Meter Based Technical Data Collection

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Transcription:

Metering International Conference Europe 9 to 11 October 2012, Amsterdam Meter Based Technical Data Collection Marcus Tyle Manager Metering Systems Strategy Energex Limited, Australia

Summary ENERGEX Energex Metering Multifunction Meters Systems Architecture SmartGrid Initiatives Information Management System Standards Closing remarks Questions.

ENERGEX Ltd Distribution Electricity Utility based in Brisbane, Southeast Queensland, Australia. 1.5 million customers 2.2 million meters

Energex Metering Systems and infrastructure strategy, development and support for both manual and remote read meters Regulated revenue metering in Energex manual register read SmartGrid Projects with metering technical data - load and PQ remote reading and system management Unregulated National Electricity Market Type 1-4 - remotely read nationally SmartGrid initiatives supported: Expand technical data collection into the LV network Assess new technologies in data collection Reduce Peak Demand Growth Improve load control Collect and provide technical data Analytic tools to improve performance

Multifunction Meters for Network Meters were revenue based - load data and status flags Manual read or remote (Itron MVRS / MV90/IEE) Using meter functionality to support concurrently revenue and technical monitoring roles Meter configuration. Load Survey 1 Revenue: (15 or 30 min load profile) Load Survey 2 Technical: Phase based V, I, p.f. (1 min & 10 min profile) Exception reporting of events IP Communications method chosen to suit function latency

Multifunction Meters Multifunction meters measure: voltage & current phase angles outages, sags & swells harmonics and waveforms multi channel profiling energy import/export Providing Network Information: Peak Demand Reduction Power Quality Management voltage, PF, harmonics (PQ Class B functionality) Phase balancing Planning Network efficiency & improvement Asset Utilisation Embedded Generation

Multifunction Metering & Network Performance Metering as network monitors Class 1 accuracy suitable for Tx monitors Cost effective with modem power supply Technical data measurement (instantaneous & interval) IP communications All sites IP over GPRS Technical data collection Meter Management Systems (MMS) Data collection, alarms, events and asset management Metering Headend - In house system design & build Stage 2 - migrate to CIM standard subject to industry trend Handover point of truth from metering to network data domain.

SYSTEM ARCHITECTURE Knowledge Applications DMS and DMA Analytic Apps Network Data Warehouse via Operational Data Bus Revenue Data Collection Warehousing & Settlements (MDM) Metering Head End Technical Data Collection, Control, Data Store Meter Mgt System Network Devices Head End SCADA Manually Read Remote reading of revenue & technical data Intelligent Multifunction Meters Intelligent Network Devices HAN / IHDs

SmartGrid Architecture Example

SmartGrid Initiates Rollout of Transformer Monitoring - Meters New transformers >100kVA Retrofit program replacing Maximum Demand Indicators PQ Class B Monitoring to all Zone Substations 5000 Tx monitors (Class 1 meters) new and retrofit in 2012/2013 Trial Power Line Carrier (PLC) data collection and control Prime Meters Focus on communications performance LV underground and overhead Airconditioning compressors cycling reduce peak demand Audio frequency (decabit) based controllers to manage cycling.

18/11/2010 0:00 18/11/2010 4:48 18/11/2010 9:36 18/11/2010 14:24 18/11/2010 19:12 19/11/2010 0:00 19/11/2010 4:48 19/11/2010 9:36 19/11/2010 14:24 19/11/2010 19:12 20/11/2010 0:00 Wh TX monitoring Data Analytics 50 kw 45 kw 40 kw 35 kw 30 kw 25 kw 20 kw 15 kw 10 kw 5 kw kw Transformer 200kVA SP3612 Phase Balance????? Time

SmartGrid Trials Trial Static Var Compensator (Statcom) technology to Improve power quality on LV networks Customer PV voltage rise during low demand Determine implementation of Distributed Energy Resources (DER) Trial network & customer battery storage with SVC Manage peak demand - LV feeder and customer Improve voltage regulation through VAR management Develop new LV topologies and configuration for DER Determine economics of network battery storage Simulate the effect of EV charging on LV networks

OFFSET FROM TFR TERMINALS OFFSET FROM TFR TERMINALS DER on Network Voltage LV RADIAL VOLTAGE PROFILE LV RADIAL VOLTAGE PROFILE 7.0% 6.0% 5.0% 4.0% 3.0% 2.0% 1.0% 0.0% -1.0% -2.0% -3.0% -4.0% -5.0% -6.0% -7.0% 0.6% 0.0% Vhv Vlv V1 V2 V3 V4 V5 V6 V7 V8 V9 V10 Vavg -0.8% -1.4% -2.0% -2.6% -3.0% -2.9% -3.4% -3.7% -3.9% -4.0% -4.1% 7.0% 6.0% 5.0% 4.0% 3.0% 2.0% 1.0% 0.0% -1.0% -0.6% -2.0% -3.0% -4.0% -5.0% -6.0% -7.0% 3.9% 4.1% 4.3% 4.3% 3.5% 3.1% 3.0% 2.7% 2.1% 1.5% 0.8% 0.0% Vhv Vlv V1 V2 V3 V4 V5 V6 V7 V8 V9 V10 Vavg At evening peak No compensation With 30kW PV generation & minimum loads. 1x20kvar compensation

Key Issues - Information Management Increased end to end systems complexity Multidiscipline team (power engineering, communications, IT) System integration challenges Developing the tactical strategy and operationalizing within the organisation Meter Management Systems (MMS) Communications Infrastructure and data routing Interfacing to Corporate applications, work & asset management & CIS How is the data mastered and referenced in systems source of truth? Is the data accurate and reliable? How does ICT support OT Management and Governance? Metering asset management Increased testing and validation of meter data, configuration and firmware and communications Relationship association of equipment on site.

System Standards Information delivery from meter to network systems presents challenges Multiple device systems with various export formats? Standards for data interchange - Meter to network analytic systems? Should IEC61850 / DNP3 expansion into metering? Will Common Information Model Standard resolve data interchange challenges? Application of meter data collection standards ANSI C12.19 & 22 vs COSEM/DLMS vs Proprietary for technical data? Multiple vendors and devices support effectiveness? Common data storage structure with standardised data views? Simplified integration into corporate and analytic applications? Regulators defining localised Smart Metering functionality Fragmented markets impedes volume to price benefits

CLOSING REMARKS Regulators setting new benchmarks for Networks Quality of supply & reliability focus to demand mgt & reduced expenditure Network Performance requires: LV technical data for decision analysis to improve performance & costs Intelligent Electronic Devices (meters) providing the technical data Success requires: An integrated solution key to providing accurate, timely & reliable data. Strategy for data type, configuration, system integration & use cross business Proactive process ownership, governance & management of increased data volumes and type from LV system Multidiscipline expert technical team managing end to end solution Support for standards to simplify data transfer between systems Vendor support for change.

QUESTIONS? Contact information : Marcus Tyle Ph: +61734075464 Email: marcustyle@energex.com.au Skype: marcustyle1