• 제목/요약/키워드: Firing Accuracy

검색결과 43건 처리시간 0.019초

웹기반 선박엔진 성능분석용 압력모니터링 시스템 구현 (Implementation of pressure monitoring system(PMS) for ship's engine performance analysis(SEPA) based on the web)

  • 양현숙;권혁주;이성근
    • Journal of Advanced Marine Engineering and Technology
    • /
    • 제38권7호
    • /
    • pp.929-935
    • /
    • 2014
  • 본 논문에서는 선내 제어실 및 Web에서 고속의 선박엔진성능분석용 압력 모니터링이 가능한 시스템을 구현하고자 한다. 이 시스템은 압력센서, 다채널 A/D 변환기가 내장된 감시모듈, TCP/IP 및 무선 인터넷 통신시스템으로 구성되고, 저가형이면서 국산화 개발에 목표를 둔 것이다. 기존 국산 제품은 가장 먼저 폭발하는 실린더의 피스톤이 상사점(TDC, Top dead center)에 도달하는 순간에 그 실린더의 압력을 측정하고, 이어서 실린더 개수만큼 등분된 회전 각도가 지난 시점마다 차례대로 다음 실린더의 압력을 수동으로 측정하는 방식이고, 제안된 방식은 각 엔진마다 압력센서를 설치하고 이를 감시모듈에서 실시간으로 계측한 후 통신에 의해 현장 제어실 PC나 Web 상에서 실시간 모니터링이 되도록 구현한다. 제안한 방식을 이용하면 최초에 폭발하는 TDC 점뿐만 아니라 나머지 실린더의 TDC 점을 실시간으로 정확히 계측하는 것이 가능하고, 각 TDC에 동기 되는 각 실린더 내의 압력 측정이 가능하여 선박엔진성능분석의 정밀도를 높일 수 있다. 또한, 실린더의 최대압력(Pmax)과 TDC 편차 및 연소상태와 같은 엔진의 다양한 진단에 사용될 수 있다.

Effect of Kinetic Degrees of Freedom of the Fingers on the Task Performance during Force Production and Release: Archery Shooting-like Action

  • Kim, Kitae;Xu, Dayuan;Park, Jaebum
    • 한국운동역학회지
    • /
    • 제27권2호
    • /
    • pp.117-124
    • /
    • 2017
  • Objective: The purpose of this study was to examine the effect of changes in degrees of freedom of the fingers (i.e., the number of the fingers involved in tasks) on the task performance during force production and releasing task. Method: Eight right-handed young men (age: $29.63{\pm}3.02yr$, height: $1.73{\pm}0.04m$, weight: $70.25{\pm}9.05kg$) participated in this study. The subjects were required to press the transducers with three combinations of fingers, including the index-middle (IM), index-middle-ring (IMR), and index-middle-ring-little (IMRL). During the trials, they were instructed to maintain a steady-state level of both normal and tangential forces within the first 5 sec. After the first 5 sec, the subjects were instructed to release the fingers on the transducers as quickly as possible at a self-selected manner within the next 5 sec, resulting in zero force at the end. Customized MATLAB codes (MathWorks Inc., Natick, MA, USA) were written for data analysis. The following variables were quantified: 1) finger force sharing pattern, 2) root mean square error (RMSE) of force to the target force in three axes at the aiming phase, 3) the time duration of the release phase (release time), and 4) the accuracy and precision indexes of the virtual firing position. Results: The RMSE was decreased with the number of fingers increased in both normal and tangential forces at the steady-state phase. The precision index was smaller (more precise) in the IMR condition than in the IM condition, while no significant difference in the accuracy index was observed between the conditions. In addition, no significant difference in release time was found between the conditions. Conclusion: The study provides evidence that the increased number of fingers resulted in better error compensation at the aiming phase and performed a more constant shooting (i.e., smaller precision index). However, the increased number of fingers did not affect the release time, which may influence the consistency of terminal performance. Thus, the number of fingers led to positive results for the current task.

CAD/CAM system으로 제작한 zirconia core의 적합도 (THE FIT OF ZIRCONIA FORE FABRICATED WITH CAD/CAM SYSTEM)

  • 성지윤;전영찬;정창모;임장섭
    • 대한치과보철학회지
    • /
    • 제42권5호
    • /
    • pp.489-500
    • /
    • 2004
  • Statement of problem: The use of zirconia prostheses fabricated with CAD/CAM system is on an increasing trend in dentistry. However, evaluation of the fit related to internal relief and marginal reproducibility of zirconia has not been reported. Purpose : This study was to evaluate the fit related to internal relief and marginal reproducibility of zirconia core fabricated with CAD/CAM system. Materials and methods: The evaluation was based on 30 zirconia cores and 5 IPS-Empress2 cores. Zirconia cores were fabricated in different conditions of internal relief(0, 10, 20, 30, 40 and $50{\mu}m$), and IPS-Empress2 cores were fabricated in accordance with the manufacturer's instructions. Before cementation, the marginal discrepancies or cores were measured on metal die. And then, each core was cemented to stone die, embedded in an acrylic resin and sectioned in two planes(mesiodistally and labiopalatally). The internal gaps were measured at the margin and axial surface. Measurements for the marginal discrepancies, the internal marginal gaps and the internal axial gaps were performed under a measuring microscope(Compact measuring microscope STM5; Olympus, Japan) at a magnification of ${\times}100$. In addition, the marginal conagurations of metal die, zirconia core and IPS-Empress2 core were examined with SEM(S-2700, Hitachi, Japan). Results : Within the limits of this study the results were as follows. 1. Compared with IPS-Empress2 cores, the marginal discrepancies of zirconia cores had no significant differences. the internal marginal gaps were statistically smaller and the internal axial gaps were statistically larger in each condition of internal relief. 2. The marginal discrepancies and the internal marginal gaps of zirconia cores had no significant differences related to the conditions of internal relief(P>0.05). 3. The internal axial gaps of zirconia cores with $0{\sim}20{\mu}$m for internal relief were significantly larger than that with $50{\mu}m$ (P<(0.0001). 4. SEM micrographs showed favorable marginal reproducibility of zirconia core and smooth texture on the milling surface. Conclusion: The marginal discrepancy and the internal gaps of zirconia core were clinically acceptable and the milling surface was showed smooth texture. For fabrication of the durable esthetic restoration, further investigations on complex design of core, milling accuracy, compatability of enamel porcelain and porcelain firing seems to be needed.