우리나라에서는 다랑어 선망어업의 기술 경쟁력을 높이기 위한 많은 연구개발이 이루어지고 있으며, 이러한 노력으로 인하여 다랑어 선망어선의 선형개선과 어군 탐지를 위한 레이다, 소나 및 위성정보시스템의 개발로 인해 조업 효율이 향상되었다. 그러나 다랑어 선망어선에 탑재되는 보조 작업선인 스키프보트, 네트보트 및 스피드보트의 경우에는 본선의 기술 현대화에 비해 기술력이 낙후되어 있 는 실정이다. 이에 본 논문에서는 그물을 끌기 위한 양망의 기능과 프로펠러로부터 다랑어를 보호하기 위하여 설치된 철망을 가진 기존 의 네트보트의 선체를 워터제트 추진기 탑재가 가능한 선체로 변경하여 다랑어 보호, 선체저항 감소 및 운항성능 향상하고자 하였다. 결 과적으로 워터제트 형태에 적합한 선형에 대해 해양수산부 고시에 의거한 알루미늄 구조강도 기준을 적용한 시제선 제작하였으며 낙하 시험을 수행하여 안전성을 확인하였다. 또한 해상시운전을 통하여 기존의 네트보트는 2,500 RPM에서 속도는 12.0 knot, 예인력은 2,545 kgf 이며, 워터제트가 탑재된 네트보트는 3,200 RPM에서 속도는 26.7 knot, 예인력은 2,011 kgf로 워터제트가 탑재된 네트보트 또한 다랑어 선망 어선의 보조 작업선으로 예인용량 기준에 충분히 만족함을 알 수 있었다.
This paper validates a system identification method using mathematical optimization using sea trial measurement data as a benchmark. A fast time simulation tool, SIMOPT, and a Rheinmetall Defence mathematical model have been adopted to conduct initial hydrodynamic coefficient estimation and simulate ship modelling. Calibration for the environmental effect of sea trial measurement and sensitivity analysis have been carried out to enable a simple and efficient optimization process. The optimization process consists of three steps, and each step controls different coefficients according to the corresponding manoeuvre. Optimization result of Step 1, an optimization for coefficient on x-axis, was similar compared to values applying an empirical regression formulae by Clarke and Norrbin, which is used for SIMOPT. Results of Steps 2 and 3, which are for linear coefficients and nonlinear coefficients, respectively, was differ from the calculation results of the method by Clarke and Norrbin. A comparison for ship trajectory of simulation results from the benchmark and optimization results indicated that the suggested stepwise optimization method enables a coefficient tuning in a mathematical way.
This study is intended to provide navigator with specific information necessary to assist the avoidance of collision and the operation of ships to evaluate the maneuverability of dead weight tonnage 8,000 tons Oil/Chemical tanker. The actual maneuvering characteristics of ship can be adequately judged from the results of typical ship trials. Author carried out sea trials based full scale for turning test, Z” maneuvering test, man overboard rescue maneuver test, inertia stopping test. Consequently, 2st Overshoot yaw angle of the semi balanced rudder and flap rudder in ±20° zig–zag test showed 22.2° and 18.0°, respectively. The maneuverability of the vessel was good in the flap rudder. The man overboard rescue maneuver maneuverability test was most favorable in the flap rudder and the full load condition. The results from tests could be compared directly with the standards of maneuverability of IMO and consequently the maneuvering qualities of the ship is full satisfied with its.
This study is intended to provide navigator with specific information necessary to assist the avoidance of collision and the operation of ships to evaluate the maneuverability of dead weight tonnage 8,000 tons Oil/Chemical tanker. The actual maneuvering characteristics of ship can be adequately judged from the results of typical ship trials. Author carried out sea trials based full scale for turning test in ballast condition and full load condition, semi balanced rudder and flap rudder. The turning circle maneuvering were performed on the starboard and port sides with 35° rudder angle at the normal continuous rating. The results from tests could be compared directly with the standards of maneuverability of IMO and consequently the maneuvering qualities of the ship is full satisfied with its.
This study is intended to provide navigator with specific information necessary to assist in the avoidance of collision and in operation of ships to evaluate the manoeuvrability of own ship. The actual manoeuvering characteristics of ship can be adequately judged from the results of typical ship trials manoeuvres. Author carried out sea trials based full scale for turning test, zig-zag test, spiral tests and crash-stop test at actual sea going condition. The turning circle manoeuvres were performed on starboard and port sides with 35˚ rudder angle at the service speed, and Zig-zag procedures were performed on both sides with 10˚ and 20˚ rudder angle respectively. Spiral tests were carried out on the both sides and crash stop test was also carried out. The results from tests could be compared directly with the standards of manoeuverability of IMO and consequently the manoeuvring qualities of the ship is fully satisfied with its.
이 논문에서는 저전력 통신 기법 가운데 하나인 PSPM(Phase Shift Pulse position Modulation) 전송 기법이 근거리 수중음향 채널에서 어떠한 성능을 나타낼지 고찰하기 위해 해상실험을 통해 분석하였다. PSPM은 QPSK(Quadrature Phase Shift Keying)와 PPM(Pulse Position Modulation) 기법을 서로 혼합한 형태로 WBAN(Wireless Body Area Network) 시스템에서 저전력 통신을 위해 제안된 기법이다. 이는 기존의 일반적인 전송 방식에 비해 대역효율은 떨어지지만 전력효율은 증가하는 것으로 알려져 있다. 이 논문에서는 실해역에서 취득한 PSPM 데이터를 통해 BER 성능을 분석한다. 실험 결과 QPSK의 경우 총 56,000개의 전송 데이터 비트 중 오차 비트 수가 3,384개로 BER이 약 6.04×10-2이고, PSPM의 경우는 19,652개로 BER이 약 3.5×10-1를 얻었다. 또한 영상 데이터 전송에 따른 PSNR(Peak signal-to-noise ratio)을 비교한 결과 QPSK의 경우 9.37 dB 였으며, PSPM의 경우 9.11 dB 였다.