A Comparative Study of Distributed Feedback Optimizing Control Architectures
Risvan Dirza, Hari Prasad Varadarajan, Vegard Aas, Sigurd Skogestad,, and Dinesh Krishnamoorthy

TL;DR
This paper compares various distributed feedback-optimizing control architectures through simulations and experiments, focusing on interconnected systems with shared resources, to evaluate their effectiveness in real-time optimization tasks.
Contribution
It introduces a framework for analyzing and comparing distributed feedback-optimizing control architectures using two practical case studies.
Findings
Different control architectures show varied performance in demand response and resource allocation.
Simulation results highlight strengths and weaknesses of each approach.
Experimental validation confirms the practical applicability of the control strategies.
Abstract
This paper considers the problem of steady-state real-time optimization (RTO) of interconnected systems with a common constraint that couples several units, for example, a shared resource. Such problems are often studied under the context of distributed optimization, where decisions are made locally in each subsystem, and are coordinated to optimize the overall performance. Here, we use distributed feedback-optimizing control framework, where the local systems and the coordinator problems are converted into feedback control problems. This is a powerful scheme that allows us to design feedback control loops, and estimate parameters locally, as well as provide local fast response, allowing different closed-loop time constants for each local subsystem. This paper provides a comparative study of different distributed feedback optimizing control architectures using two case studies. The…
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Taxonomy
TopicsAdvanced Control Systems Optimization
