ISO 17800:2017
Facility smart grid information model
Facility smart grid information model
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 817
- Дата публикации:
- 18 декабря 2017 г.
- Издание:
- ISO IS 17800 edition 1 version 1
- ICS:
- 91.040.01
ISO 17800:2017 provides the basis for common information exchange between control systems and end use devices found in single - and multi-family homes, commercial and institutional buildings, and industrial facilities that is independent of the communication protocol in use. It provides a common basis for electrical energy consumers to describe, manage, and communicate about electrical energy consumption and forecasts. ISO 17800:2017 defines a comprehensive set of data objects and actions that support a wide range of energy management applications and electrical service provider interactions including: a) on-site generation, b) demand response, c) electrical storage, d) peak demand management, e) forward power usage estimation, f) load shedding capability estimation, g) end load monitoring (sub metering), h) power quality of service monitoring, i) utilization of historical energy consumption data, and j) direct load control.
Abstract
Overview
ISO 17800:2017 - Facility smart grid information model (FSGIM) defines an abstract, object‑oriented information model to enable consistent information exchange between facility control systems and end‑use devices across homes, commercial/institutional buildings, and industrial facilities. The model is communication‑protocol independent and provides a common basis for describing, managing, and communicating electrical energy consumption, forecasts and capabilities between facilities and energy service providers.
Key topics and technical requirements
- Abstract object‑oriented model: A protocol‑agnostic information model (UML normative annex) that vendors and integrators can map to specific communication technologies.
- Comprehensive data objects and actions: Defines the information needed to represent meters, loads, generators, storage, energy managers and related actions for energy management.
- Energy management functions supported:
- On‑site generation and integration
- Demand response and direct load control
- Electrical storage coordination
- Peak demand management and load shedding capability estimation
- Forward power usage estimation and historical consumption utilization
- End‑load monitoring (sub‑metering) and power‑quality monitoring
- Conformance and structure: Includes conformance requirements and modular model components to ensure interoperable implementations (see Clause 7 and the model structure sections).
- Standards alignment: Developed to harmonize with other smart grid standards and includes references to external models and specifications (examples noted in the document include OASIS EMIX/WS‑Calendar excerpts).
Practical applications and users
ISO 17800:2017 is practical for organizations that need a vendor‑neutral framework for facility energy information and control:
- Facility and energy managers: Standardize monitoring, forecasting and automated responses across mixed equipment.
- Utilities and energy service providers: Exchange consistent load forecasts, demand response signals, and capability data with customers.
- Building automation and IoT vendors: Design interoperable controllers, EMS, meters and gateways that map to a common information model.
- System integrators and consultants: Architect multi‑vendor solutions for sub‑metering, storage integration, and demand management.
- Standards developers: Use FSGIM as a foundation for protocol‑specific profiles and implementations.
Related standards and notes
- ISO 17800 is intended as an information‑content foundation; implementers map the abstract model to protocols and profiles. The standard references external specifications (e.g., OASIS EMIX/WS‑Calendar excerpts) and includes a normative UML model to aid implementation.
Keywords: ISO 17800, Facility Smart Grid Information Model, FSGIM, smart grid, energy management, demand response, building automation, sub‑metering, energy forecasting, interoperability.
Технические детали
- Технический комитет
- ISO/TC 205 - Building environment design
- SKU
- ISO 17800:2017
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