Abstract

This paper proposes a hierarchical look-ahead framework to conduct conservation voltage reduction (CVR) when distributed energy resources such as solar photovoltaic (PV) systems and energy storage systems (ESSs), and demand response programs are integrated into distribution systems. With the increasing deployment of PV systems in distribution systems, their frequently varying power output due to cloud movements could have a detrimental impact on the consumer’s voltage quality, consequently leading to degraded CVR performance. A two-level CVR framework for the coordination of an on-load tap changer (OLTC), capacitor banks (CBs), and the smart inverters of PV systems/ESSs is presented, in which these elements operate to reduce the voltage profile along the distribution feeder at different temporal scales. At the global level, the operations of the OLTC and the CBs are scheduled every hour to achieve the best CVR performance in an optimization problem using mixed-integer linear programming. When voltage violations occur rapidly, the smart inverters of PV systems and ESSs help to maintain a lower voltage profile every second based on the proposed piecewise droop control functions at the local level. A simulation study is carried out in an IEEE 33-bus distribution system with an OLTC, CBs, PV systems, and ESSs, and our results demonstrate the advantages of the proposed approach in terms of voltage level and energy savings. Furthermore, the impact of demand reduction on the proposed approach is quantified, and we verify that a higher demand reduction yields more energy savings in the proposed framework.

Highlights

  • Conservation voltage reduction (CVR) is one of the main applications of Volt/VAR optimization (VVO) in distribution management systems (DMSs)

  • To more clearly quantify the impact of voltage regulators (VRs) and distributed energy resources (DERs) on conservation voltage reduction (CVR), the IEEE 33-bus system is modified with the addition of 18 voltage regulating devices, including an on-load tap changer (OLTC), nine capacitor banks (CBs), and four smart inverters for both PV systems and energy storage systems (ESSs)

  • The proposed framework consists of global and local control schemes. The former reduces the voltage of the entire feeder and achieve energy saving by dispatching hourly real and/or reactive power from CBs, PV systems, and ESSs along with the scheduling of the OLTC tap position in a look-ahead optimization framework

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Summary

Introduction

Conservation voltage reduction (CVR) is one of the main applications of Volt/VAR optimization (VVO) in distribution management systems (DMSs). In traditional CVR schemes, a single entity is designed to lower the voltage at all consumer feeding points in the entire distribution grid through the coordination of voltage regulators (VRs) such as on-load tap changers (OLTCs) at substations, step-type voltage regulators (SVRs), and capacitor banks (CBs), in a centralized manner.

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