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Long-Horizon Direct Model Predictive Control: Modified Sphere Decoding for Transient Operation

机译:长期直接模型预测控制:用于瞬态操作的修正球体解码

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摘要

In this paper, we present modifications to the sphere decoder initially introduced in the work of Geyer and Quevedo and modified in the work of Karamanakos et al. that significantly reduce the computation times during transients. The relative position of the unconstrained solution of the integer quadratic program underlying model predictive control (MPC) with respect to the convex hull of the (truncated) lattice of integer points is examined. If it is found that the unconstrained solution does not lie within the convex hull-a phenomenon that is observed mostly during transients-then a projection is performed onto the convex hull. By doing so, a new sphere that guarantees feasibility and includes a significant smaller number of candidate solutions is computed. This reduces the computation time by up to three orders of magnitude when solving the optimization problem at hand. Nonetheless, the reduction of the computational burden comes at a cost of (mild) suboptimal results. The effectiveness of the proposed algorithm is tested with a variable speed drive system consisting of a three-level neutral point clamped voltage source inverter and a medium-voltage induction machine. Based on the presented results, the sphere decoding algorithm with the proposed refinements maintains the very fast transient responses inherent to direct MPC. Moreover, it is observed that the occasional implementation of suboptimal solutions does not lead to a deterioration of the system performance.
机译:在本文中,我们介绍了对最初在Geyer和Quevedo的工作中引入并在Karamanakos等人的工作中进行了修改的球形解码器的修改。大大减少了瞬态期间的计算时间。检查了基于模型预测控制(MPC)的整数二次程序的无约束解相对于整数点(截断)格的凸包的相对位置。如果发现无约束解不位于凸包内-一种在瞬态过程中通常会观察到的现象-然后将投影投影到凸包上。这样,可以计算出一个新的领域,该领域可以保证可行性,并包括数量较少的候选解决方案。解决当前的优化问题时,这最多可将计算时间减少三个数量级。尽管如此,减轻计算负担是以(轻微)次优结果为代价的。该算法的有效性通过变速驱动系统进行了测试,该变速驱动系统由三级中性点钳位电压源逆变器和中压感应电机组成。根据给出的结果,采用改进方案的球形解码算法可保持直接MPC固有的非常快速的瞬态响应。此外,可以观察到,偶尔实现次优解决方案并不会导致系统性能下降。

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