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1

신선 농산물 수출을 위한 골판지 상자 크기의 최적화 연구 KCI 등재

김민휘, 이윤석, 이명호, 이의학

한국포장학회 한국포장학회지 Vol. 30 No. 2 2024.08 pp.121-129

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4,000원

This study aimed to focus on the optimization of the external dimension sizes in the corrugated fiberboard cartons (CFCs) for exporting agricultural products. The commercial CFCs of current fresh produces such as paprika, Asian pear, melon, sweet potato, and oriental melon for export were used for this study. The guidelines of the minimum internal dimensions of the refrigerated reefer container, the dimensions of pallets, and the maximum load height of a stack were referred to KS T ISO 668, KS T 1372, and the Container Handbook by the German Insurance Association, respectively. These principles were selected as a ground rule for the external dimensions of CFCs. Package layout design programs of ArtiosCAD and Cape Pack software were used to confirm the box stacking patterns and revise the external dimension of CFCs. The final external dimensions of each CFC were revised from 5 to 30 mm compared to its original dimensions. The maximum load of each stacking box per pallet has been increased from 0.0 to 12.5% compared to its original load.

2

Rotary Shaft Structure Optimization of High-Temperature Motor Based on Ansys

Xi-fengWang, Da-weiMeng, ong-mingXu

보안공학연구지원센터(IJSH) International Journal of Smart Home Vol.9 No.5 2015.05 pp.73-82

※ 원문제공기관과의 협약기간이 종료되어 열람이 제한될 수 있습니다.

This thesis focuses on the problems of high-temperature furnace motor in term of rotary shaft over length as well as deformation tendency under high-temperature condition, and therefore the thesis conducts design optimization upon rotary shaft of a motor that is applied in high-temperature furnace regarding its mechanical property and thermal-stress distribution. First, it establishes a full-scale 3D model of the shaft-fan system, then it analyzes its mechanical properties such as rigidity and stiffness under the high-temperature environment, which bases on reasonable assumed conditions and the boundary conditions, where hence the thesis puts forwards an optimized dimension design solution for the motor rotary shaft. And then the thesis analyzes and calculates the shaft-fan system to improve the motor shaft size from the angle of thermal stress and thermal deformation consideration and the special characteristics of such motor working under high-temperature environment. And the improved motor shaft size is verified as reasonable. The thesis analysis can be the designing references for cooling system applied in the high-temperature furnace motor.

3

Video streaming application such as YouTube is one of the most popular mobile applications. To adjust the quality of video for available network bandwidth, a streaming server provides multiple representations of video of which bit rate has different bandwidth requirements. A streaming client utilizes an adaptive bit rate scheme to select a proper video representation that the network can support. The download behavior of video streaming client player is governed by several parameters such as maximum buffer size. Especially, the size of the maximum playback buffer in the client player can greatly affect the user experience. To tackle this problem, in this paper, we propose the maximum buffer size optimization according to available network bandwidth and buffer status. Our simulation study shows that our proposed buffer size optimization scheme successfully mitigates playback stalls while preserving the similar quality of streaming video compared to existing ABR schemes.

4

Packet Size Optimization for Improving the Energy Efficiency in Body Sensor Networks

Domingo, Mari Carmen

[Kisti 연계] 한국전자통신연구원 ETRI journal Vol.33 No.3 2011 pp.299-309

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원문보기

Energy consumption is a key issue in body sensor networks (BSNs) since energy-constrained sensors monitor the vital signs of human beings in healthcare applications. In this paper, packet size optimization for BSNs has been analyzed to improve the efficiency of energy consumption. Existing studies on packet size optimization in wireless sensor networks cannot be applied to BSNs because the different operational characteristics of nodes and the channel effects of in-body and on-body propagation cannot be captured. In this paper, automatic repeat request (ARQ), forward error correction (FEC) block codes, and FEC convolutional codes have been analyzed regarding their energy efficiency. The hop-length extension technique has been applied to improve this metric with FEC block codes. The theoretical analysis and the numerical evaluations reveal that exploiting FEC schemes improves the energy efficiency, increases the optimal payload packet size, and extends the hop length for all scenarios for in-body and on-body propagation.

5

Two-stage layout-size optimization method for prow stiffeners

Liu, Zhijun, Cho, Shingo, Takezawa, Akihiro, Zhang, Xiaopeng, Kitamura, Mitsuru

[Kisti 연계] 대한조선학회 International journal of naval architecture and ocean engineering Vol.11 No.1 2019 pp.44-51

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원문보기

Designing sophisticate ship structures that satisfy several design criteria simultaneously with minimum weight and cost is an important engineering issue. For a ship structure composed of a shell and stiffeners, this issue is more serious because their mutual effect has to be addressed. In this study, a two-stage optimization method is proposed for the conceptual design of stiffeners in a ship's prow. In the first stage, a topology optimization method is used to determine a potential stiffener distribution based on the optimal results, whereupon stiffeners are constructed according to stiffener generative theory and the material distribution. In the second stage, size optimization is conducted to optimize the plate and stiffener sections simultaneously based on a parametric model. A final analysis model of the ship-prow structure is presented to assess the validity of this method. The analysis results show that the two-stage optimization method is effective for stiffener conceptual design, which provides a reference for designing actual stiffeners for ship hulls.

6

A Merchant Ships Size Optimization Model

Choi, Ki-Chul

[Kisti 연계] 한국국방경영분석학회 한국국방경영분석학회지 Vol.12 No.1 1986 pp.78-86

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원문보기

This paper analyzes how a shipowner or charterer may determine the specification of optimal ship size for a given route with respect to certain market requirements. The theory of optimal ship size, a methodology for estimating scale economics, and the various factors affecting ship size are examined using a typical conventional cargo ship and bulk cargo carriers based on shipowners' cost data.

7

Harmony Search Algorithm-Based Approach For Discrete Size Optimization of Truss Structures

Lee, Kang-Seok, Kim, Jeong-Hee, Choi, Chang-Sik, Lee, Li-Hyung

[Kisti 연계] 한국전산구조공학회 한국전산구조공학회 학술대회논문집 2005 pp.351-358

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원문보기

Many methods have been developed and are in use for structural size optimization problems, In which the cross-sectional areas or sizing variables are usually assumed to be continuous. In most practical structural engineering design problems, however, the design variables are discrete. This paper proposes an efficient optimization method for structures with discrete-sized variables based on the harmony search (HS) meta-heuristic algorithm. The recently developed HS algorithm was conceptualized using the musical process of searching for a perfect state of harmony. It uses a stochastic random search instead of a gradient search so that derivative information is unnecessary In this paper, a discrete search strategy using the HS algorithm is presented in detail and its effectiveness and robustness, as compared to current discrete optimization methods, are demonstrated through a standard truss example. The numerical results reveal that the proposed method is a powerful search and design optimization tool for structures with discrete-sized members, and may yield better solutions than those obtained using current method.

8

A multilevel framework for decomposition-based reliability shape and size optimization

Tamijani, Ali Y., Mulani, Sameer B., Kapania, Rakesh K.

[Kisti 연계] 테크노프레스 Advances in aircraft and spacecraft science Vol.4 No.4 2017 pp.467-486

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원문보기

A method for decoupling reliability based design optimization problem into a set of deterministic optimization and performing a reliability analysis is described. The inner reliability analysis and the outer optimization are performed separately in a sequential manner. Since the outer optimizer must perform a large number of iterations to find the optimized shape and size of structure, the computational cost is very high. Therefore, during the course of this research, new multilevel reliability optimization methods are developed that divide the design domain into two sub-spaces to be employed in an iterative procedure: one of the shape design variables, and the other of the size design variables. In each iteration, the probability constraints are converted into equivalent deterministic constraints using reliability analysis and then implemented in the deterministic optimization problem. The framework is first tested on a short column with cross-sectional properties as design variables, the applied loads and the yield stress as random variables. In addition, two cases of curvilinearly stiffened panels subjected to uniform shear and compression in-plane loads, and two cases of curvilinearly stiffened panels subjected to shear and compression loads that vary in linear and quadratic manner are presented.

9

Filtering Technique to Control Member Size in Topology Design Optimization

Kim, Tae-Soo, Kim, Jae-Eun, Jeong, Je-Hyun, Kim, Yoon-Young

[Kisti 연계] 대한기계학회 KSME international journal Vol.18 No.2 2004 pp.253-261

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원문보기

A simple and effective filtering method to control the member size of an optimized structure is proposed for topology optimization. In the present approach, the original objective sensitivities are replaced with their relative values evaluated within a filtering area. By adjusting the size of the filtering area, the member size of an optimized structure or the level of its topological complexity can be controlled even within a given finite element mesh. In contrast to the checkerboard-free filter, the present filter focuses on high-frequency components of the sensitivities. Since the present filtering method does not add a penalty term to the objective function nor require additional constraints, it is not only efficient but also simple to implement. Mean compliance minimization and eigenfrequency maximization problems are considered to verify the effectiveness of the present approach.

10

An Application of CAE in the Optimization of Runner Size in Injection Molding

김준민, 류민영

[Kisti 연계] 한국소성가공학회 소성가공 Vol.15 No.5 2006 pp.347-353

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원문보기

The delivery system such as sprue, runner and gate is a waste of resin in injection molding operation. In this study the reduction of runner size has been investigated using injection molding CAE softwares, Moldflow and Moldex3D, and commercial CFD Softwares, Fluent and Polyflow. To verify the computational results experiment was performed. There were three considerations in deciding optimal runner size in this study: minimum pressure at the gate that makes resin fully filled in the cavity, minimum runner size that compensates shrinkage of resin in the cavity, and frozen layer thickness formed in the runner during injection. Through the computer simulations the optimal runner size that satisfies those three considerations has been decided. Although the computational results among the softwares were slightly different, it was enough to predict the optimal runner size. The previous runner diameter was 8 mm and predicted optimal size was 5 mm. This was verified by injection molding experiment. Thus, the way of CAE application in deciding optimal runner size adapted in this study would be appropriated.

11

Proton MR spectroscopy of Hippocampal formation: Optimization of Voxel Size in Spin-Echo Sequences

Choi, Choong-Gon, Kim, Sung-Tae, chi, Sang-Il, Lee, Ho-Kyu, Suh, Dae-Chul

[Kisti 연계] 대한자기공명의과학회 대한자기공명의과학회 학술대회논문집 1996 p.23

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12

A transflective LCD using PVA mode and optimization of pattern size

Do, Hee-Wook, Lee, Seo-Hern, Lee, Gi-Dong, Yoon, Tae-Hoon, Kim, Jae-Chang

[Kisti 연계] 한국정보디스플레이학회 한국정보디스플레이학회 학술대회논문집 2003 pp.547-550

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원문보기

In this paper we report the optimization method of the pattern size of the electrodes in PVA LCD for the transflective mode in order to improve the optical characteristics. Moreover, we designed the electrode of PVA LCD so as to remove the driving voltage difference between transmissive mode and reflective mode. As a result, we expect very simple manufacturing process and high optical performance even if complex process such as a multi cell gap process and multi driving method are not applied

13

Vibration Based Structural Damage Detection Technique using Particle Swarm Optimization with Incremental Swarm Size

Nanda, Bharadwaj, Maity, Damodar, Maiti, Dipak Kumar

[Kisti 연계] 한국항공우주학회 International journal of aeronautical and space sciences Vol.13 No.3 2012 pp.323-331

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원문보기

A simple and robust methodology is presented to determine the location and amount of crack in beam like structures based on the incremental particle swarm optimization technique. A comparison is made for assessing the performance of standard particle swarm optimization and the incremental particle swarm optimization technique for detecting crack in structural members. The objective function is formulated using the measured natural frequency of the intact structure and the frequency obtained from the finite element simulation. The outcomes of the simulated results demonstrate that the developed method is capable of detecting and estimating the extent of damages with satisfactory precision.

14

Controlling shrinkage and enhancing drying kinetics in ceramic clay bodies through chamotte particle size and content optimization

Kaiyang Luo, Weijun Ye, Zhongyuan Li

[NRF 연계] 한양대학교 세라믹연구소 Journal of Ceramic Processing Research Vol.26 No.6 2025.12 pp.1081-1085

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원문보기

Chamotte-tempered clay bodies because of their improved dimensional stability and regulated drying and firing behavior,have become the material of choice for large-scale and structurally challenging clay sculpture. This study assesses the effects ofchamotte particle size, content, and physical properties on mechanical performance, shrinkage, and workability in sculpturalclay compositions. The use of chamotte, an inert, pre-fired grog, minimizes warpage and cracking in large or intricatesculptural shapes by drastically reducing drying and firing shrinkage. For outdoor installations and high-temperature artisticprocedures, refractory inclusions also improve handling stability, load-bearing capability after firing, and tolerance to abrupttemperature changes. Coarse chamotte was shown to improve stiffness and sustain massive shapes, while finer chamotteboosted strength and enabled accurate detailing, according to experimentally obtained performance data and findingspublished in the ceramic literature. The findings highlight how crucial it is to choose the right chamotte grading and contentin order to attain a harmonious blend of workability, structural dependability, and long-term durability. In order to assistartists, designers, and conservators in creating optimal clay bodies for sophisticated sculptural applications, this study offersa useful framework based on materials science.

15

The optimization for the straight-channel PCHE size for supercritical CO2 Brayton cycle

Xu, Hong, Duan, Chengjie, Ding, Hao, Li, Wenhuai, Zhang, Yaoli, Hong, Gang, Gong, Houjun

[Kisti 연계] 한국원자력학회 Nuclear Engineering and Technology Vol.53 No.6 2021 pp.1786-1795

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원문보기

Printed Circuit Heat Exchanger (PCHE) is a widely used heat exchanger in the supercritical carbon dioxide (sCO<sub>2</sub>) Brayton cycle because it can work under high temperature and pressure, and has been a hot topic in Next Generation Nuclear Plant (NGNP) projects for use as recuperators and condensers. Most previous studies focused on channel structures or shapes. However, no clear advancement has so far been seen in the allover size of the PCHE. In this paper, we proposed an optimal size of the PCHE with a fixed volume. Two boundary conditions of PCHE were simulated, respectively. When the volume of PCHE was fixed, the heat transfer rate and pressure loss were picked as the optimization objectives. The Pareto front was obtained by the Multi-objective optimization procedure. We got the optimized number of PCHE channels under two different boundary conditions from the Pareto front. The comprehensive performance can be increased by 5.3% while holding in the same volume. The numerical results from this study can be used to improve the design of PCHE with straight channels.

16

Optimization of the Data Line Sharing Panel Design for the High Resolution and Large Size LCD

Lee, Do-Young, Ji, Ju-Hyun, Koo, Hoe-Woo, Yoo, Ki-Taek, Cho, Suk-Ho, Song, Jae-Hun, Yoo, Sung-Rok, Kim, Jae-Sang, Park, Cheol-Woo, Park, Jae-Hong, Lee, Kyung-Ho

[Kisti 연계] 한국정보디스플레이학회 한국정보디스플레이학회 학술대회논문집 2009 pp.1247-1249

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원문보기

We have successfully developed the 22 inch WSXGA+ DLS(Data Line Sharing) Panel driving in 75 Hz. In the large size and high resolution panels, it is very difficult to design the DLS Panels without failure because of the very short charging time and the large signal delay. So, we first investigated the charging order to find the most adequate charging type to the large size and high resolution panels. And then, we optimized the design of DLS in terms of improving the charging properties using the technologies of the Delta-doping TFTs, Cu metal electrodes and optimization of panel design value and the circuit signal timing.

17

RETScreen 모델이용 태양열온수시스템 초기설계단계 설계용량 최적화기법의 TRNSYS 모델과의 비교분석

이경호

[Kisti 연계] 대한설비공학회 Korean journal of air-conditioning and refrigeration engineering Vol.25 No.12 2013 pp.693-699

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원문보기

This paper describes a method for size optimization of the major design variables for solar water heating systems at the stage of concept design. The widely used RETScreen simulation tool was used for optimization. Currently, the RETScreen tool itself does not provide a function for optimization of the design parameters. In this study, an optimizer was combined with the software. A comparative study was performed to evaluate the RETScreen-based approach with the case study of a solar heating system in an office building. The optimized results using the RETScreen model were compared to previously published results with the TRNSYS model. The objective function of the optimization is the life-cycle cost of the system. The optimized design results from the RETScreen model showed good agreement with the optimized TRNSYS results for the solar collector area and storage volume, but presented a slight difference for the collector slope angle in terms of the converged direction of the solutions. The energy cost, life-cycle cost, and thermal performance regarding collector efficiency, system efficiency, and solar fraction were compared as well, and the RETScreen model showed good agreement with the TRNSYS model for the conditions of the base case and optimized design.

18

부분 구조의 주파수 응답 함수를 이용한 봉의 치수 최적화

윤홍근, 이진우

[Kisti 연계] 대한기계학회 대한기계학회논문집A Vol.41 No.10 2017 pp.905-913

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원문보기

본 연구에서는 형상 정보가 주어지지 않은 부품과 형상 정보가 주어진 부품으로 구성된 봉의 고유 주파수를 최대화하는 치수 최적화 방법을 제시한다. 두 부품으로 구성된 봉의 진동 특성을, 각 부품의 형상 대신, 두 부품의 주파수 응답 함수들로부터 예측한다. 이를 위해, 실험 모달 해석 방법을 이용하여 각 부품의 등가 진동계를 구하고, 두 등가 진동계의 질량 행렬과 강성 행렬들로부터, 두 부품이 결합된 봉의 등가 질량 행렬과 강성 행렬을 도출한다. 몇 가지 수치 예제에서, 제시한 방법으로 얻어진 봉의 등가 진동계의 주파수 응답 함수를 실제 봉의 주파수 응답 함수와 비교하여, 등가 진동계를 이용한 고유 주파수 예측 방법의 유효성을 검증한다. 검증된 방법으로 얻어진 등가 진동계를 이용하여, 봉의 1차 고유 주파수를 최대화하기 위한 치수 최적화 문제를 정식화하고, 최적화 알고리즘을 사용하여 봉의 구조를 최적화한다.

In this work, a method of size optimization is proposed to maximize the natural frequency of a rod that consists of a hidden shape in one part and an exposed shape in the other. The frequency response function of a rod composed of two parts is predicted by using the frequency response functions of each of the parts instead of the shapes of the parts. The mass and stiffness matrices of the rod are obtained by using the mass and stiffness matrices of the equivalent vibration systems, which are obtained by applying the experimental modal analysis method to the frequency response functions of the parts. Through several numerical examples, the frequency response function obtained by using the proposed method is compared with that of a rod to validate the prediction method based on equivalent vibration systems. A size optimization problem is formulated for maximizing the first natural frequency of a combined rod, which is replaced with an equivalent vibration system, and a rod structure is optimized by using an optimization algorithm.

19

대형복합수직선반 크로스레일의 치수최적화

이명규, 이동윤, 송기형, 최학봉

[Kisti 연계] 한국정밀공학회 한국정밀공학회 학술대회논문집 2012 pp.409-410

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20

구조물의 최대강성 치수최적설계

신수미, 박현정

[Kisti 연계] 한국컴퓨터정보학회 Journal of the Korea society of computer and information Vol.14 No.1 2009 pp.65-72

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본 연구는 주어진 부피제약조건 하에서 최대강성을 구현하는 고층 철골 트러스 시스템의 단면치수 재조정 프로세스를 보여준다. 이러한 치수최적설계는 경사도법에 근거한 최적정 방법에 의해 수치적으로 연산된다. 전형적인 치수최적설계에서는 변위나 응력제약조건 하에서 구조물의 최소중량을 구현하지만, 본 연구에서 소개되는 치수최적설계는 이것과 반대의 프로세스를 가진다. 즉, 부피와 같은 재료제약조건 하에서 최대강성을 구현한다. 본 연구는 기존의 치수최적설계방법의 대안으로서 그 의미를 가질 수 있다. 고층 철골트러스 구조시스템의 수치 예제를 통하여 부재 단면치수 재조정 설계가 기존의 최소중량설계와 반대인 최대강성 이산화 치수최적설계를 통하여 적합하게 수행됨이 증명되었다.

This study presents a structural design optimizing sizes of high-rise steel plane truss members by maximizing stiffness subjected to given volume constraints. The sizing optimum design is evaluated by using a well-known optimality criteria (OC) of gradient-based optimization methods. In typical size optimization methods, truss structures are optimized with respect to minimum weight with constraints on the value of some displacement and on the member stresses. The proposed method is an inversed size optimization process in comparisons with the typical size optimization methods since it maximizes stiffness associated with stresses or displacements subjected to volume constraints related to weight. The inversed approach is another alternative to classical size optimization methods in order to optimize members' sizes in truss structures. Numerical applications of a round shape steel pipe truss structure are studied to verify that the proposed maximum stiffness-based size optimization design is suitable for optimally developing truss members's sizes.

 
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