• Title/Summary/Keyword: Flexibility Function

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工業集積論考

  • ;Hyung, Kie Joo
    • Journal of the Korean Geographical Society
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    • v.11
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    • pp.17-26
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    • 1975
  • This study examined the flexibility strategies and the spatial division of labour on production system in the industrial restructuring process of textile and apparel industry in Daegu. Textile and apparel firms in Daegu have come to have power after holding trade function. In the context of existing variant production units across all the sectors of the textile and apparel industry, individual firms that hold trade function can organize the lowest cost production system. Daegu's Textile and apparel industry in Daegu shows the complicated and closely realted production system through individual firm's flexibility strategies. Although the textile and apparel firms produce the same item or have the same size, they pursue different flexibility strategies and form different networked production system and different spatial division of labour.

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Effect of Seniorobic Program on Physical Function and Fall in Elderly (시니어로빅 프로그램이 노인의 신체적 기능과 낙상에 미치는 효과)

  • Byun, Young-Hee;Choi, Kyung-Sook
    • Korean Journal of Adult Nursing
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    • v.21 no.1
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    • pp.13-22
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    • 2009
  • Purpose: The purpose of this study was to determine the effects of the seniorobic program on physical function and fall in elderly. Methods: The experimental group and control group was composed of 22 subjects each. The subjects in the experimental group had participated in the seniorobic program for 12 weeks which consisted of exercise and education. Muscle strength, flexibility, balance and the frequency of fall for each subject were measured before, and at the 6th and 12th weeks of the seniorobic program. Data were analyzed using SPSS /WIN 12.0 program. Results: The experimental group had significantly increased their flexibility at the 6th and 12th weeks of the seniorobic program, their the lower limb muscle strength and balance at the 12th week of the seniorobic program. There was no significant difference in the frequency of fall between the experimental group and the control group during the period of seniorobic program. Conclusion: These results suggest that the seniorobic program can increase lower limb muscle strength, flexibility and improve the balance of the elderly.

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Experimental and numerical structural damage detection using a combined modal strain energy and flexibility method

  • Seyed Milad Hosseini;Mohamad Mohamadi Dehcheshmeh;Gholamreza Ghodrati Amiri
    • Structural Engineering and Mechanics
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    • v.87 no.6
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    • pp.555-574
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    • 2023
  • An efficient optimization algorithm and damage-sensitive objective function are two main components in optimization-based Finite Element Model Updating (FEMU). A suitable combination of these components can considerably affect damage detection accuracy. In this study, a new hybrid damage-sensitive objective function is proposed based on combining two different objection functions to detect the location and extent of damage in structures. The first one is based on Generalized Pseudo Modal Strain Energy (GPMSE), and the second is based on the element's Generalized Flexibility Matrix (GFM). Four well-known population-based metaheuristic algorithms are used to solve the problem and report the optimal solution as damage detection results. These algorithms consist of Cuckoo Search (CS), Teaching-Learning-Based Optimization (TLBO), Moth Flame Optimization (MFO), and Jaya. Three numerical examples and one experimental study are studied to illustrate the capability of the proposed method. The performance of the considered metaheuristics is also compared with each other to choose the most suitable optimizer in structural damage detection. The numerical examinations on truss and frame structures with considering the effects of measurement noise and availability of only the first few vibrating modes reveal the good performance of the proposed technique in identifying damage locations and their severities. Experimental examinations on a six-story shear building structure tested on a shake table also indicate that this method can be considered as a suitable technique for damage assessment of shear building structures.

Adaptive control of flexible joint robot manipulators (유연성 관절 로봇 매니퓰레이터 적응 제어)

  • 신진호;이주장
    • 제어로봇시스템학회:학술대회논문집
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    • 1992.10a
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    • pp.260-265
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    • 1992
  • This paper presents an adaptive control scheme for flexible joint robot manipulators. This control scheme is based on the Lyapunov direct method with the arm energy-based Lyapunov function. The proposed adaptive control scheme uses only the position and velocity feedback of link and motor shaft. The adaptive control system of flexible joint robots is asymptotically stable regardless of the joint flexibility value. Therefore, the assumption of weak joint ealsticity is not needed. Also, joint flexibility value is unknown. Simulation results are presented to show the feasibility of the proposed adaptive control scheme.

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Combustion Instability Modeling for a Lean Premixed Gas Turbine Combustor using Flame Transfer Function Approach

  • Kim, Daesik;Cha, Dong-Jin
    • 한국연소학회:학술대회논문집
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    • 2012.11a
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    • pp.53-54
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    • 2012
  • In an IGCC plant, one of the most important issues on fuel flexibility in the lean premixed combustor is combustion instabilities. They are characterized by large amplitude pressure oscillations which are caused by unsteady heat release from the flames. The relationship between the unsteady heat release and flow oscillation can be qualitatively and quantitatively explained by flame transfer function. This paper introduces combustion instability modeling methods based on the flame transfer function approach.

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The design and performance evaluation of a high-speed cell concentrator/distributor with a bypassing capability for interprocessor communication in ATM switching systems (ATM교환기의 프로세서간 통신을 위한 바이패싱 기능을 갖는 고속 셀 집속/분배 장치의 설계 및 성능평가)

  • 이민석;송광석;박동선
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.22 no.6
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    • pp.1323-1333
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    • 1997
  • In this paper, we propose an efficient architecture for a high-speed cell concentrator/distributor(HCCD) in an ATM(Asynchronous Transfer Mode) switch and by analyzeing the simulation results evaluate the performance of the proposed architecuture. The proposed HCCD distributes cells from a switch link to local processors, or concentrates cells from local processor s to a switch link. This design is to guarntee a high throughput for the IPC (inter-processor communication) link in a distributed ATM switching system. The HCCD is designed in a moudlar architecture to provide the extensibility and the flexibility. The main characteristics of the HCCD are 1) Adaption of a local CPU in HCCD for improving flexibility of the system, 2) A cell-baced statistical multiplexing function for efficient multiplexing, 3) A cell distribution function based on VPI(Virtual Path Identifier), 4) A bypassing capability for IPC between processor attached to the same HCCD, 5) A multicasting capability for point-to-multipoint communication, 6) A VPI table updating function for the efficient management of links, 7) A self-testing function for detecting system fault.

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Effects of Comprehensive Rehabilitation Program on Physical Function and Fatigue in Mastectomy Patients (유방절제술 환자를 위한 통합적 재활 프로그램이 신체 기능과 피로에 미치는 효과)

  • Yoo, Yang-Sook;Jung, Sang-Seol;Cho, Ok-Hee
    • Korean Journal of Adult Nursing
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    • v.17 no.2
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    • pp.298-309
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    • 2005
  • Purpose: The purpose of this study was to investigate the effect of a comprehensive rehabilitation program on grip strength, pinch strength, the shoulder joint function, flexibility, and fatigue in mastectomy patients. Method: The subjects were fifty-five women with breast cancer (27 in the control group and 28 in the experimental group). The subjects in the experimental group participated in a comprehensive rehabilitation program for 10 weeks, which was composed of education, stress management, exercise, and peer support group activity. Results: The results revealed that the increase in grip strength, key pinch, the shoulder joint function, and flexibility (Back & Reach test, Standing & Bending reach test) of the operated extremity, and the decrease in fatigue were significantly higher in the experimental group than in the control group. However, the results revealed that tip strength and palmar pinch of the experimental group increased but there was no significant difference from that of the control group. Conclusions: The 10-week comprehensive rehabilitation program showed much affirmative effect on physical function, and fatigue of breast cancer patients after mastectomy.

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A Meta-analysis of the Effect of Walking Exercise on Lower Limb Muscle Endurance, Whole Body Endurance and Upper Body Flexibility in Elders (노인 걷기운동이 하지근지구력, 전신지구력과 상체유연성에 미치는 효과: 메타분석)

  • Roh, Kook-Hee;Park, Hyeoun-Ae
    • Journal of Korean Academy of Nursing
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    • v.43 no.4
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    • pp.536-546
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    • 2013
  • Purpose: The purpose of this study was to determine whether walking exercise improved physical function in elderly people using meta-analysis. Methods: Medical and nursing literature databases were searched to identify the studies on the effectiveness of walking exercise on physical function. In the databases, there were 16 articles reporting 21 interventions. Overall effect sizes for three outcome variables, elders' physical function in lower limb muscle endurance, whole body endurance and upper body flexibility, were calculated. Effects of study characteristics on outcome variables were analyzed. Results: The meta-analysis showed that walking exercise generally had positive effects on CST (chair stand test), 6MW (6 min walking), and SRT (standing or sitting reach test) with overall weighted effect sizes of 1.06, 0.41 and 0.29 respectively. This study also showed that the chronic disease status of the elders, intervention methods, and type of residence had different effects on CST, 6MW and SRT. Conclusion: The results indicate that walking exercise improves physical function in elders. Walking exercise which can be done at any time and any location is indeed a very effective exercise for elderly people.

Effects of Yoga on Pain, Function, and Depression in Individuals with Nonspecific-Low Back Pain

  • Song, Seonghyeok;Choi, Youngam;Cho, Namjeong;Kim, Hyun-Joong
    • Physical Therapy Rehabilitation Science
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    • v.11 no.2
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    • pp.165-171
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    • 2022
  • Objective: Nonspecific low back pain (NSLBP) is experienced worldwide by many age groups. Yoga is recommended as an exercise to reduce back pain and stress because it is a breathing exercise, posture, and meditation as key elements. The aim of this study is to compare the effects of yoga and stabilization exercise on pain intensity, function, and depression. Design: An open-label, parallel arm, randomized controlled trial Methods: Twenty-four participants were allocated to the experimental and the control group in a ratio of 1:1. Yoga (experimental group) and stabilization exercise (control group) were received twice a week for 6 weeks Participants were assessed at baseline and post-intervention for pain intensity (numeric pain rating scale), function (Aberdeen low back pain scale, flexibility,and strength), and depression (Beck depression inventory). Results: When the experimental group (Yoga) and control group (stabilization exercise) were performed twice a week for 6 weeks, numeric pain rating scale, Aberdeen low back pain scale, and flexibility in post-intervention showed significant improvement in both groups (P<0.05), However, in all variables, the experimental group showed a positive benefit compared to the control group (P<0.05). Conclusions: The results of this study show that yoga has more positive benefits compared to stabilization exercise in pain intensity, function, and depression in individuals with NSLBP.

Continuous force excited bridge dynamic test and structural flexibility identification theory

  • Zhou, Liming;Zhang, Jian
    • Structural Engineering and Mechanics
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    • v.71 no.4
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    • pp.391-405
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    • 2019
  • Compared to the ambient vibration test mainly identifying the structural modal parameters, such as frequency, damping and mode shapes, the impact testing, which benefits from measuring both impacting forces and structural responses, has the merit to identify not only the structural modal parameters but also more detailed structural parameters, in particular flexibility. However, in traditional impact tests, an impacting hammer or artificial excitation device is employed, which restricts the efficiency of tests on various bridge structures. To resolve this problem, we propose a new method whereby a moving vehicle is taken as a continuous exciter and develop a corresponding flexibility identification theory, in which the continuous wheel forces induced by the moving vehicle is considered as structural input and the acceleration response of the bridge as the output, thus a structural flexibility matrix can be identified and then structural deflections of the bridge under arbitrary static loads can be predicted. The proposed method is more convenient, time-saving and cost-effective compared with traditional impact tests. However, because the proposed test produces a spatially continuous force while classical impact forces are spatially discrete, a new flexibility identification theory is required, and a novel structural identification method involving with equivalent load distribution, the enhanced Frequency Response Function (eFRFs) construction and modal scaling factor identification is proposed to make use of the continuous excitation force to identify the basic modal parameters as well as the structural flexibility. Laboratory and numerical examples are given, which validate the effectiveness of the proposed method. Furthermore, parametric analysis including road roughness, vehicle speed, vehicle weight, vehicle's stiffness and damping are conducted and the results obtained demonstrate that the developed method has strong robustness except that the relative error increases with the increase of measurement noise.