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Model predictive control for deeply pipelined field-programmable gate array implementation: algorithms and circuitry

机译:用于深度流水线现场可编程门阵列实现的模型预测控制:算法和电路

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Model predictive control (MPC) is an optimisation-based scheme that imposes a real-time constraint on computing the solution of a quadratic programming (QP) problem. The implementation of MPC in fast embedded systems presents new technological challenges. In this paper we present a parameterised field-programmable gate array implementation of a customised QP solver for optimal control of linear processes with constraints, which can achieve substantial acceleration over a general purpose microprocessor, especially as the size of the optimisation problem grows. The focus is on exploiting the structure and accelerating the computational bottleneck in a primal-dual interior-point method. We then introduce a new MPC formulation that can take advantage of the novel computational opportunities, in the form of parallel computational channels, offered by the proposed pipelined architecture to improve performance even further. This highlights the importance of the interaction between the control theory and digital system design communities for the success of MPC in fast embedded systems.
机译:模型预测控制(MPC)是一种基于优化的方案,对计算二次规划(QP)问题的解决方案施加了实时约束。在快速嵌入式系统中实施MPC提出了新的技术挑战。在本文中,我们提出了一种定制的QP求解器的参数化现场可编程门阵列实施方案,以实现对带有约束条件的线性过程的最佳控制,这可以在通用微处理器上实现显着的加速,尤其是随着优化问题的增长。重点是利用原始对偶内点法开发结构并加速计算瓶颈。然后,我们介绍了一种新的MPC公式,该公式可以利用所提出的流水线体系结构提供的并行计算通道形式的新颖计算机会,从而进一步提高性能。这突出了控制理论与数字系统设计社区之间进行交互对于MPC在快速嵌入式系统中取得成功的重要性。

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