IEC 63382-1:2025
Management of distributed energy storage systems based on electrically chargeable vehicle batteries - Part 1: Use cases and architectures
Management of distributed energy storage systems based on electrically chargeable vehicle batteries - Part 1: Use cases and architectures
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 196
- Дата публикации:
- 25 ноября 2025 г.
- Издание:
- IEC IS 63382 edition 1 version 1
- ICS:
- 29.240
IEC 63382-1:2025 series specifies the management of distributed energy storage systems, composed of electrically chargeable vehicle batteries (ECV-DESS), which are handled by an aggregator/flexibility operator (FO) to provide energy flexibility services to grid operators. IEC 63382-1:2025 describes the technical characteristics and architectures of ECV-DESS, including: – EV charging stations configurations, comprising several AC-EVSEs and/or DC-EVSEs; – individual EVs connected to grid via an EVSE and managed by an aggregator/FO. The focus of this document is on the interface between the FO and the FCSBE and the data exchange at this interface, necessary to perform energy flexibility services (FS). The data exchange between FO and FCSBE typically includes: – flexibility service request and response; – flexibility services parameters; – EV charging station configuration and technical capabilities; – credentials check of parties involved in the flexibility service; – FS execution related notifications; – event log, detailed service record, proof of work. The exchange of credentials has the purpose to identify, authenticate and authorize the actors involved in the flexibility service transaction, to check the validity of a FS contract and to verify the technical capabilities of the system EV + CS, and conformity to applicable technical standards to provide the requested flexibility service. This document also describes the technical requirements of ECV-DESS, the use cases, the information exchange between the EV charging station operator (CSO) and the aggregator/FO, including both technical and business data. It covers many aspects associated to the operation of ECV-DESS, including: – privacy issues consequent to GDPR application (general data protection regulation); – cybersecurity issues; – grid code requirements, as set in national guidelines, to include ancillary services, mandatory functions and remunerated services; – grid functions associated to V2G operation, including new services, as fast frequency response; – authentication/authorization/transactions relative to charging sessions, including roaming, pricing and metering information; – management of energy transfers and reporting, including information interchange, related to power/energy exchange, contractual data, metering data; – demand response, as smart charging (V1G). It makes a distinction between mandatory grid functions and market driven services, taking into account the functions which are embedded in the FW control of DER smart inverters. This document deals with use cases, requirements and architectures of the ECV-DESSs with the associated EV charging stations. Some classes of energy flexibility services (FS) have been identified and illustrated in dedicated use cases: – following a dynamic setpoint from FO; – automatic execution of a droop curve provided by FO, according to local measurements of frequency, voltage and power; – demand response tasks, stimulated by price signals from FO; – fast frequency response. Furthermore, some other more specific flexibility service use cases include: – V2G for tertiary control with reserve market; – V2H with dynamic pricing linked to the wholesale market price; – distribution grid congestion by EV charging and discharging. FS are performed under flexibility service contracts (FSC) which can be stipulated between: – FO and EV owner (EVU or EV fleet manager); – FO and CSP; – FO and CSO. Any flexibility service is requested by the aggregator/FO with a flexibility service request (FSR) communicated through the FCSBE interface to the available resources. The actors EVU, CSO, CSP have always the right to choose opt-in or opt-out options in case of a FSR, unless it is mandatory for safety or grid stability reasons. A use case shows how to discover flexibility service contract (FSC) holders. This document describes many use cases, some of them are dedicated to special applications such as
Abstract
Overview - What IEC 63382-1:2025 covers
IEC 63382-1:2025 (Part 1) defines use cases and architectures for the management of distributed energy storage systems composed of electrically chargeable vehicle batteries (ECV-DESS). The standard focuses on systems managed by an aggregator / flexibility operator (FO) to deliver energy flexibility services to grid operators. It addresses technical characteristics of ECV‑DESS, EV charging station (EVCS) configurations (multiple AC- and/or DC‑EVSEs, single EVSE), and the FO ↔ FCSBE interface and data exchange required to request, execute and record flexibility services.
Key topics and technical requirements
- Use cases and architectures: Comprehensive scenarios including setpoint following, droop control, demand response (smart charging / V1G), fast frequency response and V2G/V2H applications (e.g., tertiary reserve, dynamic pricing, congestion management).
- Interface & data exchange: Data elements exchanged at the FO–FCSBE interface such as flexibility service requests/responses, FS parameters, EVCS configuration and capabilities, execution notifications, event logs, proof of work and detailed service records.
- Credentials & transactions: Authentication, identification and authorization of actors; verification of FSC (flexibility service contract) validity; conformity checks of EV + charging station capabilities. Opt‑in/opt‑out rules for EV owners, CSOs and CSPs (except where safety or grid stability mandates apply).
- Functional and technical requirements: Information model principles and compatibility mapping, message transport and payload encoding, transport/physical layer considerations.
- Operational aspects: Management of energy transfers, metering and reporting, pricing/transactions, roaming and session authentication/authorization.
- Security & privacy: Cybersecurity measures and privacy protections including GDPR‑related considerations for personal data.
- Regulatory & grid code alignment: Recognition of mandatory grid functions vs. market‑driven services; alignment with national grid codes and ancillary service requirements.
Practical applications & who uses it
- Aggregators / flexibility operators (FO) implementing large‑scale ECV‑DESS orchestration.
- EV charging station operators (CSO), charging service providers (CSP) and fleet managers integrating flexibility services.
- Grid operators and system planners procuring ancillary services and congestion management from EV assets.
- Manufacturers, system integrators and software vendors designing EVSE, back‑end systems and communication interfaces.
- Regulators and utilities referencing standardized requirements for V2G/V1G deployments, cybersecurity and data privacy.
Related standards and implementation notes
IEC 63382-1 is the first part of a series addressing ECV‑DESS management. Implementers should also consider applicable national grid codes, data protection laws (e.g., GDPR) and complementary IEC/ISO standards for EV charging, DER control and cybersecurity when designing compliant solutions.
Keywords: IEC 63382-1, distributed energy storage, electric vehicle batteries, flexibility services, EV charging station, V2G, V1G, aggregator, cybersecurity, GDPR, grid code.
Технические детали
- Технический комитет
- TC 69 - Electrical power/energy transfer systems for electrically propelled road vehicles and industrial trucks
- SKU
- IEC 63382-1:2025
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