Hoeveelheid
Stroom (I
)
L
(RMS)
Stroom (I
)
L
(DC)
Piekwaarde in spanning (V
F
C
Piekwaarde in stroom (I
F
)
C
L
Onbalans (u
)
2
Frequentie (F)
Geleverd actief vermogen (P
Verbruikt actief vermogen (P
Geleverd blindvermogen (Q
SL
Verbruikt blindvermogen (Q
LL
Schijnbaar vermogen (S
)
L
Niet-actief vermogen (N
)
L
PEL104
Vervormend vermogen
(D
)
L
PEL104
Vermogensfactor van de bron met bijbehoren-
de kwadrant (PF
)
SL
Vermogensfactor van de lading met bijbeho-
rende kwadrant (PF
)
LL
ϕ
Cos (
)
van de bron met de bijbehorende
L
S
kwadrant
ϕ
Cos (
)
van de lading met de bijbehorende
L
L
kwadrant
Φ
Tan
over de bron
S
Φ
Tan
over de lading
L
Harmonische vervormingsfactor van de span-
ning fase-nulleider THD_V
(%)
L
I
L
I
L
)
L
)
SL
)
LL
)
)
PF
ϕ
Cos(
L
Cos(
ϕ
ϕ
Tan(
Tan(
ϕ
)
THD
_
77
Formule
N
−
1
1
∑
2
[
agg
]
=
×
I
1 [
s
]
Lx
N
x
=
0
N
−
1
1
∑
[
agg
]
=
×
I
[
200
ms
]
Lx
N
x
=
0
N
1
∑
CF
[
agg
]
=
×
CF
[
] 1
s
VL
VL
N
1
N
1
∑
CF
agg
CF
s
[
]
=
×
1 [
]
IL
IL
N
1
N
1
∑
u
[
agg
]
=
×
u
1 [
s
]
2
2
N
1
N
−
1
1
∑
F
[
agg
]
=
×
F
1 [
s
]
x
N
x
=
0
N
−
1
1
∑
P
[
agg
]
=
×
P
1 [
s
]
SL
SLx
N
x
=
0
N
−
1
1
∑
[
]
1 [
]
P
agg
=
×
P
s
LL
LLx
N
x
=
0
N
−
1
1
∑
Q
[
agg
]
=
×
Q
1 [
s
]
SL
SLx
N
x
=
0
N
−
1
1
∑
Q
[
agg
]
=
×
Q
1 [
s
]
LL
LLx
N
x
=
0
N
−
1
1
∑
S
agg
S
s
[
]
=
×
1 [
]
L
Lx
N
x
=
0
L = 1, 2, 3 of T
L = 1, 2, 3 of T
N
−
1
1
∑
PF
[
agg
]
=
×
PF
1 [
s
]
SL
SLx
N
x
=
0
N
1
−
1
∑
[
agg
]
PF
1 [
s
]
=
×
LL
LLx
N
x
=
0
N
−
1
1
∑
ϕ
)
[
agg
]
=
×
Cos(
)
1 [
s
S
L
Sx
N
x
=
0
N
−
1
1
∑
)
[
agg
]
Cos(
ϕ
)
1 [
=
×
L
L
L
L
x
N
x
=
0
N
−
1
1
∑
ϕ
)
[
agg
]
=
×
Tan(
)
1 [
s
]
S
Sx
N
x
=
0
N
−
1
1
∑
[
agg
]
Tan(
ϕ
)
1 [
s
]
=
×
L
L
x
N
x
=
0
N
−
1
1
∑
V
[
agg
]
=
×
THD
_
V
1 [
s
L
Lx
N
x
=
0
]
s
]
]