HFSS的后处理及场计算器的使用课件.ppt
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1、4-1HFSS的后处理及的后处理及场计算器入门场计算器入门电子科技大学贾宝富4-2Ansoft HFSS的后处理(的后处理(Results)Create Report4-3可绘制图形可绘制图形 Eigenmode solution(本征模解)(本征模解)Eigenmode Parameters(modes)(本征模参数图形)Driven Modal Solution(驱动模式解)(驱动模式解)S-parameters(S参数图形)Y-parameters(Y参数图形)Z-parameters(Z参数图形)VSWR(驻波比)Gamma(complex propagation constant)(
2、复数形式的传播常数)Port Zo(端口波阻抗)Driven Terminal Solution(终端驱动解)(终端驱动解)S-parameters(S参数图形)Y-parameters(Y参数图形)Z-parameters(Z参数图形)VSWR(驻波比)Power(功率)Voltage Transform matrix(T)(电压传输矩阵)Terminal Port Zo(端口波阻抗)4-4可绘制图形可绘制图形Fields(场)Mag_EMag_HMag_JvolMag_JsurfComplexMag_EComplexMag_HComplexMag_JvolComplexMag_JsurfL
3、ocal_SAR(Specific Absorption Rate)Average_SAR注:在绘制场图前必须先选择一个面或者一个多点线。4-5Ansoft HFSS的后处理(的后处理(Results)Solution Data4-6Ansoft HFSS的后处理(的后处理(Results)Output Variables4-7Ansoft HFSS的后处理(的后处理(Fields)Fields4-84-9Ansoft HFSS的后处理(的后处理(Radiation)Radiation4-10What is Time Domain Reflectometry?Time Domain Refle
4、ctometry(TDR)measures the reflections that result from a signal travelling through a transmission environment of some kind a circuit board trace,a cable,a connector and so on.The TDR instrument sends a pulse through the medium and compares the reflections from the unknown transmission environment to
5、 those produced by a standard impedance.4-11The Reflection CoefficientTDR measurements are described in terms of a Reflection Coefficient,(rho).The coefficient r is the ratio of the reflected pulse amplitude to the incident pulse amplitude:4-124-13Calculating the Impedance of the Transmission Line a
6、nd the Load4-14Short and open circuit terminations4-15Matched and mismatched load terminations4-16Capacitive and inductive load terminations4-17Capacitive and inductive discontinuities4-18Mixed capacitive and inductive loading4-19The TDR waveform reveals trace discontinuities4-20HFSS Field Calculato
7、r:DefinitionA tool for performing mathematical operations on ALL saved field data in the modeled geometrynE,H,J,and Poynting data availablenPerform operations using drawing geometry or new geometry created in Post3nPerform operations at single frequency(interpolating or discrete sweeps)or other freq
8、uencies(fast sweep)nGenerate numerical,graphical,geometrical or exportable datanMacro-enabled 4-21表达式表达式操作区操作区指定数据指定数据关联关联场计算器场计算器操作区操作区场计算器分区4-22表达式操作区建立表达式建立表达式使用“Add”键,由场计算器堆栈导入表达式;使用“Load From”键,由场计算器表达式文件(*.clc)导入表达式;输出表达式输出表达式使用“Copy to stack”键,将已存在的表达式导出到场计算器堆栈;使用“Save to”键,将已存在的表达式保存成场计算器表达式
9、文件(*.clc);4-23指定关联区指定场计算器指定场计算器使用数据的出使用数据的出处。处。指定求解设置指定场类型;指定频率指定相位4-24HFSS Field Calculator:Basic LayoutStack Operations:Button for manipulating stackData stack:Contains current and saved entries in a scrolling stack similar to a hand-held scientific caculator.Calculator Functions:Orgnized grouping
10、s of all the avaliable calculator functions in button format.Some buttons contain further options as drop-down menusStatus Bar(not currently shown):4-25HFSS Field Caculator:Data TypesThe calculatiorv can manipulate many different types of datanGeometricnComplexnVectornScalarData types are indicated
11、in the calculator stack for each entryMost calculator operations are only available on the appropriate data type(s)Geometric surface generated along E field iso-value contour Vector data output to a plane geometryScalar E-field data graphed along a line geometry4-26HFSS Field Calculator:Data Indicat
12、orsEach stack entry will be preceded by a unique code denoting its data typeMathematical:nCVc:Complex Vector nVec:VectornCSc:Complex ScalarnScl:ScalarGeometric:nPnt:PointnLin:LinenSrf:SourfacenVol:VolumeCombinations can also existnE.g.“SclSrf”:Scalar data distributed on a Surface geometryCACULATOR U
13、SAGE HINT:Most data input types will be self-explanatory,e.g.E and H fields being phasor quantities will be Complex Vector(CVc).The only exception to this rule is the Poynting input,Which will show up as a“CVc”even though E X H*should have no imaginary component.The calculator only knows that two co
14、mplex vector were crossed,and does not know ahead of time that the imaginary component has been zeroed.4-27HFSS Field Calculator:Detail Layout-StackAs data is entered into the calculator it appears at the TOP of the stack,pushing older entries DOWNUNDO attempts to take back the last operation betwee
15、n stack enties.It may not work for all data types(e.g.the result of a pure math operation cannot be reversed)CLEAR deletes ALL entries from the stack upon confirmationEXCH exchanges or swaps the top two stack entriesPUSH duplicates the top stack entryPOP deletes the top entry off the stackRLDN “roll
16、s”the stack downward,moving the top entry to the bottomRLUP“rolls”the stack upward,moving the bottom entry to the top4-28HFSS Field Calculator:Detail Layout-OperationsSCALAR column operations can only be performed on Scalar data(not complex or vector data),such as finding the Cosine of a value using
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