Experimental Comparison of Two Data-Driven Algorithms for Pitch Control of an Aerospace System

A. Baciu, C. Lazar
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Abstract

Data-driven control (DDC) algorithms have been developed in the last decades, whose design is based only on the data collected from the controlled plant, without using a process model. These techniques that do not use an explicit model of the system have become very attractive for the control of complex processes with high nonlinearities. This paper presents two DDC algorithms, one model-free adaptive control (MFAC), and the other model-free intelligent P(iP), whose performances are experimentally evaluated using the AERO 2 platform, a highly nonlinear aerospace system made by Quanser. The similarities and differences between the two DDC are succinctly presented and based on the results obtained through real-time experiments, the performances are compared.
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航天系统俯仰控制两种数据驱动算法的实验比较
数据驱动控制(DDC)算法是近几十年来发展起来的,其设计仅基于从被控工厂收集的数据,而不使用过程模型。这些不使用系统的显式模型的技术对于具有高非线性的复杂过程的控制已经变得非常有吸引力。本文提出了两种DDC算法,一种是无模型自适应控制(MFAC),另一种是无模型智能P(iP),并在Quanser公司的高度非线性航空航天系统AERO 2平台上对其性能进行了实验评估。简要介绍了两种DDC的异同,并根据实时实验结果对两种DDC的性能进行了比较。
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