A novel bidirectional three-phase AC-DC/DC-AC converter for PMSM virtual machine system with common DC bus

Arvind H Kadam, Rishi Menon, S. Williamson
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引用次数: 5

Abstract

In the industrial production stage of a drive, its control algorithm must be tested for its validity with real machine. Testing with real machine could pose some serious challenges. During the testing, if the control algorithm starts behaving unexpectedly, it may cause serious damage to the real machine or drive. Such hazardous operating conditions can be avoided by replacing a real machine with a power electronic converter based ‘Virtual Machine’ (VM) test-bench. The VM can be designed to allow the device under test (DUT) to be tested at actual power with the help of a power electronic converter test setup and the motor model. The VM controls the current drawn from the DUT to match with that of estimated by the motor model. The existing VM system comprises of AC-DC followed by DC-AC converter, increasing the number of converter stages in the system. In addition, both the converters require independent control which increases the control complexity. This multistage conversion stage can be eliminated by replacing AC-DC-AC emulator with AC-DC converter supplied by common DC bus to DUT and VM both. Taking into account, this paper proposes a novel single-stage, three-phase bi-directional AC-DC converter topology suitable for VM system.
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一种新型双向三相AC-DC/DC- ac变换器,用于PMSM虚拟机系统
在驱动器的工业生产阶段,必须对其控制算法的有效性进行实机检验。用真实的机器进行测试可能会带来一些严重的挑战。在测试过程中,如果控制算法出现异常行为,可能会对真实的机器或驱动器造成严重的损坏。通过使用基于电力电子转换器的“虚拟机”(VM)测试台取代真实机器,可以避免这种危险的操作条件。VM可以设计为允许在电力电子转换器测试装置和电机模型的帮助下在实际功率下测试被测设备(DUT)。VM控制从DUT提取的电流与电机模型估计的电流相匹配。现有的虚拟机系统由AC-DC和DC-AC转换器组成,增加了系统中的转换器级数。此外,两种变换器都需要独立控制,这增加了控制的复杂性。通过将AC-DC- ac仿真器替换为公共直流总线提供的AC-DC转换器,可以消除这种多级转换阶段。因此,本文提出了一种适用于虚拟机系统的单级、三相双向交直流变换器拓扑结构。
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