Design of the Power Supply System and the PHM Architecture for Unmanned Surface Vehicle

Liqiang Zhang, Z. Ji, Xiao Wang, Rui Yang, Lan-jun Liu, Jiu-cai Jin
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Abstract

Unmanned Surface Vehicle (USV) has been widely used in the marine environment monitoring. The safety and reliability of the USV, especially the power supply systems, is very important. In this paper, a power supply system with PHM is proposed for USV, Field Programmable Gate Array (FPGA) is used as the main controller. Fault diagnosis, fault location and fault isolation can be implemented by acquiring the voltage and current information of all power equipment. At the same time, the fault prediction and health management of the whole ship is carried out by collecting the temperature, humidity, vibration and other information of every part of the USV. The power supply system and the Prognostics and Health Management (PHM) architecture proposed in this paper can be used for USV maintenance decision in the future.
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无人水面航行器供电系统及PHM体系结构设计
无人水面航行器(USV)在海洋环境监测中得到了广泛应用。无人潜航器的安全性和可靠性,特别是供电系统的安全性和可靠性是非常重要的。本文以现场可编程门阵列(FPGA)为主控制器,提出了一种基于PHM的USV供电系统。通过获取所有电力设备的电压、电流信息,实现故障诊断、故障定位和故障隔离。同时,通过采集无人潜航器各部件的温度、湿度、振动等信息,对全船进行故障预测和健康管理。本文提出的供电系统和预测与健康管理(PHM)体系结构可用于未来的无人潜航器维护决策。
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