Antenna software HFSS ( high frequency structure simulator)
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40 slides
Nov 15, 2017
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About This Presentation
antenna software
Size: 1.07 MB
Language: en
Added: Nov 15, 2017
Slides: 40 pages
Slide Content
Introduction to High
Frequency Structure Simulator
Pengcheng Jia
Background
Introduced from 90s
Simulation tool for complex 3 D geometries
Using Finite Element Method
Adaptive Mesh generation & refinement
2 Main Vendors—Agilent & Ansoft
Merger from May 1
Transfer to Ansoft HFSS after Nov. 1, 2001
Requirement & Resources
HFSS consume tremendous memory if fine
result is needed
300M+ Memory and 400M+ processor is
recommended
Floating License Key within ECEWIN2K
subnet
Remote access to new Scully which has 1
G RAMBUS400 Memory and 1.7G P4
processor
Agilent HFSS
Ansoft HFSS
Features(1)
Computes s-parameters and full-wave fields Computes s-parameters and full-wave fields
for arbitrarily-shaped 3D passive structuresfor arbitrarily-shaped 3D passive structures
Powerful drawing capabilities to simplify Powerful drawing capabilities to simplify
design entrydesign entry
Field solving engine with accuracy-driven Field solving engine with accuracy-driven
adaptive solutionsadaptive solutions
Powerful post-processor for unprecedented Powerful post-processor for unprecedented
insight into electrical performanceinsight into electrical performance
Features(2)
Advanced materialsAdvanced materials
Model Library-including spiral inductorsModel Library-including spiral inductors
Model half, quarter, or octet symmetry Model half, quarter, or octet symmetry
Calculate far-field patternsCalculate far-field patterns
Wideband fast frequency sweepWideband fast frequency sweep
Create parameterized cross section Create parameterized cross section
models- 2D modelsmodels- 2D models
Procedure to simulate
1.Open or Make new project
2.Draw objects
3.Assign material property
4.Define boundary conditions
5.Solve
6.Display result
New project
Project Preferences
Drawing basics
Drawing Lines & 2 D objects
Drawing 3 D objects
Object Library
Editing Objects
Materials
Metal & Resistor
Boundaries
Boundary Conditions
Add A Boundary
Display Boundary
Calibrating Ports
Solve
Frequency & Meshing
Displaying Results
S Matrix
Plot Field
Result Comparison
r=8.5; Hsub=625 um; W=150um; G=75 um
@10G TheoreticalHFSS
L=100 um0.04 nH 0.05 nH
L=300 um0.12 nH 0.13 nH
L=600 um0.24 nH 0.24 nH
L=800 um0.33 nH 0.31 nH
0
0
0
L
L
Z jZ Tan L
Z Z
Z jZ Tan L
b
b
+
=
+
---Theoretical Equation
Finite Element Method
Tetrahedron
Impedance Concept
Zpi, Zpv & Zvi
Microstrips use Zpi impedance
Slot-type (CPW) use Zpv impedance
TEM waves use Zvi impedance
*
2 1
; ;
2
P
Zpi P ExHds I Hdl
I I
= = =
´
ò òÑ Ñ
*
2
V V
Zpv
P
´
=
Zvi Zpi Zpv= ´
Projects with HFSS
Microstrip Line to Waveguide Transition
EM Field of the transition
Waveguide Combiner System
Slotline Antenna
Bonding Wire Discontinuity
Packaging for CPW Lines
Field Plot
Useful links
http://www.ansoft.com
http://dutettq.et.tudelft.nl/~hfss/welcome.html
http://wwwinfo.cern.ch/ce/ae/Maxwell/index.html
Documents for HP HFSS is in “Scully”
c:/Otherprg/hfss/doc