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Control of Dual-Opposed Stirling Convertors with Active Power Factor Correction Controllers

机译:用有源功率因数校正控制器控制双反斯特林转换器

摘要

When using recently-developed active power factor correction (APFC) controllers in power systems comprised of dual-opposed free-piston Stirling convertors, a variety of configurations of the convertors and controller(s) can be considered, with configuration ultimately selected based on benefits of efficiency, reliability, and robust operation. The configuration must not only achieve stable control of the two convertors, but also synchronize and regulate motion of the pistons to minimize net dynamic forces. The NASA Glenn Research Center (GRC) System Dynamic Model (SDM) was used to study ten configurations of dual-opposed convertor systems. These configurations considered one controller with the alternators connected in series or in parallel, and two controllers with the alternators not connected (isolated). For the configurations where the alternators were not connected, several different approaches were evaluated to synchronize the two convertors. In addition, two thermodynamic configurations were considered: two convertors with isolated working spaces and convertors with a shared expansion space. Of the ten configurations studied, stable operating modes were found for four. Three of those four had a common expansion space. One stable configuration was found for the dual-opposed convertors with separate working spaces. That configuration required isochronous control of both convertors, and two APFC controllers were used to accomplish this. A frequency/phase control loop was necessary to allow each APFC controller to synchronize its associated convertor with a common frequency.
机译:在由双对置自由活塞斯特林转换器组成的电力系统中使用最新开发的有源功率因数校正(APFC)控制器时,可以考虑采用多种转换器和控制器配置,最终根据收益选择配置效率,可靠性和稳健的操作。该配置不仅必须实现对两个转换器的稳定控制,而且还必须同步和调节活塞的运动以最小化净动态力。美国宇航局格伦研究中心(GRC)系统动态模型(SDM)用于研究双对置转换系统的十种配置。这些配置考虑了一个交流发电机串联或并联连接的控制器,以及两个交流发电机未连接(隔离)的控制器。对于未连接交流发电机的配置,评估了几种不同的方法来同步两个转换器。另外,考虑了两种热力学配置:两个具有隔离工作空间的转换器和具有共享扩展空间的转换器。在研究的十种配置中,有四种处于稳定的工作模式。这四个中的三个具有相同的扩展空间。对于具有单独工作空间的双对立转换器,找到了一种稳定的配置。该配置需要两个转换器的同步控制,并且使用两个APFC控制器来实现此目的。频率/相位控制环路对于使每个APFC控制器能够将其关联的转换器与公共频率同步是必不可少的。

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