• 제목/요약/키워드: accuracy control

검색결과 4,389건 처리시간 0.22초

The role of internal architecture in producing high-strength 3D printed cobalt-chromium objects

  • Abdullah Jasim Mohammed;Ahmed Asim Al-Ali
    • The Journal of Advanced Prosthodontics
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    • 제16권2호
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    • pp.91-104
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    • 2024
  • PURPOSE. The objectives of the current study were to estimate the influence of self-reinforced hollow structures with a graded density on the dimensional accuracy, weight, and mechanical properties of Co-Cr objects printed with the direct metal laser sintering (DMLS) technique. MATERIALS AND METHODS. Sixty-five dog-bone samples were manufactured to evaluate the dimensional accuracy of printing, weight, and tensile properties of DMLS printed Co-Cr. They were divided into Group 1 (control) (n = 5), Group 2, 3, and 4 with incorporated hollow structures based on (spherical, elliptical, and diamond) shapes; they were subdivided into subgroups (n = 5) according to the volumetric reduction (10%, 15%, 20% and 25%). Radiographic imaging and microscopic analysis of the fractographs were conducted to validate the created geometries; the dimensional accuracy, weight, yield tensile strength, and modulus of elasticity were calculated. The data were estimated by one-way ANOVA and Duncan's tests at P < .05. RESULTS. The accuracy test showed an insignificant difference in the x, y, z directions in all printed groups. The weight was significantly reduced proportionally to the reduced volume fraction. The yield strength and elastic modulus of the control group and Group 2 at 10% volume reduction were comparable and significantly higher than the other subgroups. CONCLUSION. The printing accuracy was not affected by the presence or type of the hollow geometry. The weight of Group 2 at 10% reduction was significantly lower than that of the control group. The yield strength and elastic modulus of the Group 2 at a 10% reduction showed means equivalent to the compact objects and were significantly higher than other subgroups.

퍼지 PI 제어기를 이용한 태양광 발전시스템의 MPPT 제어 (The MPPT Control of Photovoltaic System using the Fuzzy PI Controller)

  • 고재섭;정동화
    • 조명전기설비학회논문지
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    • 제28권2호
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    • pp.9-18
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    • 2014
  • This paper proposes the fuzzy PI controller for maximum power point tracking(MPPT) control of photovoltaic system. The output characteristics of the solar cell are a nonlinear and affected by a temperature, the solar radiation. The MPPT control is a very important technique in order to increase an output and efficiency of the photovoltaic system. The conventional perturbation and observation(PO) and incremental conductance(IC) are the method which finding maximum power point(MPP) by the continued self-excitation vibration, and uses the fixed step size. If the fixed step size is a large, the tracking speed of maximum power point is faster, but the tracking accuracy in the steady state is decreased. On the contrary, when the fixed step size is a small, the tracking accuracy is increased and the tracking speed is slower. Therefore, this paper proposes the MPPT control using the fuzzy PI controller that can be improve a MPPT control performance. The fuzzy PI controller is adjusted a input of PI controller by fuzzy control and compensated a cumulative error of fuzzy control by PI controller. The fuzzy PI MPPT control is compared to conventional PO and IC MPPT method for various temperature and radiation condition. This paper proves the validity of the fuzzy PI controller using these results.

Nonlinear Excitation Control Design of Generator Based on Multi-objective Feedback

  • Chen, Dengyi;Li, Xiaocong;Liu, Song
    • Journal of Electrical Engineering and Technology
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    • 제13권6호
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    • pp.2187-2195
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    • 2018
  • In order to realize the multi-objective control of single-input multi-output nonlinear differential algebraic system (NDAS) and to improve the dynamic characteristics and static accuracy, a design method of nonlinear control with multi-objective feedback (NCMOF) is proposed, the principium of this method to arrange system poles, as well as its nature to coordinate dynamic characteristics and static accuracy of the system are analyzed in detail. Through NCMOF design method, the multi-objective control of the system is transformed into linear space, and then it is effectively controlled under the nonlinear feedback control law, the problem to balance all control objectives caused by less input and more output of the system thus is solved. Applying NCMOF design method to generator excitation system, the nonlinear excitation control law with terminal voltage, active power and rotor speed as objective outputs is designed. Simulation results show that NCMOF can not only improve the dynamic characteristics of generator, but also damp the mechanical oscillation of a generator in transient process. Moreover, NCMOF can control the terminal voltage of the generator to the setting value with no static error under typical disturbances.

Studying the Ephemeris Effect on Position Accuracy Based on Criteria Applied to Baseline Lengths by New MATLAB Program (NMP)

  • Shimaa Farouk;Mahmoud El-Nokrashy;Ahmed Abd-Elhay;Nasr Saba
    • Journal of Astronomy and Space Sciences
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    • 제40권3호
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    • pp.113-122
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    • 2023
  • Although the Relative Global Navigation Satellite System (GNSS) positioning technique provides high accuracy, it has several drawbacks. The scarcity of control points, the long baselines, and using of ultra-rabid and rabid products increased position errors. This study has designed a New MATLAB Program that helps users automatically select suitable IGS stations related to the baseline lengths and the azimuth between GNSS points and IGS stations. This study presented criteria for the length of the baselines used in Egypt and an advanced estimated accuracy before starting the project. The experimental test studies the performance of the position accuracy related to the relation between three factors: observation session, final, rabid, and ultrarabid products, and the baseline lengths. Ground control point mediates Egypt was selected as a test point. Nine surrounding IGS stations were selected as reference stations, and the coordinates of the tested point were calculated based on them. Baselines between the tested point and the IGS stations were classified regarding proposal criteria. The coordinates of the tested point were obtained in different observation sessions (0.5, 1, 2, 4, 5, 6, 7, 7.5 h). The results indicated that the lengths of the baseline in Egypt were classified short (less than 600 km), medium (600-1,200 km), and long (greater than 1,200 km) and required a minimum observation time of 4, 5, and 7 h to obtain accuracy 10, 19, 48 mm sequentially. The position accuracy was superior for the rapid and the final than the ultra-rapid products by 16%. A short baseline was at the best case; there was a performance in position accuracy with a 57% deduction in observation time compared with the long baseline.

조선소 블록 정도관리를 위한 경량화 측정 장비 및 증강현실 기반의 스마트 정도관리 시스템 개발 (A Study on Smart Accuracy Control System based on Augmented Reality and Portable Measurement Device for Shipbuilding)

  • 남병욱;이경호;이원혁;이재덕;황호진
    • 한국전산구조공학회논문집
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    • 제32권1호
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    • pp.65-73
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    • 2019
  • 선박의 생산 효율을 높이고 생산 주기를 단축하기 위해서는 건조 주기 동안에 효율적으로 선박 구성 요소의 정확도를 평가하는 것이 중요하다. 블록의 정도 관리는 선박 공정의 단축 및 비용 절감, 선박 품질 향상에 중요한 의미를 갖는다. 대형 조선소를 중심으로 이를 위한 시스템들이 개발되어 활용되고 있지만 일부 조선소에서는 블록 형상이나 크기에 따라 줄자나 추 등의 전통적인 측정도구나 광학 장비인 광파기를 사용하여 측정, 관리하고 있으며, 정도 관리 수행하는데 있어서 이러한 도구나 장비뿐만 아니라 필수적으로 측정 위치를 파악하기 위한 종이 도면과 측정 데이터를 기록하기 위한 장치를 병행하고 있다. 측정된 결과는 수기 입력 혹은 기록 장치를 통해 정도 관리 시스템에서 관리하게 된다. 측정 결과는 작업 환경 및 작업자의 숙련도에 따라 영향이 미치게 되며, 측정 결과 관리 측면에서도 측정 결과 작성 누락, 정도관리 시트 관리의 부재 등에 대한 인적 오류(human error)와 시스템 내 결과 데이터 입력으로 인한 이중 작업 시간 소요로 인한 효율 측면에서의 비용 손실이 발생한다. 본 연구에서는 기존 정도관리 수행에서의 작업 환경을 개선하기 위한 목적으로 블록 정도 및 블록 측정 위치를 종이 도면을 통해서 확인하던 과정을 증강현실 기술을 이용하여 실제 블록 위에 측정 정보를 가시화함으로써 정도관리 수행 시간을 단축하고 측정 장비와의 연동을 통해 정도관리 데이터를 효과적으로 관리할 수 있는 증강현실 기반의 스마트 정도관리 시스템을 제안하고, 제안한 시스템에 대해서 프로토타입 구현을 통하여 정도 관리에서의 적용 가능성을 검토하였다.

Modeling and Control Method for High-power Electromagnetic Transmitter Power Supplies

  • Yu, Fei;Zhang, Yi-Ming
    • Journal of Power Electronics
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    • 제13권4호
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    • pp.679-691
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    • 2013
  • High-power electromagnetic transmitter power supplies are an important part of deep geophysical exploration equipment. This is especially true in complex environments, where the ability to produce a highly accurate and stable output and safety through redundancy have become the key issues in the design of high-power electromagnetic transmitter power supplies. To solve these issues, a high-frequency switching power cascade based emission power supply is designed. By combining the circuit averaged model and the equivalent controlled source method, a modular mathematical model is established with the on-state loss and transformer induction loss being taken into account. A triple-loop control including an inner current loop, an outer voltage loop and a load current forward feedback, and a digitalized voltage/current sharing control method are proposed for the realization of the rapid, stable and highly accurate output of the system. By using a new algorithm referred to as GAPSO, which integrates a genetic algorithm and a particle swarm algorithm, the parameters of the controller are tuned. A multi-module cascade helps to achieve system redundancy. A simulation analysis of the open-loop system proves the accuracy of the established system and provides a better reflection of the characteristics of the power supply. A parameter tuning simulation proves the effectiveness of the GAPSO algorithm. A closed-loop simulation of the system and field geological exploration experiments demonstrate the effectiveness of the control method. This ensures both the system's excellent stability and the output's accuracy. It also ensures the accuracy of the established mathematical model as well as its ability to meet the requirements of practical field deep exploration.

GPS 연속관측점을 이용한 결합블럭조정의 정확도 (Accuracy of Combined Block Adjustment with GPS-Permanentstation)

  • 박운용;이재원;신상철
    • 한국측량학회지
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    • 제17권1호
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    • pp.21-32
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    • 1999
  • 항공사진측량에 의한 지도제작과 미지점의 정확한 위치결정은 매우 경제적인 방법이나 외부표정요소를 구하기 위해서는 기준점이 필요하다. 번들조정기법의 성능향상과 횡스트립의 설치로 블럭조정에 요구되어지는 기준점의수가 감소되었음에도 불구하고 기준점 측량은 비용면에서 무시할 수 없는 부분이다. 이러한 단점을 보완하기 위해 연구된 동적 DGPS-위치결정에 의한 GPS-항측은 처음 가능성을 보인 이래 계속 발전되어 오고 있다. 위성배치의 완료, 수신기의 기능 향상 및 동적 DGPS-위치결정을 위한 S/W의 향상 등으로 결합블럭조정의 정확도도 크게 증가하고 있다. 따라서 GPS-항측의 실용화에 대한 연구가 보다 절실히 요청되고 있는 실정이다. 본 연구의 대상지는 60%의 횡중복도와 횡스트립으로 촬영하여 광산지역의 지반침하를 조사하기 위하여 실시되었다. 단지 6개의 기준점만을 사용한 결합블럭조정으로도 21개의 수평기준점과 81개의 연직기준점을 사용한 재래식 블럭조정과 같은 결과를 얻을 수 있었다. 또한 GPS에 의한 노출점의 위치와 블록조정의 정확도는 지상 수신기준점의 거리와는 무관하였으며 결합블럭조정시 정오차 소거를 위한 특별한 모형식이 필요함을 알 수 있었다.

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공공기준점 측량에 적용을 위한 VRS(가상기준점) 방식의 Network-RTK 정확도 분석 (Analysis of Network-RTK(VRS) Positioning Accuracy for Surveying Public Control Point)

  • 한중희;권재현;홍창기
    • 대한공간정보학회지
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    • 제18권2호
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    • pp.13-20
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    • 2010
  • 현재 국토지리정보원은 전국 44개의 상시관측소를 이용하여 VRS 서비스를 제공하고 있으며 이를 이용하여 짧은 시간 동안 취득된 자료의 처리를 통해 높은 위치정밀도의 획득이 가능하다. 그러나 공공기준점 측량을 위한 VRS 측량의 가용성 분석은 미비한 상태이다. 따라서 본 연구에서는 다양한 환경에서 데이터를 취득하여 공공기준점 측량에 대해 적용하기 위한 VRS 측량의 정확도를 분석하였다. 그 결과 85%의 데이터가 4cm 이내의 수평오차가 나타남으로써 VRS 측량에 적용할 수 있다고 판단되었고 좌표의 정확도를 판별하는 인자로 GDOP(Geometric Dilution of Precision)보다는 추정된 좌표의 분산을 나타내는 PQ(Position Quality)를 이용하는 것이 효율적임을 알수 있었다. 또한, 현재 대표적인 VRS 장비회사인 TRIMBLE, MAGELLAN, LEICA, TOPCON의 장비의 정밀도를 비교분석한 결과 수평위치의 표준편차가 3cm 미만으로 나타났으며, 회사 장비 별 정밀도는 비슷한 것으로 확인 되었으며, 공공기준점 측량에 VRS 측량을 적용하여도 무방하다고 사료된다.

백-밸브-마스크 환기증진을 위한 보조기구 개발 및 효과 (Assistant device development and effects for promotion of bag-valve-mask ventilation)

  • 권찬양;이인수
    • 한국응급구조학회지
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    • 제22권1호
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    • pp.49-59
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    • 2018
  • Purpose: The purpose of this study was to develop an assistant device for the promotion of bag-valve-mask ventilation based on a non-equivalent control group pre-test and post-test design. Methods: The experimental tool was a mask assistance device developed by the researchers. Data were analyzed using SPSS 21.0 with the cardiopulmonary resuscitation (CPR) evaluation program from August 18 to 30, 2016. The research tools included general, hand-related, and ventilation-related characteristics. Results: Before and after using the mask assistance device, the tidal volume increased by 64 mL (p<.001) from 461.76 mL to 525.86 mL. The tidal volume for control was 477.86 mL, and there was a statistical difference (p<.05). The ventilation frequency in device users was 10 times per minute for a total of 20 ventilations with before 10.65 after 10 times, and that of the control group was before 10.36 times after 10 times; there was no difference in both groups(p>.05). The accuracy of the assistance device was $81.72{\pm}30.86%$, which was a very high value. However, the accuracy of ventilation in the control group with no assistance device was $18.97{\pm}32.44%$, which was a very low accuracy rate. Conclusion: This study's results suggested utilizing the newly-developed mask assistance device in CPR, and showed increases in tidal volume and accuracy of ventilation using the bag-valve-mask ventilation equipment. The general and hand-related characteristics did not have any effect, so the use of the device proved to increase the efficacy in all users.

닫힌 형태의 역기구학 해를 갖는 매니퓰레이터의 정밀도 개선 알고리즘 (An Accuracy Improvement Algorithm for the Manipulators with Closed-Form Inverse Kinematic Solutions)

  • 조혜경;조성호
    • 제어로봇시스템학회논문지
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    • 제6권12호
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    • pp.1093-1098
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    • 2000
  • This paper presents an efficient algorithm for including the kinematic calibration data into the motion controller to improve the positioning accuracy of the manipulators. Rather than spending several iterations for finding the inverse solution of the calibrated kinematics, our approach requires only the nominal inverse solution and the calibrated forward kinematics for providing a better position command promptly. Thus, real-time application is guaranteed whenever the manipulators nominal inverse solution can be expressed in a closed form. Experimental results show that the line tracking performances can be remarkably improved by employing our algorithm.

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