Process Optimization and Design of an Automation Controller for a Multidisciplinary Combat Engineering System

IF 0.8 4区 工程技术 Q3 MULTIDISCIPLINARY SCIENCES
Moiz Hatim Chasmai, Arun Kumar Barde, Chandrakant Supare, Gagandeep Purohit, Abhijit Kamble, Sandeep S.
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引用次数: 0

Abstract

Design of an automation controller for a “Electro-Hydro-Mechanical Object Laying System” is presented in this paper, which is a multidisciplinary equipment consisting of Electromechanical and Hydraulic Actuators and large number of sensors for process feedback. There are complex mechanisms and processes involved in this system, which are required to be operated/executed in sequential and parallel manner in real time. The operation of spatially distributed Electromechanical & Hydraulic actuators with feedbacks from multiple type of sensors are required to be synchronized for multiple activities at a faster rate along with safely handling of the objects. All the activities are automated with minimum human intervention to avoid risk to the crew. This paper mainly focuses on electronic controller hardware design for military environment and process optimization to achieve faster object laying rate.
多学科作战工程系统过程优化与自动控制器设计
“电-液-机械物体铺设系统”是一个由机电、液压作动器和大量过程反馈传感器组成的多学科设备,本文设计了该系统的自动控制器。该系统涉及复杂的机制和过程,需要以顺序和并行的方式实时操作/执行。空间分布式机电系统的运行;来自多种类型传感器反馈的液压执行器需要以更快的速度同步进行多种活动,同时安全处理物体。所有的活动都是自动化的,人为干预最小,以避免对机组人员的风险。本文主要研究军用环境下电子控制器的硬件设计和过程优化,以实现更快的目标铺设速率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Defence Science Journal
Defence Science Journal 综合性期刊-综合性期刊
CiteScore
1.80
自引率
11.10%
发文量
69
审稿时长
7.5 months
期刊介绍: Defence Science Journal is a peer-reviewed, multidisciplinary research journal in the area of defence science and technology. Journal feature recent progresses made in the field of defence/military support system and new findings/breakthroughs, etc. Major subject fields covered include: aeronautics, armaments, combat vehicles and engineering, biomedical sciences, computer sciences, electronics, material sciences, missiles, naval systems, etc.
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