PERANCANGAN DAN IMPLEMENTASI SISTEM TERSEBAR PANDUAN MISSILE DENGAN JAVA RMI

Distributed system in the field of computing have become to choice to build reliable system. The characteristic of distributed system such as multiuser, availability and reliability, resources sharing, scalability, efficiency, and also transparency represent characteristics which are needed to devel...

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Bibliographic Details
Main Author: Bahtiar, Arief
Format: Theses
Language:Indonesia
Subjects:
Online Access:https://digilib.itb.ac.id/gdl/view/3126
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Institution: Institut Teknologi Bandung
Language: Indonesia
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Summary:Distributed system in the field of computing have become to choice to build reliable system. The characteristic of distributed system such as multiuser, availability and reliability, resources sharing, scalability, efficiency, and also transparency represent characteristics which are needed to develop and to design reliable system. This system is expected can become solution for the problem of computing in the future. The topic of this thesis is focused on exploiting design and implementation distributed system for modelling of complex system. Air defence guidance missile system made as system model to study. Scheme model guidance system made pursuant to proporsional navigation guidance law. The implementation of distributed system is developed using Java Remote Method Invocation (Java RMI). Java RMI represent method to develop distributed system with mechanism invocation of subroutine or method found on server computer to process data found on client computer. A graphical user interface is developed to facilitate user have interaction with system. System designed then is examined on computer netwoked system which connected through local area network ( LAN). Then system run to engage object at random. The target object assumed to move on two dimension plain. Missile object launched from some position to test sensitivity. From the simulation can be observed that the missile can engage target object with engagement time range 5 to 10 second.