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EE544 Distribution Systems 1

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... Systems 1. Satish J Ranade. 1. Short Term Planning. Distribution System Modeling ... one- and two-way communication. Load. Load is described in terms of DEMAND ... – PowerPoint PPT presentation

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Title: EE544 Distribution Systems 1


1
EE544 Distribution Systems 1
  • Satish J Ranade

1
2
Short Term Planning
  • Distribution System Modeling
  • Load
  • Feeders
  • Analysis
  • Power flow
  • Back of the envelope
  • Power Flow Algorithms
  • Applications
  • Short Circuit
  • Motor Start
  • Application
  • Basic Planning Studies
  • Capacitor Application
  • Voltage Regulators
  • Project

3
Distribution Feeder
From Kersting Text
4
Distribution Feeder
From Kersting Text
5
Load
Load data comes from Customer
meter Substation The simplest customer meter
KWH Meter - measure ENERGY over a specific time
- Rotation of Induction Disk - Number of
rotations between reads proportional to
energy - Read Manually Demand Meter - records
rotation for uniform time intervals ( 15 or 30
min) Modern Meters ( Automatic Meter
Infrastructure) - Can record additional data -
one- and two-way communication
6
Load
Load is described in terms of DEMAND DEMAND
Energy KWH over demand interval / demand
interval Maximum Demand Highest Demand over
the demand intervals Average demand - Time
average demand, proportional to energy Energy
over billing cycle Average demand Intervals
in billing cycle Demand factor Ratio of
maximum demand to connected load Load Factor
Average demand/ Maximum demand Utilization or
plant factor Maximu demand/ Rated Service
Capacity
7
Demand Interval 15 min
8
Load
15 min Demand shown for 24 Hours ( 96
Points) DEMAND Energy KWH over demand interval
/ demand interval Maximum Demand Highest
Demand over the demand intervals Customer 1 2 3 4
Total 2.6 3.5 4.2 2.3 11.2 Note sum of max.
customer demand ? max. Total demand Average
demand -Customer 1 1.5 kW Daily Energy
1.5(15/60) 24 8.8 KWH Load Factor Average
demand/ Maximum demand 1.5/2.6 57 Utilization
or plant factor 1.5 / ( 200 AMP120/1000) 62.5
9
Load
15 min Demand shown for 24 Hours ( 96
Points) DEMAND Energy KWH over demand interval
/ demand interval Maximum Demand Highest
Demand over the demand intervals Customer 1 2 3 4
Total 2.6 3.5 4.2 2.3 11.2 Note sum of max.
customer demand ? max. Total demand Average
demand -Customer 1 1.5 kW Daily Energy
1.5(15/60) 24 8.8 KWH Load Factor Average
demand/ Maximum demand 1.5/2.6 57 Utilization
or plant factor 1.5 / ( 200 AMP120/1000) 62.5
10
Diversity
sum of max. customer demand ? max. Total
demand Diversified demand sum of customer
demand period by period Maximum Non-coincident
sum of max. customer demand without regard
to interval that each
customer peaks Max. Diversified demand is also
called max. coincident demand Diversity factor
max non-coincident demand 1.13 max.
diversified demand
11
Diversity
Diversity Table is from Kersting Text Origin
Unknown The other texts also have such tables but
specific numbers may be different At 60 customers
the DF saturates 3.2
12
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