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NYSDPS Architecture Subgroup New York State Public Service Commission - Platform Technology Working Group

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New York State Public Service Commission - Platform Technology Working Group. Architecture Subgroup. Ten Slide Outline. Initial Architecture WG Findings & Recommendations What are the gaps – if any? Do the architectural tools and technologies exist to implement the REV/DSPP? - PowerPoint PPT Presentation

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Page 1: Architecture Subgroup

NYSDPS

Architecture Subgroup

New York State Public Service Commission - Platform Technology Working Group

Page 2: Architecture Subgroup

XX-XX-2014Page 2

Ten Slide Outline

1. Overall REV/DSPP Scope and Roles2. Framework - NIST Smartgrid Conceptual

model3. Relevance of Architecture to REV/DSPP

Scope & Goalsa. Identification of new values, gaps in

technologies, standards and protocolsb. Standardization and interoperability starts

with architecture – EDI analogy/examplec. Architecture describes the evolution of the

DSPP boundary over timed. Architecture provides a common language

and framework for all NY utilities and market players

4. IEEE 2030 base architecture1. IEEE P2030, why chosen after review of

other architecture standards2. Describe the P2030 architectural layer3. Operating at the Conceptual Architecture

level, not logical or physical

5. Initial Architecture WG Findings & Recommendations

5. What are the gaps – if any?6. Do the architectural tools and technologies

exist to implement the REV/DSPP?7. What issues/trends/technologies should we

be monitoring?8. Continue WG efforts to flesh out

architecture through use cases9. 6-18 month engagement while moving

forward with implementation10. What would a ‘phased’ implementation of

architecture look like? What are the stage-1, near term architectural things that need done?

6. Initial Architecture WG Recommendations

7. Use case (Dynamic Electricity Production Forecasting, DEPF) Power Control layer

8. Use Case - DEPF Communications Layer

9. Use Case - DEPF Information Technology Layer

Page 3: Architecture Subgroup

XX-XX-2014Page 3

REV/DSPP Scope and Roles

• Fuel and resource diversity• System reliability• Reduced carbon emissions

Grid

Ope

ratio

nsM

arke

t Ope

ratio

ns

NY ISO DSPP Customers“Wholesale” Energy and

Capacity

“Wholesale” Market

Administration

Basic and Value Added Services

Wide Area View

Bulk Operations(115 kV and

above)

“Wholesale” Ancillary Services

“Retail to Wholesale” Aggregation

Regional/Local View

T/D/Microgrid Ops(115 kV and

below)

“Retail” Market Administration

Central Generation

ManagementDER Management

Direct Access (Individuals)

3rd PartyService Providers

“Premise” View

DER Operations

“Premise” or Microgrid

Operations

Page 4: Architecture Subgroup

XX-XX-2014Page 44

Framework - Smart Grid Conceptual Model (NIST & SGiP)

DSPP

Domain focus on the customer and service providers’ interactions in the context of electricity markets and operations within the Smart Grid distribution system (figure below).

Major DSPP Interfaces

Page 5: Architecture Subgroup

XX-XX-2014Page 5

Relevance of Architecture to REV/DSPP

5

Page 6: Architecture Subgroup

XX-XX-2014Page 6

IEEE 2030 base architecture

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Information

Technology

Communications

Power Control

SecurityData Integration

Covers all major areas of DSPP

NIST Compliant

National standard

Readily understood and accepted

IEEE is open to enhance as it matures

Most practical to use within the time frame.

Page 7: Architecture Subgroup

XX-XX-2014Page 7

IEEE 2030 view of DSPP architectureSC

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tion

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Page 8: Architecture Subgroup

XX-XX-2014Page 8

Architecture ‘Déjà vu’ – EDI Example

• Electronic Data Interchange was a response to the need for multiple organizations to integrate around specific functionalities

• EDI defines the data, security and integration standards within an architecture to facilitate a loosely-coupled business process

• DSPP must define the data, security and integration standards within the IEEE 2030 architecture to facilitate a TIGHTLY-coupled business process

Page 9: Architecture Subgroup

XX-XX-2014Page 9

Architecture Subgroup – Key Findings & Recommendations

Findings:

1. The data, security and integration complexity of a DSPP requires the rigor of a structured architecture

2. The IEEE 2030 architecture is sufficient to define current DSPP functionality and adaptable to incorporate future functionality

3. DSPP Use Cases must be documented within the architecture to surface technology, process, and standards gaps

Recommendations:

1. Complete IEEE 2030 architecture framework documentation and guidelines for governance

2. Begin cross-working group activity to document DSPP use cases

3. Create high level DSPP conceptual architecture with supporting technology, process, and standards references

Page 10: Architecture Subgroup

XX-XX-2014Page 10

Use Case - Dynamic Electricity Production forecasting

• Dynamic electricity production forecasting is the calculation and forecasting of electricity production from Distributed Energy Resources (DER).

• The forecasting is based on based on geography, forecasted fuel supply, solar isolation, wind speed and state of charge.

• The purpose of the forecasts would be to provide supply information to DSPP grid operations and planning, and to help set supply prices in the DSPP market.

• The next few slides paint a story of the DSPP in action with the use of a conceptual architecture.

• Please note this is only an example an is subject to change.

Page 11: Architecture Subgroup

XX-XX-2014Page 11

cat

IT Layer

Distribution Management

Next Poll for Day Ahead Forecast

IT27

Distributed Energy

Resources(Local

Generation)

Command Issued to

identify DER participatio

n

Geographic Information

Management

Request for DER

Geographic Location

IT34

Availability, Geo &

Weather Combined

Energy Market

Clearing

Combined DER

Forecast Data Issued

to Operations

Retail Market

Clears DER Participatio

n

IT36

Distribution Operation

DER Dispatch

Checked for Security

Constraints

IT13

Cleared DER

Forecast Issued to

Retail Market

Page 12: Architecture Subgroup

XX-XX-2014Page 12

Use Case - Dynamic Electricity Production forecasting

Power Layer

Page 13: Architecture Subgroup

XX-XX-2014Page 13

Use Case - Dynamic Electricity Production forecasting

Comms Layer

Page 14: Architecture Subgroup

XX-XX-2014Page 14

Thank you for your attention!

John Doe – Working group leader detailsJob titleGroup / Region / Department XY Street 12312345 CityPhone: +49 (123) 45 67-890Fax: +49 (123) 45 67-890Mobile: +49 (123) 45 67 89 0E-mail:[email protected]