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High-Speed and Low-Cost Implementation of Explicit Model Predictive Controllers

机译:显式模型预测控制器的高速,低成本实现

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This paper presents a new form of piecewise-affine (PWA) solution, referred to as PWA hierarchical (PWAH), to approximate the explicit model predictive control (MPC) law, achieving a very rapid control response with the use of very few computational and memory resources. This is possible because PWAH controllers consist of single-input single-output PWA modules connected in cascade so that the parameters needed to define them increase linearly instead of exponentially with the input dimension of the control problem. PWAH controllers are not universal approximators but several explicit MPC controllers can be efficiently approximated by them. A methodology to design PWAH controllers is presented and validated with application examples already solved by MPC approaches. The designed PWAH controllers implemented in field-programmable gate arrays provide the highest control speed using the fewest resources compared with the other digital implementations reported in the literature.
机译:本文提出了一种新的分段仿射(PWA)解决方案,称为PWA分层(PWAH),以近似显式模型预测控制(MPC)规律,使用很少的计算量和计算量即可实现非常快速的控制响应。内存资源。这是可能的,因为PWAH控制器由级联连接的单输入单输出PWA模块组成,因此定义它们所需的参数随控制问题的输入维数呈线性增长,而不是呈指数增长。 PWAH控制器不是通用逼近器,但是几个有效的MPC控制器可以被它们有效地逼近。提出了一种设计PWAH控制器的方法,并通过MPC方法已经解决的应用示例进行了验证。与文献中报道的其他数字实现方案相比,以现场可编程门阵列实现的设计PWAH控制器使用最少的资源即可提供最高的控制速度。

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