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Training Examples

ZIV Trans (002).png

Example 3

Whole System Operation

 

Energy Balancing - VPP

Anchor 1

Training Example - Whole System Operation (Transmission)

Whole System Operation

Balancing -Virtual Power Plant

Transmisssion led curtailment

Intertripping


 

ANM - Level 1 Controller

Square_Highlight.png

ANM - Level 2 Controller

Square_Highlight.png
Square_Highlight.png

ANM - Level 3 Controller

Square_Highlight.png

ANM - Level 4 Controller

Transmission Operator

Learning Objectives
Anchor 2
Energy Market

Distribution

DER

Consumer

Level 4 - Enterprise

ZOOM_Main_Model_Level_3A_edited.jpg

Level 2 - Substation

Primary_Substation_GSP_External_v100.jpg

RTU

SCADA

ANM

Level_3_Control_Room_HD.png

Level 3 - Control Centre

Level 1 - Field

BESS_Control_v102.jpg

L1

DER 

L-1

DER 

City_1_0070.jpg

Trade

Market

L-1

DER 

EMS

PAS

Transmission

Example Network Overview - Embedded DERs

DERs are located at these locations

Ex2_Net_MOdel_A.png
Generators.png
DER_Tech_Dashboard.png
Generator Locations
DER_Ops_Dashboard.png
DER Operations
DNO_ANM_Dashboard.png
DNO Operations
Ex2_Net_MOdel_B.png
Anchor 3
Anchor 4

DER Prediction

Network Forecast

Flexibility Market

Future Constraint

Market Module

Aggregator

Weather

Predictor

Calendric

Geographic

Historical Data

Market

Outage Plan

Realtime

DER

Realtime Control

Anchor 5
Anchor 6
Anchor 7
Anchor 8

Flexibility Market Process

DER Prediction

Network Forecast

Flexibility Market

Future Constraint

Weather

Predictor

Calendric

Geographic

Historical Data

Outage Plan

Market Module

Aggregator

Anchor 9

Scenario 3 - SCADA control under dynamic conditions

Enable Dynamic Conditions

Observe Thermal Violations

Discuss how to remove overload ( POA)

 

Reverse Powerflows
Gen_Reverse_Flow.png
Remote Mode On/Off
Forward Powerflows
DEmand_Forward_Flow.png
Remote Mode Setpoint
Reverse Flow
Combined Powerflows
Combined_Powerflow.png
Reverse Flow
Reverse Flow

Scenario 4 - Automated control under dynamic conditions

Disable SCADA Mode for each DER

Enable ANM Mode on each DER

Enable ANM Master Control 

Discuss LIFO Stack ( POA)

 

DNO_ANM_Dashboard.png
Switch SCADA to ANM
DNO_ANM_Dashboard.png
Enable ANM Master Mode
Anchor 10

Scenario 5 - Thermal Constraint Mangement  [ Network Changes ]

Open Breaker(s) to create overloads

Change Demands

Change LIFO Stack Positions



 

Network Diagram.png
ANM_Open_Breakers_1.png
Open Breakers 1
Network Diagram.png
ANM_Open_Breakers_2.png
Open Breakers 2
Anchor 11

Scenario 5 - Thermal Constraint Mangement  [ Topology ]

Network Diagram.png
ANM_Open_Breakers_0.png
ANM_Open_Breakers_2.png
Open Breakers 1
ANM_Open_Breakers_0.png
Open Breakers 2
ANM_Open_Breakers_2.png
Open Breakers 3
ANM_Open_Breakers_3.png
Open Breakers 4
Anchor 12

Scenario 5 - Thermal Constraint Mangement  [ Demands ]

Network Diagram.png
ANM_Open_Breakers_0.png
ANM_Open_Breakers_2.png
Demands 1
ANM_Open_Breakers_0.png
Demands 2
ANM_Open_Breakers_2.png
Demands 3
ANM_Open_Breakers_3.png
Demands 4
Anchor 13

Scenario 5 - Thermal Constraint Mangement  [ POA (LIFO) ]

Network Diagram.png
ANM_Open_Breakers_0.png
ANM_Open_Breakers_2.png
POA 1
ANM_Open_Breakers_0.png
POA 2
ANM_Open_Breakers_2.png
POA 3
ANM_Open_Breakers_3.png
POA 4
Anchor 14

Network Analysis Engine - Basic Concepts (Voltage)

Network Diagram.png
Breakers.png
Breaker Modelling
Demands_1.png
Realtime Demands ( P/Q/A) from SCADA
Breaker Modelling
Demands_2.png
Breaker Modelling
Network Busbar Voltages
Voltage_Levels.png
Voltage Issues
Anchor 15
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