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EE504.53 1
OBJECTIVE
• Derive an equation for the insulation resistance of a cable
EE504.53 2
Known to Unknown
Resistance of a conductor in terms of its specific resistance,
length and cross-sectional area is
a
l


R
EE504.53 3
Insulation Resistance of a Cable
• The cable conductor is provided with a suitable thickness
of insulation material.
• Insulating material prevents leakage current.
• The path for the leakage current is radial through the
insulation.
• The opposition offered by insulation to leakage current is
known as insulation resistance of the cable.
• The insulation resistance should be very high.
EE504.53 4
Insulation Resistance of a Cable
Let
• r1 = conductor radius in metres
• r2 = internal sheath radius in metres
•  = resistivity of the insulation in  - metres
• l = length of the cable
• Consider a single core cable
Fig.1
EE504.53 5
Insulation Resistance of a Cable
• Consider a very small layer of insulation of thickness dx at a
radius x.
• The length through which leakage current flows is dx.
• Area of cross-section offered to leakage current is
Fig.2
2 xl

EE504.53 6
Insulation Resistance of a Cable
• Insulation resistance of considered layer is,
ix
length
R
area
resistivity
 
  
 
ix
dx
R
2 x l


 
  
 
EE504.53 7
Insulation Resistance of a Cable
• Insulation resistance of the whole cable is,
2
i
1
dx
R
2
r
r x l


 
  
 


 2
1
2
r
r x
dx
l


EE504.53 8
Insulation Resistance of a Cable
2
1
i log
2
R
r
r
x
l
e



1
2
i log
2
R
r
r
l
e




Insulation resistance of a cable is inversely
proportional to its length.


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EE504.53.ppt

  • 1. EE504.53 1 OBJECTIVE • Derive an equation for the insulation resistance of a cable
  • 2. EE504.53 2 Known to Unknown Resistance of a conductor in terms of its specific resistance, length and cross-sectional area is a l   R
  • 3. EE504.53 3 Insulation Resistance of a Cable • The cable conductor is provided with a suitable thickness of insulation material. • Insulating material prevents leakage current. • The path for the leakage current is radial through the insulation. • The opposition offered by insulation to leakage current is known as insulation resistance of the cable. • The insulation resistance should be very high.
  • 4. EE504.53 4 Insulation Resistance of a Cable Let • r1 = conductor radius in metres • r2 = internal sheath radius in metres •  = resistivity of the insulation in  - metres • l = length of the cable • Consider a single core cable Fig.1
  • 5. EE504.53 5 Insulation Resistance of a Cable • Consider a very small layer of insulation of thickness dx at a radius x. • The length through which leakage current flows is dx. • Area of cross-section offered to leakage current is Fig.2 2 xl 
  • 6. EE504.53 6 Insulation Resistance of a Cable • Insulation resistance of considered layer is, ix length R area resistivity        ix dx R 2 x l         
  • 7. EE504.53 7 Insulation Resistance of a Cable • Insulation resistance of the whole cable is, 2 i 1 dx R 2 r r x l             2 1 2 r r x dx l  
  • 8. EE504.53 8 Insulation Resistance of a Cable 2 1 i log 2 R r r x l e    1 2 i log 2 R r r l e     Insulation resistance of a cable is inversely proportional to its length. 