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Design Oriented Analysis of DC Link Current Observer of a Three-phase Double Conversion Uninterruptable Power System or Adjustable Speed Drive

机译:三相双转换不间断电源或调速系统直流环节电流观测器的设计导向分析

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In this paper, a high performance dc link current observer is described and analyzed for a double conversion uninterruptible power system (UPS) or an adjustable speed drive (ASD). This second order observer identifies the dc link current drawn by the output inverter section. The observed load current is then used as a feedforward signal to input converter current regulator section for improving its dynamic response. The new contributions include the analysis on the system observability, observer sensitivity to system parameters, its command tracking performance, dc link voltage and load current dynamic disturbance rejection capabilities, all of which are not found in present literatures. In conjunction with the dc link current observer analysis, the current regulator bandwidth performance of the input ac-dc converter stage is characterized for both single and double update pulse width modulation (PWM) methods. The high performance resides in its fast dynamic response to the load power requirements resulting in dc link voltage variation, without using dc link current sensor or any communication channels. The solution is not only ideal for a stand alone UPS or ASD for low cost and high dynamic performance, but is particularly attractive for ac-dc converters suitable for common dc link systems. The analytical results are verified through the state-of-the-art simulation. All control algorithms are implemented in a Texas Instruments (TI) digital signal processor (DSP) and Xilinx field programmable gate array (FPGA) environment. The experimental setup of a 3- phase, 480V, 60Hz, 15 hp (11.
机译:在本文中,针对双转换不间断电源系统(UPS)或可调速驱动器(ASD)描述并分析了高性能直流链路电流观测器。该二阶观测器识别输出逆变器部分汲取的直流母线电流。然后,将观察到的负载电流用作前馈信号,以输入转换器电流调节器部分,以改善其动态响应。新的贡献包括对系统可观察性的分析,观察者对系统参数的敏感性,其命令跟踪性能,直流母线电压和负载电流动态干扰抑制能力,所有这些在当前文献中都没有发现。结合直流链路电流观察器分析,可针对单更新和双更新脉冲宽度调制(PWM)方法来表征输入AC-DC转换器级的电流调节器带宽性能。高性能在于对负载功率要求的快速动态响应,从而导致直流链路电压发生变化,而无需使用直流链路电流传感器或任何通信通道。该解决方案不仅是低成本,高动态性能的独立式UPS或ASD的理想选择,而且对于适用于常见直流链路系统的AC-DC转换器特别有吸引力。分析结果通过最新的仿真得到验证。所有控制算法均在德州仪器(TI)数字信号处理器(DSP)和Xilinx现场可编程门阵列(FPGA)环境中实现。三相480V,60Hz,15 hp的实验设置(11。

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