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Encrypted MPC based on ADMM real-time iterations ?

机译:基于ADMM实时迭代的加密MPC

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Encrypted control enables confidential controller evaluations in cloud-based or networked control systems. Technically, an encrypted controller is a modified control algorithm that is capable of computing encrypted control actions based on encrypted system states without intermediate decryption. The realization of such controllers, e.g., using homomorphic encryption, is non-trivial. Nevertheless, even optimization-based model predictive control (MPC) has already been implemented in an encrypted fashion. However, the existing schemes either require an explicit solution of the parametric optimal control problem (OCP) or they can only consider input constraints. In this paper, we present a novel encrypted MPC that allows to include state and input constraints without the requirement of an explicit solution of the OCP. The approach builds on the encrypted implementation of a single iteration of the alternating direction method of multipliers (ADMM) per time step, i.e., ADMM real-time iterations.
机译:加密控制在基于云或网络控制系统中可以进行机密控制器评估。从技术上讲,加密控制器是一种修改的控制算法,其能够基于没有中间解密的加密系统状态计算加密的控制动作。这种控制器的实现,例如,使用同态加密是非微不足道的。然而,即使是基于优化的模型预测控制(MPC)已经以加密的方式实现。但是,现有方案要么需要显式解决参数最佳控制问题(OCP),或者它们只能考虑输入约束。在本文中,我们介绍了一种新的加密MPC,允许包括状态和输入约束,而无需对OCP的显式解决方案。该方法构建了加密实现每次步骤的乘法器(ADMM)的交替方向方法的单个迭代,即,ADMM实时迭代。

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