将直流电源升级为PHIL放大器

Q3 Engineering
Lucas Rotava, S. Deda, Oliver König, Gernot Pammer
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引用次数: 0

摘要

电力电子变流器和电力系统的仿真模型可用于快速成型、样机测试和型式认证。这些模型已经在各种供应商的实时模拟器(RTS)上运行,在基于fpga的仿真平台上运行。目标是通过将应用与电力电子器件解耦,以更快的方式解决具有相同硬件(HW)的更多应用。因此,目标是通过增加高速光纤接口来适应现有的直流电源,从而使应用与电力电子器件分离。一个通用接口规范允许使用广泛的产品作为功率放大器(电池/电池模拟器和测试器,机器模拟器,动态驱动器,通用逆变器,电网模拟器)。不同RTS平台之间的可互换光纤接口将用于提供低延迟和同步概念。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Upgrading a DC Source to a PHIL Amplifier
The simulation models of power electronic converters and power systems may be reused for rapid prototyping, prototype testing and type approval. Such models already run on real-time simulators (RTS) of various suppliers, on FPGA-based simulation platforms. The target is to solve many more applications with the same hardware (HW) in a faster way by decoupling the application from the power electronics. Therefore, it is a goal to adapt existing DC sources by adding a high-speed fiber interface to decouple the application from the power electronics. One common interface specification enables the use of a wide range of products as power amplifiers (battery/cell emulators & testers, machine emulators, dyno drives, universal inverters, grid emulators). An interchangeable fiber optic interface between different RTS platforms will be used to provide low latency and synchronization concepts.
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来源期刊
AUS
AUS Engineering-Architecture
CiteScore
0.40
自引率
0.00%
发文量
14
期刊介绍: Revista AUS es una publicación académica de corriente principal perteneciente a la comunidad de investigadores de la arquitectura y el urbanismo sostenibles, en el ámbito de las culturas locales y globales. La revista es semestral, cuenta con comité editorial y sus artículos son revisados por pares en el sistema de doble ciego. Periodicidad semestral.
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