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An Innovative Generation Control System for Improving Design and Stability of Shipboard Medium-Voltage DC Integrated Power System

机译:一种提高船舶中型电压DC集成电力系统设计和稳定性的创新生成控制系统

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Ensuring system stability in Medium-Voltage DC (MVDC) Integrated Power Systems (IPS) is a key issue, due to the presence of many shipboard electric users fed by Constant Power Load (CPL) converters. This paper presents an innovative control system aimed at utilizing alternators, connected to the IPS through controlled AC-DC interface converters, to improve MVDC stable voltage control. Such system is designed to control, for each shipboard generator, the AC machine voltage, the prime mover speed and the interface converter, in an integrated way. Technological aspects and control principle scheme of this system will be presented in the paper, with particular reference to the issue of DC-link voltage stability. This system is expected to bring advantages in terms of MVDC IPS integration, stable parallel operation of generators and loads, safe exploitation of alternators capability as a source of stabilizing power.
机译:确保中电压DC(MVDC)集成电源系统(IPS)中的系统稳定性是一个关键问题,因为存在由恒定功率负载(CPL)转换器馈送的许多船舶电动用户的存在。本文介绍了一种创新控制系统,旨在利用交流发电机,通过受控AC-DC接口转换器连接到IPS,以提高MVDC稳定电压控制。这种系统旨在以综合方式控制每个船舶发电机,AC机电压,主要动力速度和接口转换器。该系统的技术方面和控制原理方案将在纸上提出,特别是DC-Link电压稳定性问题。该系统有望在MVDC IPS集成方面带来优势,发电机的稳定并联运行,以及作为稳定电源的源泉的交流发电机的安全开发。

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