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2015 International Conference on Advanced Mechatronics, Intelligent Manufacture, and Industrial Automation (ICAMIMIA) | 2015

A neural network based maximum power point tracker with KY converter for photovoltaic system on a moving vehicle

Adi Kurniawan; Eko Haryanto; Agoes Achmad Masroeri

The application of photovoltaic system on the ship may reduce the operational cost and pollution caused by fossil fuel. In order to optimize the efficiency of the PV system, an appropriate maximum power point tracking (MPPT) must be implemented on the system. The MPPT must have fast response to overcome the rapid changes of solar irradiance due to ship movement or natural occurrence. In this paper, a combination of artificial neural network based MPPT and KY converter is proposed. The proposed method has been validated with a computer based simulation. The results show that the proposed method can optimize the PV system performance with a fast response to the change of sun irradiance.


ASME 2014 33rd International Conference on Ocean, Offshore and Arctic Engineering | 2014

Simulation-Based Estimation of Collision Risk During Ship Maneuvering in Two-Lane Canal Using Mathematical Maneuvering Group Model and Automatic Identification System Data

I Putu Sindhu Asmara; Eiichi Kobayashi; Ketut Buda Artana; Agoes Achmad Masroeri; Nobukazu Wakabayashi

This paper proposes a simulation-based method to estimate collision risk for a ship operating in a two-lane canal. According to rule 9 of the Colreg-72 navigation rules, in a narrow canal, a vessel shall keep as near to the wall that lies on its starboard side. However, a busy harbor entered through a narrow canal still presents impact hazards. Certain conditions in a two-lane canal, such as a head-on situation in the straight part of the canal during an overtaking maneuver and large curvature of a turning maneuver in the bend part of the canal, could lead to accidents. In the first condition, the ship alters its own course to the port side to overtake another ship in the same lane but the course altered is too large and hits the wall of the canal. In the second condition, the target ship may take an excessively large turn on the bend part of the canal, causing collision with the ship on the opposite lane. Collision risk is represented as the risk of damage to the ship structure and includes the probability of impact accident and severity of structural damage. Predictions of collision probabilities in a two-lane canal have been developed based on a simulation of ship maneuvering using a mathematical maneuvering group (MMG) model and automatic identification system (AIS) data. First, the propeller revolution and rudder angle of the subject ship are simulated to determine safe trajectories in both parts of the canal. Second, impact accidents are simulated for both conditions. The ship’s speed, and current and wind velocity are randomly simulated based on the distribution of the AIS and environment data for the research area. The structural consequences of the impact accident are measured as collision energy losses, based on the external dynamics of ship collision. The research area of the two-lane canal is located at the Madura Strait between the Java and Madura islands in East Java of Indonesia, as shown by the red line in Figure 1. A project for developing a new port and dredging a new two-lane canal to facilitate an increase in the number of ship calls is currently underway in the research area. Figure 1 shows the ships’ trajectories plotted using the AIS data as on January 1, 2011. The trajectories are mostly seen to be coming out of the canal, confirming that it is shallow and needs to be dredged.Copyright


Journal of maritime researches | 2013

Gaussian plume and puff model to estimate ship emission dispersion by combining automatic identification system(AIS) and geographic information system(GIS)

Made Ariana; Trika Pitana; Ketut Buda Artana; Bagus Dinariyana; Agoes Achmad Masroeri


Journal of maritime researches | 2012

A REVIEW ON SOME RESEARCH ISSUES ON AIS TO IMPROVE THE SHIP SAFETY OPERATION AT SEA

Agoes Achmad Masroeri; Ketut Buda Artana; Trika Pitana; Dinariyana Dwi Putranta


Jurnal Teknik ITS | 2017

Estimating Mina Jaya Niaga 11 Ship Repair (In Man-hour) using Work Breakdown Structure

Danuja Wijayanto; Taufik Fajar Nugroho; Agoes Achmad Masroeri


Jurnal Teknik ITS | 2016

Optimasi Boost Converter Panel Surya Sebagai Sumber Energi Alternatif Penerangan Kmp Allu. Dengan Metode Logika Fuzzy

Eko Haryanto; Agoes Achmad Masroeri; Adi Kurniawan


Article of Proceedings | 2015

MEMPERKIRAKAN PROBABILITAS TERJADINYA TUBRUKAN KAPAL (ASSESSMENT OF COLLISION PROBABILITY) DENGAN MEMANFAATKAN DATA AIS

Ratna Dwi Kurniawan; Trika Pitana; Agoes Achmad Masroeri


The Journal of Engineering | 2014

Auto Berthing - a Solution for Achieving Zero Waiting Time at Harbour

Aulia Siti Aisjah; Agoes Achmad Masroeri; Aries Sulisetiyono; Randhika Gunawan


Archive | 2014

IMPLEMENTASI BINARY GENETIC ALGORITHM (BGA) UNTUK OPTIMASI PENUGASAN KAPAL PATROLI TNI - AL DALAM RANGKA KEAMANAN WILAYAH LAUT INDONESIA

Pudji Santoso; Ketut Buda Artana; Agoes Achmad Masroeri; Aab Dinariyana; M.Isa Irawan


Jurnal Teknik ITS | 2013

Perancangan Sistem Stabilisasi Rudder Roll pada Kapal Perang Kelas SIGMA dengan Kontrol Logika Fuzzy

Alfany Hardiyanty; Agoes Achmad Masroeri; Aulia Siti Aisjah

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Aulia Siti Aisjah

Sepuluh Nopember Institute of Technology

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Trika Pitana

Sepuluh Nopember Institute of Technology

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Adi Kurniawan

Sepuluh Nopember Institute of Technology

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Eko Haryanto

Sepuluh Nopember Institute of Technology

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Aab Dinariyana

Sepuluh Nopember Institute of Technology

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Aries Sulisetiyono

Sepuluh Nopember Institute of Technology

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Aulia Sitin Aisjah

Sepuluh Nopember Institute of Technology

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Dinariyana Dwi Putranta

Sepuluh Nopember Institute of Technology

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Indra Ranu Kusuma

Sepuluh Nopember Institute of Technology

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