AIIM TR34-1996 Sampling Procedures for Inspection by Attributes of Images in Electronic Image Management (EIM) and Micrographic Systems《供检查电子图像管理(EIM)和显微摄影系统属性的抽样检验》.pdf
《AIIM TR34-1996 Sampling Procedures for Inspection by Attributes of Images in Electronic Image Management (EIM) and Micrographic Systems《供检查电子图像管理(EIM)和显微摄影系统属性的抽样检验》.pdf》由会员分享,可在线阅读,更多相关《AIIM TR34-1996 Sampling Procedures for Inspection by Attributes of Images in Electronic Image Management (EIM) and Micrographic Systems《供检查电子图像管理(EIM)和显微摄影系统属性的抽样检验》.pdf(72页珍藏版)》请在麦多课文档分享上搜索。
1、 AIIM TR34 96 m 1012348 05012LO 559 m May 13,1996 ASSOCIATION FOR INFORMATION AND IMAGE MANAGEMENT INTERNATIONAL 1100 Wayne Avenue Suite 11 O0 Silver Spring, Maryland 20910 AIIM 301-587-8202 COPYRIGHT Association for Information or for a small number of lots (or rolls) of images. Other procedures ar
2、e included for a continuing series of lots or roils of images (for example, 100 rolls) that are sufficient to allow switching rules to be applied. These procedures provide the following: - an automatic protection to the consumer if a deterioration in quality is detected (by switching to tightened in
3、spection or discontinuing inspection) - an incentive to reduce inspection costs by switching to reduced inspections if consistently good quality is achieved Clause 11 contains procedures for developing sampling plans that may be used for isolated or a small number of lots or rolls of images. For a l
4、arge number of lots or roils, clause 12 contains a discussion of - the sampling procedures used for a continuing series of lots - single plans used in IS0 2859-1 (ANSI/ASQC 21.4.) - item-by-item sequential plans using IS0 8422 2 References The following standards contain provisions that, through ref
5、erence in this text, constitute parts of this technical report. At the time of publication, the editions indicated were valid. All standards are subject to revision, and parties to agreements based on this technical report are encouraged to investigate the possibility of applying the most recent edi
6、tions of the standards listed in this clause. Members of IEC and IS0 maintain registers of currently valid international standards. 2.1 Referenced international standards IS0 2859-1:1996, Sampling procedures for inspection by attributes - Part 1: Sampling plans indexed by acceptable quality level (A
7、QL) for lot-by-lot inspection. IS0 2859-2:1985, Sampling procedures for inspection by attributes - Part 2: Sampling plans indexed by Limiting Quality (Le) for isolated lot inspection. IS0 8422:1991, Sequential sampling pians for inspection by attributes. IS0 3534-1:1993, Statistics - Vocabulary and
8、symbols - Part I: Probability and general statistical tem. 1 Association for Information and Image Management international COPYRIGHT Association for Information however, clause 9 contains a partial list of attributes that may be nonconforming enough to be classed as defects. Refer to ANSUAIIM stand
9、ards and technical reports for complete listings of such image attributes. 3.1.3 image: Unit of inspection. An image is inspected to detennine its classification as conforming or not, or to count the number of nonconformities. An image wili have a number of components or attributes that may be nonco
10、nforming. Refer to clause 9 for a list of attributes. 3.1.4 inspection by attributes: Inspection whereby either the image is classified simply as conforming or nonconforming, or the number of nonconformities in the images inspected is counted, with respect to a given list of attributes. 3.15 lot: De
11、finite quantity of images, each having uniform characteristics, collected together and submitted for examination. A lot may also be a single roll or set of rolls of images received at one time, an optical disk, a magnetic tape, or a single box of microfiche, etc. 3.1.6 lot size: Number of images in
12、a lot, disk, or roli. 3.1.7 nonconforming image: Image with one or more nonconformities. Note: Nonconforming images generally will be classified by their degree of seriousness, such as: - class A. An image that contains one or more nonconformities of class A and may also contain nonconformities of c
13、lass B and/or class C. - dacc B. An image that contains one or more nonconformities of class B and may also contain nonconformities of clas C, but contains no nonconformity of dass A. 3.1.8 nonconformities per 100 images: One hundred times the number of nonconfonnities contained in the sample (one o
14、r more nonconfonnities being possible in any image) divided by the total number of images. 2 Association for information and Image Management International COPYRIGHT Association for Information h, is the intercept of the acceptance line. 3.2.7 h,: Constant that is used to determine the rejection num
15、ber; h,is the intercept of the rejection line. 32.8 multiplier of the cumulative sample size (g): Multiplier of the cumulative sample size that is used to determine the acceptance and rejection numbers; g is the slope of the acceptance and rejection lines. 33.9 nm: Average sample size. 33.10 n, : Sa
16、mple size for a single sampling plan that has essentially the same operating characteristic as the sampling plan under consideration. 3.2.11 n,: Curtailment value of the cumulative sample size. 3.2.12 p: Lot quality level in proportion nonconforming. 3.2.13 Rejection number for sequential sampling (
17、R): Value calculated from the specified parameters of the sampling plan and the cumulative sample size. The cumulative count is compared to the rejection number after each image is inspected to determine if the lot should be rejected. 3.2.14 RI: Rejection number corresponding to the curtailed value
18、of the cumulative sample size. 3 Association for Information and Image Management International COPYRIGHT Association for Information CRQ is 0.125). That is, we wish to find a sampling plan that will accept lots that are 4% or less nonconforming 95% of the time (because PR is 5%) and accept lots tha
19、t are 12.5% nonconforming only 10% of the time (because CR is 10%). We determine ratio of CRQ to PRQ. CRQPRQ = 0.125/0.04 = 3.125 Next, we look in the CRWPRQ column of table 3, Values for single sampling plans, and locate the value nearest to our calculated value. From the CRQLPRQ column, we find th
20、at 3.21 is the number nearest to 3.125. We locate the acceptance number in table 3 by looking at the AC value that corresponds to 3.21. Our acceptance number is 6. Next, we determine the sample size by dividing n x CRQ by the CRQ and n x PRQ by the PRQ (rounding up). n = n x CRQKRQ = 10.532/0.125 =
21、85 n = n x PRWPRQ = 3.286/0.04 = 83 Finally, we choose the sampling plan. We use the highest result of the two calculations for our sampling plan. in this case, we would choose the foliowing sampling plan: n = 85 Ac=6 would sample 85 images. If no more man 6 of the images inspected are nonconfoming,
22、 the lot would be accepted. 11.13 Nomograph method for selecting a plan Another way to select a sampling plan is to use the nomograph method. Figure 1, Nomograph, can be used to select a sampling plan. The following steps describe how to use the nomograph. A. Fust, we choose a PRQ and CRQ. We will c
23、hoose the same PRQ and CRQ used in 11.1.2 -a PRQ of 4% and a CRQ of 12.5% (i.e., PRQ is 0.04; CRQ is 0.125). We wish to find a sampling plan that will accept lots that are 4% nonconforming 95% of the time and accept lots that are 12.5% nonconforming only 10% of the time. 8 Association for Informatio
24、n and Image Management International COPYRIGHT Association for Information that is, they give approximately the same protection to both the producer and the consumer. Double plans have a smaller average sample size than single plans. Multiple plans have a smaller average sample size than double plan
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