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Hardware Implementation of Model-Based Control Algorithm Using FPGA Technology

机译:使用FPGA技术的基于模型的控制算法的硬件实现

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In this paper an efficient algorithm for designing a model-based controller implemented on a Field Programmable Gate Array (FPGA) is proposed and tested. The controller design is based on the Internal Model Control (IMC) principle and PID tuning according to the Kuhn's T-sum tuning rule. The controllers have been designed, functionally verified and implemented on the FPGA platform using the Xilinx Integrated Software Environment (ISE). The Very High Speed Integrated Circuits Hardware Development Language (VHDL) is used to create synthesizable control algorithms in a form suitable for hardware implementation. The practical application of proposed algorithms is illustrated by a test performed on a laboratory plant. Experimental results compared with the simulation ones show satisfactory closed-loop responses and justify using the FPGA technology for hardware implementation of complex control algorithms.
机译:在本文中,提出并测试了一种有效的算法,用于设计在现场可编程门阵列(FPGA)上实现的基于模型的控制器。控制器的设计基于内部模型控制(IMC)原理和根据Kuhn的T-sum调整规则进行的PID调整。使用赛灵思集成软件环境(ISE)在FPGA平台上对控制器进行了设计,功能验证和实现。超高速集成电路硬件开发语言(VHDL)用于以适合于硬件实现的形式创建可综合的控制算法。拟议算法的实际应用通过在实验室工厂进行的测试来说明。与仿真结果相比,实验结果显示出令人满意的闭环响应,并证明了使用FPGA技术对复杂控制算法进行硬件实现的合理性。

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