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

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

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

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

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

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

INTERCONNECTION REQUEST FOR A LARGE GENERATING FACILITY

APPENDIX 1 to LGIP INTERCONNECTION REQUEST FOR A LARGE GENERATING FACILITY

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

PART 1 OWNER/APPLICANT INFORMATION

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

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

IDAHO PURPA GENERATOR INTERCONNECTION REQUEST (Application Form)

ENGINEERING DATA SUBMITTAL For the Interconnection of Generation System

APPENDIX B: Generation Interconnection Application Form

APPLICATION FOR INTERCONNECTION & OPERATIONS OF MEMBER-OWNED GENERATION

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

Connection Impact Assessment Application

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

Connection Impact Assessment Application Form

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

Impact Assessment Generator Form

Embedded Generation Connection Application Form

Embedded Generation Connection Application Form

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

Embedded Generation Connection Application Form

Form B. Connection Impact Assessment Application Form Distribution System

Sizing Generators for Leading Power Factor

Generator Advanced Concepts

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

Spec Information. Reactances Per Unit Ohms

TABLE OF CONTENT

TRANSFORMER OPERATION

STEADY STATE REACTANCE

GENERATOR DATA JANUARY 30, 2015

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

Electrical Theory. Power Principles and Phase Angle. PJM State & Member Training Dept. PJM /22/2018

AGN 034 Alternator Reactance

SYNCHRONOUS MACHINES

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

Generation Interconnection Study Data Sheet Synchronous Machines

Electrical Workstation Nvis 7089A

Spec Information. Reactances Per Unit Ohms

CHAPTER 2 ELECTRICAL POWER SYSTEM OVERCURRENTS

S0L1-J1 - Technical Data Sheet

Electrical Workstation Nvis 7089B

Aligarh College of Engineering & Technology (College Code: 109) Affiliated to UPTU, Approved by AICTE Electrical Engg.

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

Type KLF Generator Field Protection-Loss of Field Relay

440 (12) 416 (12) 416 (12) 440 (12)

QUESTIONNAIRE for Wind Farm Power Stations only

Code No: R Set No. 1

S4L1D-G41 Wdg Technical Data Sheet

S4L1S-D4 Wdg.17 - Technical Data Sheet

WDG 83 - Technical Data Sheet

PM734B - Technical Data Sheet. Generator Solutions AS

PI734C - Technical Data Sheet

Experiment 45. Three-Phase Circuits. G 1. a. Using your Power Supply and AC Voltmeter connect the circuit shown OBJECTIVE

PM734D - Winding 312. Technical Data Sheet APPROVED DOCUMENT. Generator Solutions AS

PM734F - Winding 312. Technical Data Sheet APPROVED DOCUMENT

Steven Carl Englebretson

PI734A - Technical Data Sheet

Application Guidance Notes: Technical Information from Cummins Generator Technologies

WDG 13 - Technical Data Sheet

PAPER-II (Subjective)

Level 6 Graduate Diploma in Engineering Electrical Energy Systems

PI734F - Winding 07. Technical Data Sheet APPROVED DOCUMENT

PI734F - Winding 28. Technical Data Sheet APPROVED DOCUMENT

PI734E - Winding 312. Technical Data Sheet APPROVED DOCUMENT

PI734C - Winding 312. Technical Data Sheet APPROVED DOCUMENT

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

PI734B - Winding 312. Technical Data Sheet APPROVED DOCUMENT

WDG 61 - Technical Data Sheet

Unit 3 Magnetism...21 Introduction The Natural Magnet Magnetic Polarities Magnetic Compass...21

Preface...x Chapter 1 Electrical Fundamentals

Conventional Paper-II-2013

WDG 51 - Technical Data Sheet

ALTERNATOR TECHNICAL DESCRIPTION 1. LSA 53.2 XL13 / 4p. Chargé d'affaire : Karthikeyan GN 1 Moteurs Leroy-Somer +33 (0) xx

WDG 12 - Technical Data Sheet

WDG 12 - Technical Data Sheet

CHIEF ENGINEER REG III/2 MARINE ELECTROTECHNOLOGY

Time constants ( s ) Resistance. Other data - Class H /6600 V kva. Efficiencies ( % )(3 phase - Classe H V kva)

WIND TURBINE CONNECTED TO THE ELECTRICAL NETWORK

SHRI RAMSWAROOP MEMORIAL COLLEGE OF ENGG. & MANAGEMENT

SECTION 3 BASIC AUTOMATIC CONTROLS UNIT 12 BASIC ELECTRICITY AND MAGNETISM. Unit Objectives. Unit Objectives 2/29/2012

WDG 12 - Technical Data Sheet

Dhanalakshmi Srinivasan Institute of Technology, Samayapuram, Trichy. Cycle 2 EE6512 Electrical Machines II Lab Manual

A Practical Guide to Free Energy Devices

General Information. * Required

WDG 71 - Technical Data Sheet

Single-Phase Transformation Review

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

WDG 12 - Technical Data Sheet

CHAPTER 3 EQUIVALENT CIRCUIT AND TWO AXIS MODEL OF DOUBLE WINDING INDUCTION MOTOR

WDG 07 - Technical Data Sheet

TEACHER ASSESSMENT BLUEPRINT ELECTRICAL CONSTRUCTION TECHNOLOGY. Test Code: 5171 Version: 01

SECTION 1 INTRODUCTION

ELG 4125: ELECTRICAL POWER TRANSMISSION AND DISTRIBUTION: TUTORIAL 1: - BY:

EE 340L EXPERIMENT # 3 SYNCHRONOUS GENERATORS

ELECTRICIAN S THEORY EXAMINATION 20 November 2010 QUESTION AND ANSWER BOOKLET

Thyristorised Automatic Power Factor

Transcription:

GENERATOR INTERCONNECTION APPLICATION FOR ALL PROJECTS WITH AGGREGATE GENERATOR OUTPUT OF MORE THAN 150 KW BUT LESS THAN OR EQUAL TO 550 KW Electric Utility Contact Information Detroit Edison Company Interconnection Coordinator One Energy Plaza, SB490 Detroit, Mi 48226 Interconnection Hotline: 313.235.4333 Interconnection Email: interconnect@dteenergy.com For Office Use Only Application No. Date & Time Application Received Customer / Account Information Electric Utility Customer Information: ( As shown on utility bill ) Customer Name ( Last, First, Middle): Customer Mailing Address: Customer E-Mail Address: ( optional ) Electric Service Account # Electric Service Meter Number: Are you interested in selling Renewable Energy Credits (REC's) Yes No Physical Site Service Address (if not Billing Address): Generation System Site Information Annual Site Requirements Without Generation in Kilowatthours Peak Annual Site Demand in Kilowatts (only for customers billed on demand rates) kwh/year kw/year Attached Site Plan: Page # Attached Electrical One-Line Drawing (See the Appendix D for a sample Inverter Type Project) Page # (Per MPSC Order in Case No. U-15787- The one-line diagram must be signed and sealed by a licensed professional engineer, licensed in the State of Michigan or by an electrical contractor licensed by the State of Michigan with the electrical contractor's license number noted on the diagram.) Synchronous/Induction Generators: Must fill out Appendix A or B and provide a Detail One-Line Diagram Page # See Appendix E and F for a sample the Detail One-Line Diagram for Synchronous or Induction projects Note: The following information on these system components shall appear on the preliminary Detail One-Line Diagram Breakers - Rating, location and normal operating status (open or closed) Buses - Operating voltage Capacitors - Size of bank in Kvar Circuit Switchers - Rating, location and normal operating status (open or closed) Current Transformers - Overall ratio, connected ratio Fuses - normal operating status, rating (Amps), type Generators - Capacity rating (kva), location, type, method of grounding Grounding Resistors - Size (ohms), current (Amps) Isolating transformers - Capacity rating (kva), location, impedance, voltage ratings, primary and secondary connections and method of grounding Potential Transformers - Ratio, connection Reactors - Ohms/phase Relays - Types, quantity, IEEE device number, operator lines indicating the device initiated by the relays. Switches - Location and normal operating status (open or closed), type, rating Tagging Point - Location, identification

GENERATOR INTERCONNECTION APPLICATION FOR ALL PROJECTS WITH AGGREGATE GENERATOR OUTPUT OF MORE THAN 150 KW BUT LESS THAN OR EQUAL TO 550 KW Generation System - Manufacturer Information System Type ( Solar, Wind, Biomass, Methane Digester, etc ): Generator Type ( Inverter, Induction, Synchronous ): Generator Nameplate Rating: Expected Annual Output in Kilowatthours A.C. Operating Voltage: Wiring Configuration ( Single Phase, Three Phase ): Certified Test Record No.(Testing to standard UL1741 scope 1.1a) kw kwh/year Inverter Based Systems: Manufacturer Model ( Name / Number ) Inverter Power Rating (kw) Induction & Synchronous Based Systems Manufacturer Model ( Name / Number ) Installation Information Project Single Point of Contact: ( Electric Utility Customer, Developer, or other ) Name: Company ( If Applicable ): Phone Number: E-Mail Address: Requested In Service Date: Licensed Contractor ( Name of Firm or Self ): Contractor Name ( Last, First, MI ): Contractor Phone #: Contractor E-Mail: Customer and Contractor Signature and Fees Attached $150 Interconnection Application Fee (Check #/ Money Order #) ( Sign and Return complete application with Application Fee to Electric Utility Contact ) To the best of my knowledge, all the information provided in this Application Form is complete and correct. Customer Project Developer/Contractor (If Applicable) Note: Refer to the applicable "Michigan Electric Utility Generator Interconnection Requirements" for a detailed explanation of the Interconnection Process, Fees, Timelines, and Technical Requirements.

APPENDIXES Appendix A: Technical Information for Synchronous-Type Generators Appendix B: Technical Information for Induction-Type Generators Appendix C: Sample Site Plan Appendix D: Sample One-Line diagram for Inverter Type Project Appendix E: Sample One-Line diagram for Synchronous Type Project Appendix F: Sample One-Line diagram for Induction Type Project

Appendix A Synchronous Generators Generator Information a. Generator Nameplate Voltage a. b. Generator Nameplate Watts or Volt-Amperes b. c. Generator Nameplate Power Factor (pf) c. d. RPM d. Technical Information e. Minimum and Maximum Acceptable Terminal Voltage e. f. Direct axis reactance (saturated) f. g. Direct axis reactance (unsaturated) g. h. Quadrature axis reactance (unsaturated) h. i. Direct axis transient reactance (saturated) i. j. Direct axis transient reactance (unsaturated) j. k. Quadrature axis transient reactance (unsaturated) k. l. Direct axis sub-transient reactance (saturated) l. m. Direct axis sub-transient reactance (unsaturated) m. n. Leakage Reactance n. o. Direct axis transient open circuit time constant o. p. Quadrature axis transient open circuit time constant p. q. Direct axis subtransient open circuit time constant q. r. Quadrature axis subtransient open circuit time constant r. s. Open Circuit saturation curve s. t. Reactive Capability Curve showing overexcited and underexcited limits (Reactive Information if non-synchronous) t. u. Excitation System Block Diagram with values for gains and time constants (Laplace transforms) u. v. Short Circuit Current contribution from generator at the Point of Common Coupling v. w. Rotating inertia of overall combination generator, prime mover, couplers and gear drives w. x. Station Power load when generator is off-line, Watts, pf x. y. Station Power load during start-up, Watts, pf y. z. Station Power load during operation, Watts, pf z.

Appendix B Induction Generators Generator Information a. Generator Nameplate Voltage a. b. Generator Nameplate Watts or Volt-Amperes b. c. Generator Nameplate Power Factor (pf) c. d.rpm d. Technical Information e. Synchronous Rotational Speed e. f. Rotation Speed at Rated Power f. g. Slip at Rated Power g. h. Minimum and Maximum Acceptable Terminal Voltage h. i. Motoring Power (kw) i. j. Neutral Grounding Resistor (If Applicable) j. k. I 2 2 t or K (Heating Time Constant) k. l. Rotor Resistance l. m. Stator Resistance m. n. Stator Reactance n. o. Rotor Reactance o. p. Magnetizing Reactance p. q. Short Circuit Reactance q. r. Exciting Current r. s. Temperature Rise s. t. Frame Size t. u. Design Letter u. v. Reactive Power Required in Vars (No Load) v. w. Reactive Power Required in Vars (Full Load) w. x. Short Circuit Current contribution from generator at the Point of Common Coupling x. y. Rotating inertia, H in Per Unit on kva Base, of overall combination generator, prime mover, couplers and gear drives y. z. Station Power load when generator is off-line, Watts, pf z. aa. Station Power load during start-up, Watts, pf bb. Station Power load during operation, Watts, pf aa. bb.

Appendix C Sample Site Plan

Appendix D Inverter Generators One - Line Diagram Name of the Licensed Contractor /PE Contractor License Number Address Signature

Appendix E (NotRequired for Flow-Back) One - Line Diagram Name of the Licensed Contractor /PE Contractor License Number Address Signature

Appendix F (NotRequired for Flow-Back) One - Line Diagram Name of the Licensed Contractor /PE Contractor License Number Address Signature