8 P% T& i# R. s" Y. `. W0 t完善的控制框图元件和系统动态特性评估工具- P( T. a6 o0 b% }5 E. ]3 n. Q; G
完善的机械元件和联轴器 : b2 L8 C8 x6 ?' T, A0 W- P! aC/C++编程接口提供了方便的用户自定义模型功能 7 e* E7 j9 y4 T* R协同能力0 _7 m; I6 V( }* y5 i" f
Maxwell 电磁场 . F: z$ ~' a# Y$ T1 |: Z2 {Matlab/Simulink1 l6 E. }* C+ n" e, Y8 g, G3 {& A
MathCad7 a" G; ?) o* o4 \! Z
结果后处理、参数分析和优化, f0 N- o ` J5 b+ K
图形及数值结果分析$ S* c$ s8 L. s+ B1 v
Excel兼容表格处理 " P& Y% y5 _# l" y通道计算器! h! k8 Q9 C+ }
演示模板 ) b7 \" e4 m8 FGPIB 数据接口方便数据采集5 }% I/ I" w/ l, I: a
谐波分析FFT * r+ H$ d- n- g: L* E. q i4 Y5 k蒙特卡洛分析- T* Z$ a+ J, S3 _$ S
趋势分析 7 ~0 Z7 h: E; h连续逼近! L0 f7 z& S9 h/ g/ m/ q
极端分析 3 k6 x; Y, D& M单纯形法、遗传算法优化设计 1 \8 [7 J* j8 t0 g2 S# }( ]强大的原理图功能 1 \ o: r; |% i: L; |% q多页图形: P$ B6 N9 E# \4 L% e/ N4 T
动态元件技术 ( u3 w) @ j1 _3 D V1 x! d2 [形象的符号 ) \+ b" }( j( T& E8 Y在线结果显示 " E5 S6 [% H- @& b& |9 B4 W子图/宏功能3 s0 M, F. f0 c9 y
用户加密元件库 ! V$ [, V6 P. ]: R, T5 S符号编辑器 * S% l+ g( ]/ {Excel 以及Word兼容 9 d5 I$ M3 b9 J7 g @; S! c优异的算法: _3 a7 @! B) ~5 U1 |
快速并且数值稳定 . T' M6 Y* U) M: V高级的非SPICE仿真器 6 |1 R% Y2 D" }$ t2 X2 L+ {1 d& j7 J' ~! I0 {4 X6 G" |5 w# r8 v
结论: 2 W/ G6 ^% f6 y" K! q! R% z& s8 i W5 N" ?, ~
基于上述特性,利用Simplorer及Ansoft相应的软件解决方案,可以简便、快速、准确地完成机电系统从元部件设计到系统设计、仿真、优化的整个过程,实现传统设计流程的现代化,提高设计水平和精度,最大限度的减少制作样机的次数,缩短开发周期,降低开发成本,有利于在激烈竞争中脱颖而出 * y; @ ~; Q0 @1 n 6 {$ e* \' y$ KAnsoft 产品市场部经理Mark Ravenstahl曾发表言论:“SIMPLORER已经在汽车、航空/国防工业领域占有了相当大的市场,因为它能满足那些涉及到复杂、多领域工程的系统对精度、可行性和灵活性的要求。SIMPLORER v7集创新与改进于一体,极大地缩短建模时间、减少反复修改物理模型的过程和降低成本,这些就是Ansoft极力为所有客户创造的利益所在。”% E6 ]6 J1 I7 d7 I
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SIMPLORER v7的可行性特性主要体现在其新增的脚本接口,该接口可以帮助使用者将SIMPLORER集成到已有的设计流程中,而其增强的统计分析功能则允许使用者在生产前进行设计的优化和设计公差的验证。SIMPLORER的新模型开发向导主要用于创建C-模型、VHDL-AMS模型和元件对话框,而VHDL-AMS功能(按IEEE 1076.1标准)则已通过优化模型、改进仿真效率和一个建模向导进行了扩展,使工程师们不用学习语法就能使用IEEE语言。此外,SIMPLORER还新增了一个具有276个元件的传感器模型库,并在SIMPLORER和Ansoft’s Maxwell(R)有限元分析(FEA)产品之间建立了一种暂态耦合连接。 d' A! }7 C3 T% ^$ e9 J' \ ( H( O0 {- i5 WSIMPLORER v7的显著特性包括: % b" q, z1 b$ x/ n/ e: p! g
新增的脚本接口 ( @; T# W$ [7 v2 X7 E3 x
新增的优化和统计分析工具 7 I( z& T! e! q2 [: k6 F2 @. w
创建C-模型、VHDL-AMS模型和元件对话框的向导 4 r1 O+ P+ ~' T( I: f, U
扩展的VHDL-AMS功能 0 Z' M) P% v, W, k
新增的传感器模型库(作为附加产品出售) 3 I0 i1 x! ~" D5 q
SIMPLORER和Maxwell FEA之间的暂态耦合连接 & l3 r. i2 T, L0 j8 A1 p
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::::::English Description:::::: 4 `, N. a' m# L; W2 o7 F" G5 a$ J" h1 a: F1 \) D& I; i U N E5 j
, Y7 P- O1 B, k. @" I+ ^Simplorer?is multi-domain, system simulation software that creates an electromechanical systems-design laboratory on your desktop. The software features powerful model-generation tools, model libraries, co-simulation capability, and VHDL-AMS modeling techniques. 3 {; y8 m/ k$ v7 X5 Z4 ?* O' D
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Simplorer’s unique simulator coupling and co-simulation technologies utilize a data exchange backbone, which auto-interactively selects optimum simulators with numerical algorithms specifically tuned for the multi-domain nature of electromechanical systems. These technologies allow users to create models across domains, at different levels of abstraction, and simulate complex electromechanical systems quickly and easily. : n5 r' a4 p3 n7 Z; }
. M7 I0 M! \. ^* P# HSimplorer includes a fast and numerically stable circuit simulator, a block-diagram system simulator for signal analysis and control design, and an event-driven state-machine simulator for discontinuous processes. Simplorer also incorporates VHDL-AMS, the IEEE industry-standard modeling language for analog, digital, mixed-signal, and multi-domain systems. + f( \/ A9 }/ O
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" x7 W8 G5 i' P Simplorer?is multi-domain, system simulation software for the design of high-performance electromechanical systems commonly found in the automotive, aerospace/defense, and industrial automation industries. ) M, ~: s Y5 q1 R2 N, ^
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With a wide range of modeling techniques, statistical analysis capability and adherence to IEEE standards, Simplorer greatly reduces engineering time and prototype iterations while improving design performance of electrical, mechatronic, power-electronic, and electromechanical systems. " `' E i. f+ u7 i4 B- k# c* @
# V1 m; l% U# t/ ~$ yNew in Simplorer v7 6 j" g8 N: v1 P2 V. P! b
) v' k( y9 V! h0 R? Optimization and statistical analyses 7 D; B# E* X" ?, N6 _7 Y? Scripting interface 7 A7 Z! l4 H1 x6 V1 p' Q, J# G
? Wizards (C, VHDL-AMS, and component models) 4 t3 |; l, O# \3 D9 X! N
? Expanded VHDL-AMS functionality * b' r( i0 M4 t0 T2 g) r! u % Z0 U5 s9 U2 Q) J8 G0 V* h3 c
? Sensor Model Library (cost option) , H+ ?" v& @6 j4 [0 f- K
? Transient coupling between Simplorer and Maxwell?2D : [: A8 q* K5 a6 o6 S1 S
? VHDL-AMS Model Encryption 0 w1 ^* @) y. [3 }# Q? Users of other VHDL-AMS simulators can encrypt and pass models to Simplorer?without revealing underlying IP 8 a& a P" O6 y+ O& j# [