Priority Dispatch in Real Time Operation. Marie Hayden



Similar documents
Single Electricity Market. Principles of Dispatch and the Design of the Market Schedule in the Trading and Settlement Code

Wind Farm Power Station (WFPS) Performance Monitoring Process Effective 1 st October 2015

Post Operational Readiness. Operational Services and Performance

CAPACITY MECHANISMS IN EU POWER MARKETS

A new electricity market for Northern Ireland and Ireland from Integrated Single Electricity Market (I-SEM)

EURELECTRIC presentation. EURELECTRIC contribution to a reference model for European capacity markets. DG COMP workshop 30 June 2015

The Legal Helpdesk. Rules on grid access and priority dispatch for renewable energy in Europe

Options for coordinating different capacity mechanisms

Mark Pearce National Grid Interconnectors Business National Grid House Warwick Technology Park Gallows Hill Warwick CV34 6DA 23 June 2006

Main variations of business models for Flexible Industrial Demand combined with Variable Renewable Energy

Grid Integration of Photovoltaic (PV) Systems

Study to Determine the Limit of Integrating Intermittent Renewable (wind and solar) Resources onto Pakistan's National Grid

Impact of Renewable generation

Single Electricity Market (SEM) and interaction with EMIR. Central Bank of Ireland

Wind Cluster Management for Grid Integration of Large Wind Power

Anthony Price Swanbarton Limited, Dairy Farm, Pinkney, Malmesbury, Wiltshire, SN16 0NX Telephone

VALUING FLEXIBILITY 20 May 2014 Florence Forum Stephen Woodhouse, Director, Pöyry Management Consulting

Renewable Energy Growth Drivers Ireland Embedding Small Scale Renewables and Windpower in Ireland by way of early Smart Grid Clusters

market design policy paper

ALL ISLAND GRID STUDY WORK STREAM 4 ANALYSIS OF IMPACTS AND BENEFITS

A market design to support climate policy

Energy sector case examples. Dr Heli Antila, CTO Fortum. Global Cleantech Conference,, 9 September, Helsinki

Context: significant penetration of DG = increased risks for system security

Ancillary Services and Flexible Generation

Current and expected contribution of RES-E in NA countries

ESB NATIONAL GRID RESPONSE TO CER/03/266 INTERCONNECTOR TRADING PRINCIPLES IN THE MAE

ETSO/SETSO TF. Market Monitoring and Data Transparency/Availability. ETSO view and Transparency issue in SEE region

Specific amendments to the Capacity Allocation and Congestion Management Network Code

GRID CONNECTION OF POWER GENERATING FACILITIES. FEBEG POSITION Elia WG Belgian Grid ( )

Progress on market reform: EMR, the I-SEM and the TEM

Renewable Electricity and Liberalised Markets REALM. JOULE-III Project JOR3-CT GREECE ACTION PLAN. By ICCS / NTUA K. Delkis

Overview of the IESO-Administered Markets. IESO Training. Updated: January, Public

Operating the power system while enabling more renewables : which solutions?

Value of storage in providing balancing services for electricity generation systems with high wind penetration

Perspectives for ESS in Germany and Europe legal situation and applications StoREgio energy storage system association

Renewable and Alternative Energy Outlook

Full Scale Program for Renewable Energy in Egypt

ENTSO-E Network Code on Emergency and Restoration

Operational Security Network Code

Power Generation. Lilian Macleod Power Supply Manager National Grid

Optimizing Wind Generation in ERCOT Nodal Market Resmi Surendran ERCOT Chien-Ning Yu ABB/Ventyx Hailong Hui ERCOT

MARKET EVENT REPORT. Scheduling Error Affecting Dispatch of Mintaro Gas Turbine Station. Electricity Market Operations Performance PREPARED BY:

ALSTOM Energy Management Business. Challenges related to Smart Energy Eco Systems

Energy Management in the Greek Islands

Transmission Pricing. Donald Hertzmark July 2008

Transmission Planning in the ERCOT Interconnection

Electric Energy Storage. Opportunities and Challenges in New York

Two Settlement - Virtual Bidding and Transactions

ENTSO-E Network Code on Emergency and Restoration

Operating Hydroelectric and Pumped Storage Units In A Competitive Environment

FACT SHEET. BSES, Delhi - Distribution Network. Power Systems Consultancy from ABB

Curtailment of renewables and its impact on NTC and storage capacities in 2030

How To Understand The Benefits Of The French Power Market Plan

WINTER OUTLOOK REPORT 2014/15 AND SUMMER REVIEW December 2014

How To Make A Harmonised Power Control System Work

Digital Metering: a key enabling factor to foster RES development

Electricity in Egypt

Final Draft Framework Guidelines on Capacity Allocation and Congestion Management for Electricity Ref: E10-ENM February 2011

Methodology for Merit Order Dispatch. Version 1.0

Economic Potential of the Power-to-Heat Technology in the 50Hertz Control Area

European Distribution System Operators for Smart Grids. Flexibility: The role of DSOs in tomorrow s electricity market

Cooperation between 50Hertz and ČEPS A stable basis for European Infrastructure

Multi-Faceted Solution for Managing Flexibility with High Penetration of Renewable Resources

Grid of the Future. Integration of Renewables Energy Storage Smart Grid. Presentation by David Hawkins Lead Renewables Power Engineer Grid Operations

Wind-Diesel Hybrid System Options for Alaska. Steve Drouilhet National Renewable Energy Laboratory Golden, CO

Toward standards for dynamics in future electric energy systems The basis for plug and play industry paradigm

General Validation Test Program for Wind Power Plants Connected to the Hydro-Québec Transmission System

Reclamation Manual Directives and Standards

Hedging with FTRs and CCfDs Introduction

Venteea A Smart Grid demonstrator for the DRES integration on the MV distribution networks.

Integrating distributed generation into electric power systems: A review of drivers, challenges and opportunities

ESRI Research Note. The Irish Electricity Market: New Regulation to Preserve Competition Valeria di Cosmo and Muireann Á. Lynch

Integration of Renewable Resources

RENEWABLE ENERGY IN AUSTRALIA

A vision of sustainable energy future: A multi-energy concept of smart energy systems Central European Student and Young Professionals Congress

CERTS Microgrid Research and Lessons Learned

Design and Operation of Power Systems with Large Amounts of Wind Power, first results of IEA collaboration

Brief review of Spanish Ancillary services scheme Renewable energy in Spain today Challenges integrating renewable energy nowadays Wind forecast and

ENTSO-E Working Draft Network Code on Emergency and Restoration

Guidelines for Monthly Statistics Data Collection

ATTACHMENT G. Network Operating Agreement

SUPPORTING PAPER FOR THE OPERATIONAL SECURITY NETWORK CODE FOR PUBLIC CONSULTATION

The South African Grid Code

Comparison of CO 2 Abatement Costs in the United States for Various Low and No Carbon Resources. Total System Levelized Cost Based on EIA LCOE

Grid codes for renewable energy integration

Transcription:

Priority Dispatch in Real Time Operation Marie Hayden

Presentation Reasons for dispatching units with Priority Dispatch Changes in approach with SEM-62

Who has Priority Dispatch Today? Unit Type MW Interconnector Trading Units 450 Peat 344 CHP 170 Hydro 217 Windfarms 1,935 TOTAL 3,116MW

Reasons For Dispatching PD Units Managing Demand ~ Supply Balance Supply must equal demand at all times All Island Demand Ranges from 2400MW 7000MW Manage System Inertial Stability No more than 50% of Generation can be supplied by Non Synchronous Generation Units All Island Non Synchronous Generation totals 2385MW today Constraints Prevent Transmission Lines from breaching Design Limits for Voltage & Current

Example - Curtailment At 4:00am tomorrow system demand will be 3000MW Available Priority Dispatch will make up 1700MW Of this Non-Synchronous PD 1300MW 50% Rule does not apply Constrained on Conventional Generation 1350MW There is enough room for all Priority Dispatch units There should be little or no CURTAILMENT of Priority Dispatch units tonight With high levels of wind there may be CONSTRAINTS in parts of the country

Example - Constraints Managing System Constraints Control Centre constantly monitor Contingency Analysis Software in real time Software tells them if any item of plant is at risk of operating outside of its design limits The snapshot on the following slide was taken at 10:00 this morning It indicates a need to constrain generation which feeds into the network North of Cathaleen s Fall

Screens at 11:00 Control Centre dispatched down wind units which impacted on the constraint Manual Pro-Rata calculation Applied via a dispatch program

Real Time Power Flow

SEM-011-62 Decision Key Messages of the Decision from a Dispatch Perspective: TSOs should only dispatch down Priority Dispatch for system security reasons A specific order is to be utilised when choosing between different types of units with Priority Dispatch Order of Priority Dispatch Interconnector via Counter Trading (NEW ) Peat Hybrid CHP/Biomass/Hydro Windfarms (New Order) Interconnector via NTC reduction Hydro (Flood Risk)

Interconnector Flows Counter Trading Flows on Interconnectors are determined by the SEM Market Schedule Day Ahead Control Room assess in advance if it is likely that PD units will need to be dispatched down Where this seems likely they will attempt to Counter Trade Counter Trading on the Interconnector to preserve Priority Dispatch Previously counter trading was only used to manage system security Now TSOs will counter trade before dispatching down priority dispatch units Counter Trading with National Grid is only available on a firm basis 2 hours before real time Power Exchange options being investigated

Interconnector Flows Net Transfer Capacity Reduction EU Directive on Congestion Management states that capacity can only be reduced by a TSO if there is a system security constraint Capacity (NTC) Reduction is not allowed if internal redispatch resolves the issue

Wind Unit Dispatch Order in which wind units are dispatched down Previously Market Classification was used Variable Price Takers (VPTs) were dispatched down before Autonomous Now based solely on controllability All wind units lie in one of three categories

Controllable Wind Units Level 1 Units: Should be controllable but are not Have previously passed controllability testing but not working Level 2 Units: These units have Working Active Power Dispatch controls Valid Availability Signal Level 3 Units: Units not required to be controllable Are exempt e.g. Pre-Gate or Less than 5MW Are still undergoing commissioning TEMPORARY SITUATION Units which were allowed onto the system with controls untested This backlog will be cleared by end of 2012

EirGrid TSO Wind Dispatch Program Key Features Allows simultaneous dispatch of selected wind units for Curtailment Purposes Does pro-rata calculations to apportion curtailment on the basis of Availability Differentiates between Level 2 and Level 3 units

Where Can I Find Out More? The TSOs recently published two papers which explain in more detail how SEM 62 is being implemented

QUESTIONS WILL BE TAKEN AFTER NEXT PRESENTATION THANK YOU FOR LISTENING