IP Library Granted Patent US 10,126,566
Granted Patent B2
US 10,126,566 · App. 15/240,477 · Granted Nov 13, 2018

Eyeglass lens design method, eyeglass lens manufacturing method, eyeglass lens, eyeglass lens design system, eyeglass lens design program, and recording medium

Inventors: Masatomo Mizuno (Ichikawa, JP); Yukimasa Uchiyama (Tokyo, JP)
Assignee: NIKON CORPORATION
G02C7/027G02C7/028G02C7/063G02C7/066
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Quick Facts
Patent No.
US 10,126,566
App. No.
15/240,477
Granted
Nov 13, 2018
Kind
B2
Abstract

An eyeglass lens design method includes: a prescription requirement-setting step in which prescription requirements for an eyeglass lens to be worn by an eyeglass wearer are set; a pattern setting step in which a plurality of patterns taking different values for at least one of; the prescription requirements for the eyeglass lens, a lens type, a progressive zone length, a wearing condition parameter pertaining to an eyeglass wearing condition in which the eyeglass wearer wears eyeglasses, a lifestyle/habit parameter pertaining to a lifestyle/habit of the eyeglass wearer and an optimization parameter used to control optimization of design for the eyeglass lens, are set; and a designing step in which eyeglass lens contours, each corresponding to one of the plurality of patterns having been set in the pattern setting step, are designed.

Claims (56)

1. An eyeglass lens design method, comprising:

a prescription requirement-setting step in which prescription requirements for an eyeglass lens to be worn by an eyeglass wearer are set;

a pattern setting step in which a plurality of patterns having different values for at least one of the prescription requirements for the eyeglass lens, a lens type, a progressive zone length, a wearing condition parameter pertaining to an eyeglass wearing condition in which the eyeglass wearer wears eyeglasses, a lifestyle/habit parameter pertaining to a lifestyle/habit of the eyeglass wearer, and an optimization parameter used to control optimization of design for the eyeglass lens, are set, wherein in the pattern setting step, at least one set of prescription requirements that is at least partially different from the prescription requirements having been set in the prescription requirement-setting step is generated; and

a designing step in which eyeglass lens contours, each corresponding to one of the plurality of patterns having been set in the pattern setting step, are designed, wherein in the designing step, the eyeglass lens contours are designed respectively corresponding to the prescription requirements having been set in the prescription requirement-setting step and the prescription requirements having been generated in the pattern setting step.

2. The eyeglass lens design method according to claim 1 , wherein:

the at least one set of prescription requirements that is at least partially different from the prescription requirements having been set in the prescription requirement-setting step is different within a range defined as an allowable refractive power difference or is different within a range over which a single value is measured on a lens meter.

3. The eyeglass lens design method according to claim 1 , wherein:

in the designing step, eyeglass lens contours, each corresponding to one of the plurality of patterns having been set in the pattern setting step, are designed through parallel processing.

4. The eyeglass lens design method according to claim 1 , wherein:

the designing step includes a correction step in which results obtained by designing an eyeglass lens contour based upon the prescription requirements generated through the pattern setting step are corrected so as to adjust toward the prescription requirements having been set through the prescription requirement-setting step.

5. The eyeglass lens design method according to claim 1 , wherein:

in the designing step, an eyeglass lens is designed based upon results obtained by completing design work for an eyeglass lens contour before a predetermined time limit is reached, among eyeglass lens contour designs corresponding to the prescription requirements having been set in the prescription requirement-setting step and the prescription requirements having been generated in the pattern setting step.

6. The eyeglass lens design method according to claim 1 , further comprising:

a deviation quantity setting step in which a deviation quantity for the wearing condition parameter is set, wherein:

in the pattern setting step, a pattern taking a value measured on the eyeglass wearer and a pattern taking a value deviating from the measured value by the deviation quantity are set for the wearing condition parameter.

7. The eyeglass lens design method according to claim 1 , further comprising:

an evaluation/selection step in which a plurality of eyeglass lenses having been designed in the designing step are evaluated and an eyeglass lens to be provided to the eyeglass wearer is selected based upon evaluation results.

8. The eyeglass lens design method according to claim 1 , further comprising:

an output step in which a plurality of eyeglass lenses having been designed in the designing step are evaluated and evaluation results are output via an output device.

9. The eyeglass lens design method according to claim 1 , further comprising:

a pattern quantity specifying step in which a quantity of patterns is specified, wherein:

in the pattern-setting step, patterns are set in the quantity specified in the pattern quantity-specifying step.

10. The eyeglass lens design method according to claim 1 , wherein:

in the designing step, an optimization calculation step and an optimization parameter setting step are alternately executed repeatedly, in the optimization calculation step eyeglass lens optimization calculations are executed individually in correspondence to an optimization parameter value for a left eyeglass lens and an optimization parameter value for a right eyeglass lens through parallel processing, and in the optimization parameter setting step the left eyeglass lens and the right eyeglass lens designed in the optimization calculation step are evaluated and an optimization parameter for the left eyeglass lens and an optimization parameter for the right eyeglass lens to be used in subsequent optimization calculations are set based upon evaluation results.

11. The eyeglass lens design method according to claim 1 , wherein:

in the designing step, an optimization calculation step and an optimization parameter setting step are alternately executed repeatedly, in the optimization calculation step eyeglass lens optimization calculations are executed each in correspondence to one of a plurality of optimization parameter values through parallel processing, and in the optimization parameter setting step a plurality of eyeglass lenses designed in the optimization calculation step are evaluated and a plurality of optimization parameter values to be used in subsequent optimization calculations are set based upon evaluation results.

12. An eyeglass lens manufacturing method for manufacturing an eyeglass lens designed through the eyeglass lens design method according to claim 1 .

13. An eyeglass lens designed through the eyeglass lens design method according to claim 1 .

14. An eyeglass lens design system, comprising:

a memory storing instructions; and

at least one processor configured to execute the instructions to:

set prescription requirements for an eyeglass lens to be worn by an eyeglass wearer;

set a plurality of patterns having different values for at least one of the prescription requirements for the eyeglass lens, a lens type, a progressive zone length, a wearing condition parameter pertaining to an eyeglass wearing condition in which the eyeglass wearer wears eyeglasses, a lifestyle/habit parameter pertaining to a lifestyle/habit of the eyeglass wearer, and an optimization parameter used to control optimization of design for the eyeglass lens;

generate at least one set of prescription requirements that is at least partially different from the prescription requirements having been set;

design eyeglass lens contours, each in correspondence to one of the plurality of patterns having been set, through parallel processing; and

design eyeglass lens contours respectively corresponding to the prescription requirements having been set and the prescription requirements having been generated.

15. A computer-readable computer program product containing an eyeglass lens design program, the program enabling a computer to execute:

a prescription requirement-setting step in which prescription requirements for an eyeglass lens to be worn by an eyeglass wearer are set;

a pattern setting step in which a plurality of patterns having different values for at least one of the prescription requirements for the eyeglass lens, a lens type, a progressive zone length, a wearing condition parameter pertaining to an eyeglass wearing condition in which the eyeglass wearer wears eyeglasses, a lifestyle/habit parameter pertaining to a lifestyle/habit of the eyeglass wearer, and an optimization parameter used to control optimization of design for the eyeglass lens, are set, wherein in the pattern setting step, at least one set of prescription requirements that is at least partially different from the prescription requirements having been set in the prescription requirement-setting step is generated; and

a designing step in which individual threads or processes are generated each for purposes of designing an eyeglass lens contour in correspondence to one of the plurality of patterns having been set in the pattern setting step, and design processing is executed in the threads or the processes in parallel, wherein in the designing step, the eyeglass lens contours are designed respectively corresponding to the prescription requirements having been set in the prescription requirement-setting step and the prescription requirements having been generated in the pattern setting step.

16. The computer program product according to claim 15 , wherein:

the computer program product is a recording medium.

17. An eyeglass lens design method, comprising:

a prescription requirement-setting step in which prescription requirements for an eyeglass lens to be worn by an eyeglass wearer are set;

a pattern setting step in which a plurality of patterns having different values for at least one of the prescription requirements for the eyeglass lens, a lens type, a progressive zone length, a wearing condition parameter pertaining to an eyeglass wearing condition in lifestyle/habit of the eyeglass wearer, and an optimization parameter used to control optimization of design for the eyeglass lens, are set; and

a designing step in which eyeglass lens contours, each corresponding to one of the plurality of patterns having been set in the pattern setting step, are designed, wherein in the designing step, an eyeglass lens is designed based upon results obtained by completing design work for an eyeglass lens contour before a predetermined time limit is reached, among eyeglass lens contour designs corresponding to the prescription requirements having been set in the prescription requirement-setting step and the prescription requirements having been generated in the pattern setting step.

18. An eyeglass lens design system, comprising:

a memory storing instructions; and

at least one processor configured to execute the instructions to:

set prescription requirements for an eyeglass lens to be worn by an eyeglass wearer;

set a plurality of patterns having different values for at least one of the prescription requirements for the eyeglass lens, a lens type, a progressive zone length, a wearing condition parameter pertaining to an eyeglass wearing condition in which the eyeglass wearer wears eyeglasses, a lifestyle/habit parameter pertaining to a lifestyle/habit of the eyeglass wearer, and an optimization parameter used to control optimization of design for the eyeglass lens; and

design eyeglass lens contours, each in correspondence to one of the plurality of patterns having been set by the pattern setting unit, through parallel processing, wherein the designing includes designing an eyeglass lens based upon results obtained by completing design work for an eyeglass lens contour before a predetermined time limit is reached, among eyeglass lens contour designs corresponding to the prescription requirements having been set and the prescription requirements having been generated.

19. A computer-readable computer program product containing an eyeglass lens design program, the program enabling a computer to execute:

a prescription requirement-setting step in which prescription requirements for an eyeglass lens to be worn by an eyeglass wearer are set;

a pattern setting step in which a plurality of patterns having different values for at least one of the prescription requirements for the eyeglass lens, a lens type, a progressive zone length, a wearing condition parameter pertaining to an eyeglass wearing condition in which the eyeglass wearer wears eyeglasses, lifestyle/habit parameter pertaining to a lifestyle/habit of the eyeglass wearer and an optimization parameter pertaining to an lifestyle/habit of the eyeglass wearer, and an optimization parameter used to control optimization of design for the eyeglass lens, are set; and

a designing step in which individual threads or processes are generated for purposes of designing an eyeglass lens contour in correspondence to one of the plurality of patterns having been set in the pattern setting step, the design processing is executed in the threads or the processes in parallel, wherein in the designing step, an eyeglass lens is designed based upon results obtained by completing design work for an eyeglass lens contour before a predetermined time limit is reached, among eyeglass lens contour designs corresponding to the prescription requirements having been set in the prescription requirement-setting step and the prescription requirements having been generated in the pattern setting step.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 1, 2016
From: MIZUNO, MASATOMO; UCHIYAMA, YUKIMASA
To: NIKON CORPORATION
Reel/Frame 040189/0153 →
Priority Claims (1)
JP 2014-030494 · Feb 20, 2014 · national
Continuity (2)
Continuation PCTJP2015054629 · Feb 19, 2015
Related Publication 20170045755A1 · Feb 16, 2017
Cited By (1)
US 12,654,409