Substitute intoEq. (21.54):
Yts¼j
77 : 586
ln
Rb
Ra
¼j^77 :^586
ln
0 : 0452
0 : 0153
¼j 71 : 8169 mS=mile
21.1.3 Line Segment Models
21.1.3.1 Exact Line Segment Model
The exact model of a three-phase line segment is shown in Fig. 21.11. For the line segment in Fig. 21.11,
the equations relating the input (noden) voltages and currents to the output (nodem) voltages and
currents are
½VLGabcn¼½a½VLGabcmþ½b½Iabcm (21:55)
½Iabcn¼½c½VLGabcmþ½d½Iabcm (21:56)
where
½¼a ½U
1
2
½Zabc½Yabc (21:57)
½¼b ½Zabc (21:58)
½c¼½Yabc
1
4
½Zabc½Yabc^2 (21:59)
½¼d ½U
1
2
½Zabc½Yabc (21:60)
In Eqs. (21.57) through (21.60), the impedance matrix [Zabc] and the admittance matrix [Yabc] are
defined earlier in this document.
Sometimes it is necessary to determine the voltages at nodemas a function of the voltages at noden
and the output currents at nodem. The necessary equation is
½VLGabcm¼½A½VLGabcn½B½Iabcm (21:61)
where
½¼A ½þU
1
2
½Zabc½Yabc
1
(21:62)
Node NNNNNN n
Vagn
Vcgn
Zaa
Zbb
Zcc
Zca
Zbc
[Yabc]
[ICabc]n [ICabc]m
1
2
Zab
Icn
Ibn
Ian
Icm
Ibm
Iam
Vbgn
Node m
Vagm
Vcgm
Vbgm
1
2 [Yabc]
+
+
+
+
+
+
FIGURE 21.11 Three-phase line segment model.