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Predictive Controller for a Three-Phase/Single-Phase Voltage Source Converter Cell

机译:三相/单相电压源转换器单元的预测控制器

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In the last decades, finite control set-model predictive control (FCS-MPC) has been extensively investigated. This control strategy uses the system model to determine the optimal input that minimizes a predefined cost function. This procedure is performed by evaluating the admissible inputs of the converter model. In order to achieve a proper performance of the control strategy, a small sampling time must be used. In practice, the computational effort and processing time are critical factors that depend directly on the number of admissible states of the topology. With the objective of reducing the execution time needed by the algorithm, it is possible to take advantage of the high degree of parallelism that can be obtained from a field-programmable gate array (FPGA). This paper deals with the implementation of FCS-MPC in an FPGA XC3S3500E to control a power cell of a cascaded half bridge (CHB) converter. The design is divided into subparts, called modules, which can be projected to control multiple cells using only one chip. In addition, with the aim to restrict the use of hardware to the available resources, the document presents a series of considerations related to the algorithm and its implementation. This paper presents a detailed guide with emphasis on the design and outlining of each module in order to reduce the developing times for researchers in the area of power converters.
机译:在过去的几十年中,对有限控制集模型预测控制(FCS-MPC)进行了广泛的研究。该控制策略使用系统模型来确定使预定义成本函数最小化的最佳输入。通过评估转换器模型的允许输入来执行此过程。为了实现控制策略的适当性能,必须使用较小的采样时间。在实践中,计算工作量和处理时间是至关重要的因素,它们直接取决于拓扑的允许状态数。为了减少算法所需的执行时间,可以利用可以从现场可编程门阵列(FPGA)获得的高度并行性。本文讨论了在FPGA XC3S3500E中实现FCS-MPC的实现,以控制级联半桥(CHB)转换器的功率单元。该设计分为称为模块的子部分,可以将其设计为仅使用一个芯片即可控制多个单元。另外,为了将硬件的使用限制为可用资源,该文档提出了与算法及其实现相关的一系列注意事项。本文提供了详细的指南,重点介绍了每个模块的设计和概述,以减少功率转换器领域研究人员的开发时间。

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