paper-with-me

Papers

A Chance-Constrained Optimal Design of Volt/VAR Control Rules for Distributed Energy Resources

2023-06-10 · Jinlei Wei, Sarthak Gupta, Dionysios C. Aliprantis, Vassilis Kekatos

Deciding setpoints for distributed energy resources (DERs) via local control rules rather than centralized optimization offers significant autonomy. The IEEE Standard 1547 recommends deciding DER setpoints using Volt/VAR rules. Although such rules are specified as non-increasing piecewise-affine, their exact shape is left for the utility operators to decide and possibly customize per bus and grid conditions. To address this need, this work optimally designs Volt/VAR rules to minimize ohmic losses on lines while maintaining voltages within allowable limits. This is practically relevant as excessive reactive injections could reduce equipment's lifetime due to overloading. We consider a linearized single-phase grid model. Even under this setting, optimal rule design (ORD) is technically challenging as Volt/VAR rules entail mixed-integer models, stability implications, and uncertainties in grid loading. Uncertainty is handled by minimizing the average losses under voltage chance constraints. To cope with the piecewise-affine shape of the rules, we build upon our previous reformulation of ORD as a deep learning task. A recursive neural network (RNN) surrogates Volt/VAR dynamics and thanks to back-propagation, we expedite this chance-constrained ORD. RNN weights coincide with rule parameters, and are trained using primal-dual decomposition. Numerical tests corroborate the efficacy of this novel ORD formulation and solution methodology.

📄 PDF Abstract BibTeX arXiv:2306.06467

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

Incremental Volt/Var Control for Distribution Networks via Chance-Constrained Optimization

2024-05-03 · Antonin Colot, Elisabetta Perotti, Mevludin Glavic, Emiliano Dall'Anese

This paper considers an incremental Volt/Var control scheme for distribution systems with high integration of inverter-interfaced distributed generation (such as photovoltaic systems). The incremental Volt/Var controller…

Chance-Constrained AC Optimal Power Flow for Unbalanced Distribution Grids

2022-07-19 · Kshitij Girigoudar, Ashley M. Hou, Line A. Roald

The growing penetration of distributed energy resources (DERs) is leading to continually changing operating conditions, which need to be managed efficiently by distribution grid operators. The intermittent nature of DERs…

Load Forecasting

Computationally Enhanced Approach for Chance-Constrained OPF Considering Voltage Stability

2023-06-26 · Yuanxi Wu, Zhi Wu, Yijun Xu, Huan Long 외

The effective management of stochastic characteristics of renewable power generations is vital for ensuring the stable and secure operation of power systems. This paper addresses the task of optimizing the chance-constra…

Management

Chance-constrained Solar PV Hosting Capacity Assessment for Distribution Grids Using Gaussian Process and Logit Learning

2025-05-26 · Sel Ly, Anshuman Singh, Petr Vorobev, Yeng Chai Soh 외

Growing penetration of distributed generation such as solar PV can increase the risk of over-voltage in distribution grids, affecting network security. Therefore, assessment of the so-called, PV hosting capacity (HC) - t…

Management

Chance Constrained Stochastic Optimal Control for Linear Systems with a Time Varying Random Control Matrix

2023-02-03 · Shawn Priore, Meeko Oishi

This work proposes an open-loop methodology to solve chance constrained stochastic optimal control problems for linear systems with a stochastic control matrix. We consider a joint chance constraint for polytopic time-va…