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The control of parallel-connected inverters for U.S. Navy shipboard applications

机译:用于美国海军舰船应用的并联逆变器的控制

摘要

Concepts such as the Integrated Power System (IFS) and the DC Zonal Electric Distribution System (DC ZEDS) have motivated the study of power inverter control and paralleling strategies by the U.S. Navy. For example, in DC ZEDS a Ship Service Inverter Module (SSIM) converts DC power into AC power for use within a zone. For reasons of redundancy and logistics, multiple paralleled inverter submodules are used to implement the SSIM. The current effort supports ongoing SSIM hardware development by the SatCon Corporation. This report documents the modeling and control analysis of a set of parallel-connected PWM inverters. Although initially focusing on a static three-phase R-L load, the analysis is extended to three-phase symmetrical induction machine loads and three-phase round-rotor permanent-magnet synchronous machine loads. In each case, an algorithm for designing the local inner current control is developed by employing reference frame theory, replacing the paralleled inverters by an equivalent unit, and executing a nonlinear pole-placement strategy. Upon reviewing the equations necessary for AC machine vector control, the report concludes by documenting the analysis and design of a simple speed control loop for this aformentioned machine loads.
机译:集成电源系统(IFS)和直流分区配电系统(DC ZEDS)等概念激发了美国海军对功率逆变器控制和并联策略的研究。例如,在DC ZEDS中,船舶服务逆变器模块(SSIM)将DC电源转换为AC电源以供区域内使用。由于冗余和后勤的原因,使用多个并行的逆变器子模块来实现SSIM。当前的努力支持SatCon公司正在进行的SSIM硬件开发。该报告记录了一组并联PWM逆变器的建模和控制分析。尽管最初侧重于静态三相R-L负载,但分析扩展到了三相对称感应电机负载和三相圆转子永磁同步电机负载。在每种情况下,通过采用参考框架理论,用等效单元代替并联的逆变器并执行非线性极点布置策略,来开发用于设计局部内部电流控制的算法。在回顾了交流电机矢量控制所必需的方程后,该报告通过记录分析和设计针对上述电机负载的简单速度控制回路而得出结论。

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    Melese Francois;

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  • 年度 2010
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