• Title/Summary/Keyword: Optimum index

검색결과 636건 처리시간 0.025초

경제적인 품질보증수준확보를 위한 공정능력지수의 최적화에 관한 연구 (Optimization of Process Capability Index for Economic Coalify Assurance Level)

  • 송서일
    • 산업경영시스템학회지
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    • 제11권18호
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    • pp.71-80
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    • 1988
  • Process capability implies the qualitative capability of a process, and it is necessary to specify the process capability by quantification and to evaluate the level with the specified standardizaion. But the process capability index is currently used to evaluate the performance of quality control activity. without considering the characteristics of process structure or the economy of management. Here the researcher would like to redefine process capability and emphasize its index may be used as the measure of managerial assessment and the objective of process quality control in full consideration of the economic aspects of process characteristics. Too little or too much process capability causes a loss of or excess. The proper economic level of process capability varies to each process. The procedure of taking the optimum process capability index is derived from the expected profit function, whereas each method is studied in cases of normal process with one-sided specification and two-sided specification. In addition, the process capability index is presented as a method of quality assurance. And an example is exhibited on wrapping process of 'A' company. The results of this study are summarized at follows. First, though the norminalization of the process capability index is possible by the existing methods, the optimum process capability index can vary to the situation of each process. So, the optimum process capability index which is suggested in this dissertation should be used as the standard to assess process capability. Second, the process capability index can take its effect not just in indicating quality control or managerial records but also in the management of high qualify assurance.

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최적제어 설계에 있어서의 2차형 하중행렬의 한 결정법 (AN ALGORITHM FOR DETERMINING THE WEIGHTING MATRICES OF THE QUADRATIC PERFORMANCE INDEX IN OPTIMAL CONTROL)

  • 황창선;김정택
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1989년도 추계학술대회 논문집 학회본부
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    • pp.407-410
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    • 1989
  • Optimizing transient response for both tracking reference signals and disturbance rejection is determined by the poles and zeros of the transfer function. Thus, optimal pole assignment and how should weighting matrix for the performance index be chosen is very important to achieve optimum transient response. This paper focus its attention on the choosing and analysis of weighting matrix for optimum pole assignment. Optimum pole assignment is defined for linear time-invariant continuous systems.

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틸팅 인덱스 테이블 구조해석 및 최적형상 설계에 관한 연구 (A Study on Structural Analysis and Optimum Shape Design of Tilting Index Table)

  • 이문재;이춘만
    • 한국정밀공학회지
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    • 제27권2호
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    • pp.86-93
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    • 2010
  • The tilting index table has attached to CNC machining center with 3axes, it can be improvement of its performance and its machining efficiency. The tilting index table is a key unit in order to manufacture some non-rotational and 3-dimensional parts, using the conventional machining center. In this study, structural analysis is carried out by FEM simulation using the commercial software ANSYS Workbench 11 to develop tilting index table using direct drive motor. The shape of the tilting index table obtained from the optimization was analyzed and compared with the initial model. Also, the initial model was modified based on the optimization model and the result was verified to have the acceptable improvement.

혼합고분자처리에 의한 골판지 원지 및 골판지의 물성변화 (Effect of Mixed Polymer Treatment on the Physical Property of the Corrugated Container Board)

  • 권기훈;임부국;박성배;양재경;장준복;이종윤
    • 펄프종이기술
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    • 제31권4호
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    • pp.69-75
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    • 1999
  • This study was performed to investigated the application of mixed resins for corrugated container board. The corrugated container board yields a sandwich structure in which a linerboard material is glued to a corrugated medium . Now, manufacturing corrugated container boards don't provide sufficient strength, and result in box failure during shipping . Therefore improvement of box strength is necessary . In this study, we intend to improve box strength by improving corrugated medium strength with mixed resins and to find the optimum treatment condition of this resins. First, we tried to mixed resins as Starch+CMC, Starch_Irea, CMC+Urea, Second, investigated to applicability of this resins for corrugated medium , and the third, measured tensile index, burst index, and edgewise compression index on liner, medium paper, and single faced corrugated container board. In this test results, we obtained that the improvement ratios of tensile index in liner and medium paper were approximately 80-185%, 60-118% , respectively. The respecting improvement ratios of edgewise compression index of single faced corrugated container board was approximately 91-124%, relatively. In addition, we concluded that optimum condition in mixing ratio was 1 :3 with CMC + Urea and the ap[plication amounts was 9% on materials. Fro manufacture of corrugated container board, optimum condition in mixing ratio was 1 : 3 with 5% CMC +Urea , because of considering to improvement of strength on cost.

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InGaAsP/InP RWG MQW-LD의 최적 설계 (The optimum design of InGaAsP/InP RWG MQW-LD)

  • 하홍춘;오수환;이석정;박윤호;오종환;홍창희
    • 한국광학회지
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    • 제7권4호
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    • pp.375-385
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    • 1996
  • 본 연구에서는 InGaAsP/InP RWG MQW-LD를 제작하기 앞서 이론해석으로부터 RWG MQW-LD의 도파로규격에 따른 측방향 유효굴절율차와 index-guided LD로 동작하는 임계 유효굴절율차의 값, 그리고 이러한 굴절율차에 따른 측방향에서의 단일모드 발진조건과 임계전류를 최소로 하기 위한 ridge 폭을 구하여 도파로를 설계하였다. 이론해석으로 부터는 순수한 index-guided LD로 동작하기 위한 측방향 임계 유효굴절율차 값은 일반적인 bulk층 보다는 약 2배 정도 큰 값인 약 0.015이었으며 도파로 설계에 있어서는 유효굴절율차가 0.015이며 측방향단일모드로 동작하기 위해서는 ridge 폭은 약 4.mu.m이하가 되어야 함을 알 수 있었다. 그리고 이때 임계전류값이 최소가 됨을 지적하였다.

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교대 기초말뚝의 측방유동 판정식에 관한 신뢰성 해석 (Reliability Analysis on the Decision Method of Lateral Flow of Foundation Piles for Abutment)

  • 안종필;김규덕;김일구;최진호
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2008년도 추계 학술발표회
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    • pp.1090-1097
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    • 2008
  • This study conducted the decision method of lateral flow in abutment structures founded on the soft soils and the reliability analysis on the foundation pile for abutment. On the basis of the results, this study proposed the reliability design model. Reliability analysis was conducted by applying second moment method, point estimation method, and expected total cost minimization to lateral movement index, lateral movement decision index, modified lateral movement decision index, and circular failure safety factor for the decision criteria of lateral flow. The reliability index by analysis method had a similar tendency each other. Point estimation method was found as a practical method in the aspect of convenience because it could conduct the analysis only by mean and standard deviation as well as the partial derivative on random variables was not necessary. Optimum reliability index and optimum safety according to increasing in failure factors and load ratio were analyzed and loads and resistance factors of the design criteria of optimum reliability were estimated. It presented rational design model which can consider construction level and stability and economical efficiency overall.

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최적임도배치계획(最適林道配置計劃)에 관(關)한 연구(硏究) (Studies on Planning Method of Optimum Forest Road)

  • 차두송;이준우
    • 한국산림과학회지
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    • 제81권2호
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    • pp.139-145
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    • 1992
  • 본(本) 연구(硏究)는 강원대학교(江原大學校) 임과대학부속(林科大學附屬) 연습림(演習林)의 제(第)2임반(林班)을 대상으로 수치지형도(數値地形圖)를 이용, 임도개설목적(林道開設目的)에 따른 4개의 평가인자(評價因子), 즉 최단임도개설장(最短林道開設長), 평균집재거리(平均集材距離), 개발지수(開發指數) 및 집재불능지점수(集材不能地點數)의 비율(比率) 등을 설정하여 각각의 평가인자(評價因子)에 적합한 최적임도노선(最適林道路線)의 배치계획(配置計劃)에 대하여 검토하였다. 그 결과(結果)를 요약(要約)하면 다음과 같다. 1. 최단임도개설장(最短林道開設長)에 의한 노선배치(路線配置)는 총연장(總延長) 6035.6m, 임도밀도(林道密度) 12.73m/ha, 평균집재거리(平均集材距離) 279.9m, 개발지수(開發指數) 1.43, 집재불능지점수(集材不能地點數)의 비율(比率)15.7% 이다. 2. 평균집재거리(平均集材距離)에 의한 노선배치(路線配置)는 총연장(總延長) 7828.501, 임도밀도(林道密度) 16.52m/ha, 평균집재거리(平均集材距離) 198.4m, 개발지수(開發指數) 1.31, 집재불능지점수(集材不能地點數)의 비율(比率) 4.0%이다. 3. 개발지수(開發指數)에 의한 임도노선배치(林道路線配置)는 총연장(總延長) 7410.6m, 임도밀도(林道密度) 15.64m/ha, 평균집재거리(平均集材距離) 210.9m, 개발지수(開發指數) 1.26, 집재불능지점수(集材不能地點數)의 비율(比率) 5.0%이다. 4. 집재불능지점수(集材不能地點數)의 비율(比率)에 의한 임도노선배치(林道路線配置)는 총연장(總延長) 8307.1m, 임도밀도(林道密度) 17.53m/ha, 평균집재거리(平均集材距離) 184.9m, 개발지수(開發指數) 1.29, 집재불능지점수(集材不能地點數)의 비율(比率) 2.5%이다.

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방향성 결합을 위한 광도파로 굴절율의 최적화 해석 (Optimum analysis of optical waveguide refractive index for directional couple ins)

  • 전용우;채기병;소대화;장지호
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 1993년도 추계학술대회 논문집
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    • pp.39-42
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    • 1993
  • In this paper, we performed theoretical simulation for directional coupler using BPM program. Simulation results shored that the optimum optical waveguide refractive index between the guides were 3$\mu\textrm{m}$. Using the parameters of n$_1$=2.25, n$_2$=2.25, n$_3$=2.2, gap=3$\mu\textrm{m}$, W= 30$\mu\textrm{m}$, $\Delta$z=0.l$\mu\textrm{m}$, λ=1.5$\mu\textrm{m}$, we decided other design parameters. When we applied 40[V] in the optimum condition of the directional coupling effect, we concluded the refractive index variation of 0.001.

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Influences of Different Planting Times on Harvest Index and Yield Determination Factors in Soybean

  • Park, Sei-Joon;Kim, Wook-Han;Seong, Rak-Chun
    • 한국작물학회지
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    • 제45권2호
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    • pp.97-102
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    • 2000
  • This experiment was conducted to investigate the changes of harvest index and the relationship between harvest index and yield determination factors by different planting times in the determinate soybean cultivars, Shinpaldal and Danbaeg. Optimum planting were 23 May in 1995 and 1996. Late planting were 13 June in 1995 and 6 June in 1996. Growth period from planting to physiological maturity (R7) was shortened as planting time was delayed in two cultivars due to shortening of reproductive growth period in Shinpaldal, and of vegetative growth period in Danbaeg. Stem weight was distinctly decreased in late planting compared to optimum planting, but seed weight of both cultivars was not different between planting times. Also, seed number per pod and harvest index were significantly increased in late planting and the high correlation was found between two factors. It was suggested that increase of harvest index in late planting would be related with high assimilate use efficiency due to increase of sink capacity. The results of correlation and principal component analysis for yield determination factors showed that main factor on yield determination was pod number per plant at R5 stage associated with dry matter accumulation during early reproductive growth period, seed number per pod and harvest index were the second factor, and one hundred seed weight was the third factor. The result of this experiment indicated that yield determination in soy-bean was dependent mainly on pod number per plant related to dry matter accumulation by early reproductive growth period, and the increase of seed number per pod and harvest index could compensate for yield decrease by shortening of vegetative growth period in late planting. Such result suggests that optimum planting date can be delayed from mid May to early June in improved soybean cultivars in Korea.

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광량 및 광질이 고려인삼의 생육과 품질에 미치는 영향 II. 광량과 재식밀도와의 관계 (Effects of Light Intensity and Quality on the Growth and Quality of Korean Ginseng (Panax ginseng C.A. Meyer) II. Relationship between Light Intensity and Planting Density)

  • 천성기;목성균;이성식
    • Journal of Ginseng Research
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    • 제15권1호
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    • pp.31-35
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    • 1991
  • In order to know the optimum planting density under shading structures at different light intensity, We investigated the growth status, distribution of ginseng leaf area, correlation between planting density and root weight per plant and yield, correlation between leaf area index and root weight per plant and yield. According to the increase of planting density the leaf area per plant was decreased, but leaf area index (L.A.I) was increased. Ginseng leaf population at different lines under common straw shading were distributed mainly in frost lines but polyethylene net shading at 10fo light intensity were distributed equally in all lines. Optimum planting density in common straw shading at 5% light intensity was 55 plant per tan (90 cmX180 cm) and polyethylene net shading 81 10% light intensity was 60 plant per tan, in consideration of root weight and yield. Optimum leaf area index was 2.4 under common straw shading at 5% light intensity but was 2.7 under polyethylene net shading at 10% light intensity.

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