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Synthesis and FPGA-based implementation of an indirect sliding mode current controller of a synchronous machine

机译:同步电机间接滑模电流控制器的综合与基于FPGA的实现

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This paper presents the synthesis and the implementation on a field programmable gate array (FPGA) of an indirect sliding mode current control of a synchronous machine. The adopted sliding mode current control strategy is very advantageous for making the controlled system robust to parameter variations and external disturbances. The main interest of using FPGAs to implement such controllers is the very important reduction of the control loop delay, which is only equal to a few microseconds. This control loop delay reduction derives directly from the possibility offered by FPGAs to design very powerful dedicated hardware architectures with free sampling instants. Numerous experimental results are shown to prove the efficiency of FPGA-based solutions to achieve high performance control.
机译:本文介绍了同步电机间接滑模电流控制的现场可编程门阵列(FPGA)的综合和实现。所采用的滑模电流控制策略对于使受控系统对参数变化和外部干扰具有鲁棒性非常有利。使用FPGA来实现这种控制器的主要目的是非常重要地减少了控制环路延迟,该延迟仅等于几微秒。控制环路延迟的减少直接源于FPGA提供的可能性,以设计具有免费采样时刻的功能非常强大的专用硬件架构。大量的实验结果表明,可以证明基于FPGA的解决方案实现高性能控制的效率。

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