Initial Application Form for Connection of Distributed Generation (>10kW)

Similar documents
IDAHO PURPA GENERATOR INTERCONNECTION REQUEST (Application Form)

Form B. Connection Impact Assessment Application Form Distribution System

NORTH CAROLINA INTERCONNECTION REQUEST. Utility: Designated Contact Person: Address: Telephone Number: Address:

QUESTIONNAIRE for Wind Farm Power Stations only

Generation Interconnection Study Data Sheet Synchronous Machines

GENERATOR INTERCONNECTION APPLICATION Category 5 For All Projects with Aggregate Generator Output of More Than 2 MW

Issued: September 2, 2014 Effective: October 3, 2014 WN U-60 Attachment C to Schedule 152, Page 1 PUGET SOUND ENERGY

GENERATOR INTERCONNECTION APPLICATION FOR ALL PROJECTS WITH AGGREGATE GENERATOR OUTPUT OF MORE THAN 2 MW

Impact Assessment Generator Form

ENGINEERING DATA SUBMITTAL For the Interconnection of Generation System

State of North Dakota Engineering data submittal Page 1 For interconnection of distributed generation to Otter Tail Power Company

INTERCONNECTION REQUEST FOR A LARGE GENERATING FACILITY

APPENDIX 1 to LGIP INTERCONNECTION REQUEST FOR A LARGE GENERATING FACILITY

Embedded Generation Connection Application Form

Embedded Generation Connection Application Form

Connection Impact Assessment Application

Embedded Generation Connection Application Form

OPERATING, METERING AND EQUIPMENT PROTECTION REQUIREMENTS FOR PARALLEL OPERATION OF LARGE-SIZE GENERATING FACILITIES GREATER THAN 25,000 KILOWATTS

APPENDIX B: Generation Interconnection Application Form

Level 6 Graduate Diploma in Engineering Electrical Energy Systems

Connection Impact Assessment Application Form

SOUTH CENTRAL INDIANA REMC Application for Operation of Member-Owned Small Power Generation Systems

GENERATOR INTERCONNECTION APPLICATION Category 3 For All Projects with Aggregate Generator Output of More Than 150 kw but Less Than or Equal to 550 kw

Course ELEC Introduction to electric power and energy systems. Additional exercises with answers December reactive power compensation

GENERATOR INTERCONNECTION APPLICATION FOR ALL PROJECTS WITH AGGREGATE GENERATOR OUTPUT OF MORE THAN 150 KW BUT LESS THAN OR EQUAL TO 550 KW

Remotes Case 2&3 Form REINDEER Cases 2&3 -Connection Impact Assessment (CIA) Application

Owner/Customer Name: Mailing Address: City: County: State: Zip Code: Phone Number: Representative: Address: Fax Number:

Distributed Generation Application Form (Generation of Greater than 20 kw to 15 MW)

Simulations of open phase conditions on the high voltage side of YNd05-power plant transformers

EASTERN ILLINI ELECTRIC COOPERATIVE Application for Operation of Member-Owned Generation

OPERATING, METERING, AND EQUIPMENT PROTECTION REQUIREMENTS FOR PARALLEL OPERATION OF LARGE-SIZE GENERATING FACILITIES GREATER THAN 2,000 KILOWATTS

BE Semester- VI (Electrical Engineering) Question Bank (E 605 ELECTRICAL POWER SYSTEM - II) Y - Y transformer : 300 MVA, 33Y / 220Y kv, X = 15 %

ECE 422/522 Power System Operations & Planning/Power Systems Analysis II 5 - Reactive Power and Voltage Control

PART 1 OWNER/APPLICANT INFORMATION

Revision Control. 0 18/07/2012 Initial Document Creation. STAKEHOLDERS The following positions shall be consulted if an update or review is required:

If any queries arise ESB Networks DAC can be contacted at or

Spec Information. Reactances Per Unit Ohms

each time the Frequency is above 51Hz. Continuous operation is required

Cork Institute of Technology. Autumn 2008 Electrical Energy Systems (Time: 3 Hours)

General Information. * Required

AGN 034 Alternator Reactance

SAMPLE EXAM PROBLEM PROTECTION (6 OF 80 PROBLEMS)

Numbering System for Protective Devices, Control and Indication Devices for Power Systems

APPLICATION FOR INTERCONNECTION & OPERATIONS OF MEMBER-OWNED GENERATION

Fault Ride Through Principles. and. Grid Code Proposed Changes

GENERATOR DATA JANUARY 30, 2015

Setting and Verification of Generation Protection to Meet NERC Reliability Standards

UNIVERSITY OF SWAZILAND MAIN EXAMINATION, DECEMBER 2016

AGN 165 Parallel Operation with Mains Grid Systems

System Protection and Control Subcommittee

Training Fees 4,000 US$ per participant for Public Training includes Materials/Handouts, tea/coffee breaks, refreshments & Buffet Lunch.

R10. III B.Tech. II Semester Supplementary Examinations, January POWER SYSTEM ANALYSIS (Electrical and Electronics Engineering) Time: 3 Hours

, ,54 A

Application Guidance Notes: Technical Information from Cummins Generator Technologies

System Stability and Virtual Synchronous Machines. Why we need grid forming converters, and the metrological challenges of incentivising them.

SYNCHRONOUS MACHINES

NERC Protection Coordination Webinar Series June 16, Phil Tatro Jon Gardell

Code No: R Set No. 1

DATA REGISTRATION CODE (DRC) CONTENTS. (This contents page does not form part of the Grid Code)

Shortcomings of the Low impedance Restricted Earth Fault function as applied to an Auto Transformer. Anura Perera, Paul Keller

Spec Information. Reactances Per Unit Ohms

CONTENTS. 1. Introduction Generating Stations 9 40

DATA REGISTRATION CODE CONTENTS. (This contents page does not form part of the Grid Code) DRC.1 INTRODUCTION... 1 DRC.2 OBJECTIVE...

Design a Power System Simulator Model and Implement the Generator and Motor Controlling

GX 340 SERIES (AUTOMATIC VOLTAGE REGULATOR)

Company Directive STANDARD TECHNIQUE: SD7F/2. Determination of Short Circuit Duty for Switchgear on the WPD Distribution System

Revision 32 of Issue 3 of the Grid Code has been approved by the Authority for implementation on 8 th December 2008.

Connection of Embedded Generating Plant up to 5MW

Facility Interconnection Requirements for Colorado Springs Utilities Version 03 TABLE OF CONTENTS

NERC Requirements for Setting Load-Dependent Power Plant Protection: PRC-025-1

IJSER. Fig-1: Interconnection diagram in the vicinity of the RajWest power plant

POWER POTENTIAL: DISTRIBUTED ENERGY RESOURCES (DER) TECHNICAL SPECIFICATIONS GUIDANCE FOR PROVISION OF REACTIVE AND ACTIVE POWER SERVICES

VOLTAGE STABILITY OF THE NORDIC TEST SYSTEM

STEADY STATE REACTANCE

148 Electric Machines

System Protection and Control Subcommittee

The Advantages and Application of Three Winding Transformers

Revision 1 of Issue 4 of the Grid Code has been approved by the Authority for implementation on 10 th February 2010.

EH2741 Communication and Control in Electric Power Systems Lecture 2

MEASUREMENT CAMPAIGN AND ASSESSMENT OF THE QUALITY OF SUPPLY IN RES AND DG FACILITIES IN SPAIN

NERC Protection Coordination Webinar Series June 23, Phil Tatro

Imperial Irrigation District System Planning ATTACHMENT A

Power Plant and Transmission System Protection Coordination Fundamentals

Regional Technical Seminar TAP CHANGERS

New HVDC Interaction between AC networks and HVDC Shunt Reactors on Jeju Converter Stations

Intermittent Renewable Resources (Wind and PV) Distribution Connection Code (DCC) At Medium Voltage (MV)

Beskrivelse av simuleringsmodell ==> Description of simulation model

How Full-Converter Wind Turbine Generators Satisfy Interconnection Requirements

Analysis of Temporary Over-Voltages from Self-Excited Large Induction Motors in the Presence of Resonance - Case Studies

Chapter 2: Transformers

TABLE OF CONTENT

Var Control. Adding a transformer and transformer voltage regulation. engineers loadflow program. The control system engineers loadflow.

NERC Protection Coordination Webinar Series June 9, Phil Tatro Jon Gardell

Target Mchunu and Themba Khoza Eskom Transmission Division, System Operator Grid Code Management

Grid Code Violation during Fault Triggered Islanding of Hybrid Micro-grid

In Class Examples (ICE)

Design, Implementation, and Dynamic Behavior of a Power Plant Model

Power Plant and Transmission System Protection Coordination of-field (40) and Out-of. of-step Protection (78)

SRI VIDYA COLLEGE OF ENGG AND TECH

Transient stability improvement by using shunt FACT device (STATCOM) with Reference Voltage Compensation (RVC) control scheme

Transcription:

Please complete the following information and forward to Vector Contact Details Primary Contact (who we should contact for additional information) Contact person Company name Contact numbers Daytime: Cell phone: Email address Fax: Postal address Secondary Contact Contact person Company name Contact numbers Daytime: Cell phone: Email address Fax: Postal address Site Details Electricity Retailer Customer ICP number Site address of proposed generator Proposed Installation Dates Proposed key dates for connection to Vector s electricity network Vector Limited Page 1 of 5

System Specifications (for all generation >10kW) Generating Plant Data Terminal volts (kv) Rated kva Rated kw Maximum active power sent out (kw max) Reactive power requirements (kvar), if any Power Factor at maximum kw Vector Group Type of generating plant (e.g. synchronous, asynchronous) Type of prime mover Anticipated operating regime of generation e.g. continuous, intermittent, peak lopping Fault level contribution (for large machines this may be covered in the detailed specifications below) Method of voltage control Generator transformer details, as applicable Fuel type Requirements for top-up supplies and/or standby supplies Interface Arrangements The means of synchronisation between the Distribution Network and the Generator Details of arrangements for connecting with earth that part of the Generator s system directly connected to the distribution system The means of connection and disconnection which are to be employed Ability of plant to backfeed the external system Protection equipment, protection schemes and protection setting Precautions to be taken to ensure the continuance of safe conditions should any earthed neutral point of the Generator s system operated at HV become disconnected from earth Vector Limited Page 2 of 5

Detailed Specifications For distributed generators connected at voltages equal to or greater than 6.6kV or of capacity 1MW or greater, please also complete the following information: Technical Data Generating plant information (impedances p.u. on rating) Type of prime mover Rated MVA Rated MW Generator MW/MVAr capability chart (at terminals) Type of excitation system Inertia constant MW secs/mva (whole machine) Stator resistance Direct axis reactances - Transient - Synchronous Quadrature axis reactances - Synchronous Time constants - Direct axis Transient - Direct axis Sub-Transient - Quadrature Axis Transient - Quadrature Axis Sub- Transient Open or short Zero sequence (stating either circuit time constant) - Resistance - Reactance Negative sequence - Resistance - Reactance Vector Limited Page 3 of 5

Generator transformer - Resistance (RI, Rø) - Reactance (XI, Xø) - MVA Rating - Tap arrangement - Vector group - Earthing Automatic voltage regulator A block diagram for the model of the AVR system including the data on the forward and feedback gains, time constants and voltage control limits Speed governor and prime mover data A block diagram for the model of the generating plant governor detailing the governor flyball, if applicable, and system control and turbine time constants, together with the turbine rating and maximum power The means of synchronisation between the Distribution Network and the Generator Details of arrangements for connecting with earth that part of the Generator s system directly connected to the distribution system The means of connection and disconnection which are to be employed Ability of plant to backfeed external system Protection equipment and protection setting Precautions to be taken to ensure the continuance of safe conditions should any earthed neutral point of the Generator s system operated at HV become disconnected from earth Vector Limited Page 4 of 5

Capacity and standby requirements Registered capacity and minimum generation of each generating unit and power station in MW Generating unit and power station auxiliary demand (active power and reactive power) in MW and MVAr, at registered capacity conditions. For Users with own generation, this should include top-up requirements. Generating unit and power station auxiliary demand (active power and reactive power) in MW and MVAr, under minimum generation conditions. For Users with own generation, this should include top-up and standby requirements. Further information required by Transpower Generators with large machines may be subject to the Transpower Connection Code, part C of the Electricity Governance Rules and central dispatch. Where this applies any information supplied to Vector, and any further information requested by Transpower will be forwarded to Transpower. It will be the responsibility of the Generator to provide the information required to Vector. Vector will pass on the information to Transpower. There may also be information required under the terms of any Transpower contract in respect of the transfer of energy from the Generator to the Generator s Customer. Applicant Signature Name Signature Date Vector Limited Page 5 of 5