Variable Comparison of - Modelica.Electrical.Analog.Examples.DemonstrateLightning
LEGEND
REFERENCE CURRENT COMMENT
common variable, active after filtering variable present in both simulations and active for csv/mat comparison
common variable, inactive after filtering variable present in both simulations and not active for csv/mat comparison
variable exists only in Reference variable only in reference simulation and active after filtering
variable exists only in Reference variable only in reference simulation and inactive after filtering
variable exists only in Current variable only in current simulation and active after filtering
variable exists only in Current variable only in current simulation and inactive after filtering

ONLY VARIABLES WHICH ARE PRESENT IN BOTH SIMULATIONS AND ARE ACTIVE AFTER FILTERING (green) CAN/WILL BE USED FOR CSV AND MAT COMPARISON.
VARIABLES WHICH ARE ONLY PRESENT IN ONE SIMULATION HAVE NO EFFECT FOR FURTHER COMPARISON TASKS (no matter if active or inactive).

No. REFERENCE CURRENT
1 der1.y
2 der2.y
3 integrator2.y
4 integrator1.y
5 currentSensor1.i
6 currentSensor2.i
7 lightning1.der(v)
8 der1.der(u)
9 resistor1.n.i
10 resistor2.p.v
11 lightning1.offset
12 lightning2.offset
13 currentSensor2.p.v
14 integrator2.y_start
15 integrator1.u
16 lightning1.n.i
17 lightning1.v
18 resistor2.v
19 resistor2.n.v
20 currentSensor2.p.i
21 integrator1.der(y)
22 resistor1.T_heatPort
23 resistor1.v
24 lightning1.signalSource.approximation
25 resistor1.LossPower
26 currentSensor2.n.v
27 integrator2.der(y)
28 lightning2.p.v
29 ground2.p.i
30 lightning2.approximation
31 integrator2.u
32 lightning2.signalSource.T
33 lightning2.signalSource.amplitude
34 resistor1.T_ref
35 lightning1.signalSource.amplitude
36 resistor2.p.i
37 ground1.p.i
38 T2
39 lightning2.I
40 lightning1.p.i
41 lightning1.m
42 currentSensor1.p.i
43 lightning1.V
44 lightning2.signalSource.eta
45 lightning2.signalSource.T0
46 lightning1.signalSource.offset
47 resistor1.p.v
48 currentSensor1.n.v
49 T1
50 lightning1.p.v
51 lightning2.signalSource.T1
52 resistor1.i
53 resistor2.T_ref
54 currentSensor1.n.i
55 integrator1.k
56 lightning2.T1
57 integrator2.initType
58 resistor2.i
59 lightning2.startTime
60 currentSensor2.n.i
61 resistor1.T
62 lightning1.T1
63 integrator1.initType
64 lightning1.signalSource.T
65 lightning1.i
66 lightning2.p.i
67 lightning2.signalSource.T2
68 resistor1.alpha
69 resistor1.R_actual
70 resistor2.T_heatPort
71 resistor1.n.v
72 lightning1.signalSource.startTime
73 lightning1.signalSource.m
74 lightning1.signalSource.tau1
75 resistor2.R
76 lightning2.n.i
77 resistor2.T
78 der1.u
79 lightning1.signalSource.y
80 der2.der(u)
81 lightning1.T2
82 lightning2.signalSource.offset
83 resistor1.R
84 integrator1.y_start
85 lightning1.signalSource.T1
86 resistor2.n.i
87 der2.u
88 integrator2.k
89 lightning1.signalSource.T2
90 lightning2.signalSource.T10
91 lightning2.signalSource.m
92 resistor2.alpha
93 lightning2.v
94 lightning1.signalSource.eta
95 lightning1.startTime
96 lightning2.signalSource.approximation
97 resistor1.p.i
98 resistor2.R_actual
99 lightning2.signalSource.y
100 lightning2.signalSource.tau2
101 ground1.p.v
102 lightning1.signalSource.T0
103 lightning2.i
104 lightning2.n.v
105 lightning1.signalSource.T10
106 currentSensor1.p.v
107 lightning2.T2
108 lightning2.m
109 lightning2.signalSource.tau1
110 lightning1.n.v
111 lightning1.signalSource.tau2
112 ground2.p.v
113 lightning2.signalSource.startTime
114 resistor2.LossPower
115 lightning1.approximation