to claim 10 , wherein

the server apparatus includes first and second server apparatuses capable of communicating with each other via a network,

transmitting the density information to the second server apparatus;

determining the proper machine based on the density information and the image quality information, and notifying the determined proper machine to the first server apparatus; and

receiving the notification of the proper machine to determine the proper machine.

14 . The method according to claim 10 , further comprising transmitting the job information to the image forming apparatus determined as the proper machine.

15 . The method according to claim 10 , further comprising transmitting a determination result indicating the image forming apparatus determined as the proper machine to an external apparatus.