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Полная версия этой страницы: Анонсирована новая версия пакета CST STUDIO SUITE 2006B
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Yuri Potapoff
Уважаемые господа!

Сегодня на открывающейся в Манчестере (Великобритания) выставке
European Microwave Week 2006 (http://www.eumw2006.com) немецкая компания CST
(http://www.cst.com) представит новую версию своего пакета CST STUDIO SUITE
2006B, предназначенного для 3D EM моделирования.



Наиболее значительные изменения претерпел вычислительный модуль Time
Domain Solver, в который добавлен новый метод формирования сетки
разбиения Fast PBA, новый гибкий алгоритм построения подсеток, а также
аппаратный ускоритель. Кроме того, модуль Time Domain Solver будет
первым модулем пакета CST MWS, доступного для работы на платформе
Linux. В вычислитель в частотной области Frequency Domain Solver
добавлены новые способы возбуждения структур с помощью плоской полны и
наклонных портов.

Был доработан модуль расчета магнитостатических полей, что позволит
более качественно моделировать подмагничивание ферритов совместно с
помощью двух продуктов Microwave Studio и EM Studio. Улучшено
взаимодействие СВЧ и теплового вычислителей.

Кроме того, в пакет CST STUDIO SUITE 2006B добавлен новый
вычислительный модуль Integral Equation Solver (MLFMM), интерфейсы для
взаимодействия с пакетами AWR Microwave Office и Mician mWave Wizard.

Новая версия пакета CST STUDIO SUITE 2006B будет доступна
пользователям в четвертом квартале 2006 года.

Более подробную информацию о пакете CST STUDIO SUITE можно найти по
адресу:

http://www.eltm.ru/cst


За любой дополнительной информацией просим обращаться
по адресу info@eltm.ru или телефону (495) 974-14-80
navuho
Цитата(Yuri Potapoff @ Sep 12 2006, 11:02) *
... а также аппаратный ускоритель.


А можно узнать, сколько эта штука будет стоить ?
Хотя бы примерно, в % от цены одной лицензии на TD solver?
Demonis
Главное чтобы не было еще большей потери в скорости. Сравнивал CSR MS 5 и CST Suite 2006 - так последний при аналогичных настройках считает приблизительно на 10% медленнее.
navuho
This list provides an overview of some of the most important changes in Version 2006B of CST MICROWAVE STUDIO®.
Цитата
General / Environment

All solver modules are now available as 64 bit versions.

The installation now automatically registers the COM servers of DE and APLAC.

Floating licenses not support automatic port scan for license server port.

Created the possibility to change the solvers thread priority between 'Low' and 'Normal'.

Changed organization of library folder.

Improved handling of dongle problems in license control system (disconnect / reconnect of dongle).



Job control center

Added option to change solver type for a range of jobs.

Added option to change order of scheduled jobs.

Added option to re-calculate killed jobs to job control center.



Distributed computing

Added possibility to update all executables from a reference installation.

The frequency domain solvers and the Eigenmode solver feature single distributed computing remote solver runs.

Intermediate results are accessible now. Not for parameter sweep or optimization.

Improved handling of server GUI (minimize/maximize).

Temporary files are now stored in specified working directory instead of Windows temp.

Added possibility to CST Main Controller to disable single solver servers.

Added transfer speed information while transferring files.

Speed up file transferring between main controller and solver servers.

Status of jobs can now be checked in the DC main controller gui.



Modeler

Implemented possibility to cancel a parameter animation.

Implemented possibility to construct discrete face ports 'delta gap sources'

"File/Reset Project" to start a new empty project within the current document frame

Implemented 'Max. cell aspect ratio' as a further possibility to equilibrate the mesh in special mesh properties dialog.

Implemented the possibility to enter a value for equilibrate mesh in special mesh properties dialog.

Implemented complement to feature 'Hide All Ports' called 'Unhide All Ports'.

Implemented multiple curve wire creation by multiselect curves and curve items in the navigation tree or modelling view.

Implemented multiselection for curves and curve items.

Added interactive feedback for selection of solids, faces, edges and vertices.

Improved history list find dialog: no longer modal, search from arbitrary position, switch case sensitive-insensitive.

Implemented continue button in history list, which completes the history rebuild from current position to the end without full rebuild.

Improved history list restore functionality, history is no longer completely processed if position to restore is after actual position.

Added "fast cutplane" drawing option. Activated by default.

Implemented feature align WCS with global coordinate system.

Implemented user defined angle for chamfer edge operation.

Implemented preview button for chamfer and blend edges.

Implemented 'Apply in all directions'-Button in 'Boundary Conditions'-dialog 'Boundaries'-tab.

Added option to set top and bottom radii to sphere.

Added dynamic level of detail display option for faster display of large models during view manipulations.

Improved performance of structure visualisation for models consisting of a large number of solids.

Different material sets for EMS/MWS may now be defined for one material.

It is possible to switch between EMS and MWS in the DE without reloading the project now.

Added smart rotation center for rotation of structure view

Modeler runs with ACIS R16 SP3.



Import / Export

3D SAT export of solid wires and layer stacking.

New Gerber import for multiple layers.

Gerber import improved.

Polygon simplification implemented for Gerber, DXF and GDSII imports.

CATIA5 import: Possibility to import catia attributes like solidname, materialname and color.

Added the ability to define bondwire shapes as well as ball geometry to Allegro / APD plugin. Wires are now imported as solids.

The SAT-Import now imports curves as curves and no longer as solids.

STEP import: Possibility to import step attributes like solidname, materialname and color.

Autodesk inventor import includes all versions up to 10.

CATIA V5 import includes versions from R2 to R16.



Meshing / Matrix calculator

Enabled subgridding dialog button and VBA command. Added subgridding controlled by standard mesh settings.

Surface Mesh can be created and visualized. Meshing control extended for surface mesh

PBA: Introduced new meshing scheme for FPBA mesher.

PBA: Added possibility to avoid building a non-manifold ACIS model when using PBA acceleration.

TET: New Delaunay volume mesher is now available via the Special Mesh Properties dialog.



Transient solver

TD Solver calculates timestep only once for multiport simulations.

Activated possibility of TD Solver calculation with excluded PEC regions.

TD Solver automatically restarts with reduced timestep after instability abort.

Multilevel Subgridding Scheme (MSS) is available for transient solver.

Conversion from mixed-mode S-parameters to single-ended S-parameters implemented.



Frequency domain solver

The Tet-FD solver now features multipin ports.

The Tet-FD solver now features plane wave excitation and RCS calculation, including decoupling planes.

The Tet-FD solver can now be stimulated with circularly polarized Floquet modes.

The Tet-FD solver now features a magnetized plasma material model with constant biasing field.

Added a check for floating discrete ports and lumped network elements.

The Tet-FD low frequency stabilization is now active by default for new models.

Implemented accelerated recalculation for HF TET FD solver.

The Tet-FD solver now applies analytic frequency dependence to obtain TE, TM, and TEM modes and subsequent frequency samples.

The Tet-FD solver chooses the direct solver if the solver type is set to automatic and the number of excitations exceeds a fixed limit.

Changed the default convergence threshold for the broadband frequency domain solver sweep to one percent.

Tet-FD solver allows ports with arbitrary orientation.

Coupled simulation for biased ferrites with calculated M-Static fields available.

It is now possible to enter negative epsilon and mue for a Tet-FD calculation.

Changed the FD solver's "Add samples for monitors" option into "Do not calculate monitors"; added info message.

The stabilized Tet-FD mesh quality enhancement is now available.

Sequential multi-frequency adaptive mesh refinement is now supported by the Tet-FD solver.

Introduced a minimum number of mesh growth in terms of tetrahedrons required until delta S is accepted.

Wavelength based mesh refinement is now available for the Tet-FD solver with a coarse initial mesh.

Wavelength based Tet-FD refinement for biased ferrites is now available and will be recommended if necessary.

A warning is now displayed for Tet-FD adaptation sample definitions without a maximum number of samples.

Added a mesh equilibration step across interface edges to the Tet-FD adaptive port mesh refinement.

The general purpose frequency domain solvers now write B- and D-fields when "save all field results" is enabled.

Surface current results are now available for the Tet-FD solver.

Implemented iterative solver (AMD including out-of-core) for first order elements in HF TET FD.

New sparse direct solver (incl. out-of-core management) implemented.



Integral equation solver

The integral equation solver (freq. domain) is available.

Farfield calculation for the integral equation solver implemented.

Surface current calculation for integral equation solver implemented.

S-Parameter calculation for integral equation solver implemented.

Adaptive S-Parameter sampling and interpolation for integral equation solver implemented.

Plane Wave excitation for integral equation solver implemented.

Discrete Face Ports (with impedance) for integral equation solver implemented.

Direct and iterative (MLFMM) solver for equation system solve for integral equation solver available.

Automatic equation system solver choice added to the integral equation solver.



Eigenmode solver

Added the external Q-factors to the result window.

JDM can solve the eigenmode problem for a given frequency target, e.g. eigenmodes in the middle of the spectra.

The converged eigenmodes are saved, if "Abort" is pressed.

The frequency is written out in the result window, if JDM has been converged for an eigenmode.

Implemented stable calculation of static eigenmodes in the JDM eigenmode solver.

Post processing / Signals / Fields

Limited number of points for evaluate field on curve to 1 million per curve.

Added support for differential SPICE netlist generation.

Touchstone-Export for single-ended S-Parameters enabled (without renormalization).

ASCII-Export for surface loss plots enabled.

ASCII-Export of surface currents, added column for area.

MWS, Improved Network MOR solver with respect to passivity enforcement.

Combine results for tetrahedral e and h and surface current fields implemented.

Q factor dialog now shows relative loss for each solid/material in percent of total losses.

Improved field interpolation near PEC surfaces activated for Evaluate Field on Curve and VBA command GetFieldVector.

Improved quality of HEX field interpolation

Adaptive 2D / 3D vector fields are working. No optimization yet.

Adaptive cut mesh refinement (HEX contour plots) is working now.

Visualization of cuts (3DFieldsOn2DPlane) now possible while solver is running.

Finished implementation of 2D phase plots.

Added option to apply the currently modified parameter settings of a table to all tables of same type.

Added functions to move axis marker to minimum and maximum of curves.

Added options for logarithmic scaling of x/y axes.

Parameter list in table properties dialog box now shows the truly varied parameters first and all others as read only afterwards.

Added summary of fixed parameters to curve information box. Selected curve parameters only are shown if a curve is selected.

XY plots keep user defined ranges for reset zoom operation.

Added output numbers point SAR and SAR related to 1W(rms) accepted power.

SAR Special Settings dialog box added.

SAR calculation allows rescaling to user defined reference power.

SAR dialog allows manual labeling.

Added IEEE standard C95.3 for SAR averaging method (as default), renamed averaging methods.



VBA / Macros

Added SAR VBA command GetValue.

VBA command evaluate field on face delivers max and min with positions.

Added a VBA command in order to access the external Q-factor.

New mesh VBA-commands implemented (grid point based): GetNp, GetClosestPtIndex, GetXPos

New VBA-command for discrete port: GetElement2ndIndex

Implemented VBA command Pick.ExportFaceTriangles.

New VBA command "GetTemplateBasedPostprocDir" to retrieve a document specific directory.

Added VBA commands GetDataBaseValue and GetDataBaseArrayValue to provide access to the settings database.

Added VBA command "EvaluateResultTemplates".

Time saving limitation of SAR calculation volume enabled via VBA.
Pir0texnik
Тут в еМуле появился ed2k://|file|CST_STUDIO_SUITE_2006_SP7.exe|70402675|76D05F81AC7B769B0DC611A7F463AC39|/

так вот к чему он? smile.gif
чем отличается 2006 от 2006B? 2006B - это случайно не 2006 только после какого-то апдейта (имно как минимум 5го, после 4го, он В не стал smile.gif
navuho
Цитата(Pir0texnik @ Dec 21 2006, 02:38) *
чем отличается 2006 от 2006B? 2006B - это случайно не 2006 только после какого-то апдейта (имно как минимум 5го, после 4го, он В не стал smile.gif

Отличается, кое-где заметно smile.gif
Я думаю, многим будет интересен вот этот обзорчик по v2006B:
hxxp://rapidshare.com/files/11390061/MWS2006B.rar.html
pwd: electronix.ru
andi1981
Цитата(navuho @ Jan 12 2007, 20:22) *
Цитата(Pir0texnik @ Dec 21 2006, 02:38) *

чем отличается 2006 от 2006B? 2006B - это случайно не 2006 только после какого-то апдейта (имно как минимум 5го, после 4го, он В не стал smile.gif

Отличается, кое-где заметно smile.gif
Я думаю, многим будет интересен вот этот обзорчик по v2006B:
hxxp://rapidshare.com/files/11390061/MWS2006B.rar.html
pwd: electronix.ru

За обзорчик спасибо! Будет очень интересно поработать с данной версией и опробовать ее в деле! smile.gif
Sagitarius
Всем доброго времени суток!
А вопрос вот в чем. Стоит CST2006, есть расшареная папка в сети на которую настроены Main control и Solver control, все права на папку есть. При запуске контроллеров создаются папки в расшареной папке. При запуске расчета, начинает считать, но тут же выкидывает сообщение Error in communication with CST Main Controller. В чем может быть проблема?

ЗЫ. Помню в CST 5 надо было запускать сетевые сервисы CST из под пользователя, здесь вроде бы это решено.

Всего
nadie
Цитата
Sagitarius


Зачем использовать расшареную папку в сети на которую настроены Main control и Solver control?
Даже если вы будете использовать Main control и Solver control на одной рабочей станции (для расчета нескольких портов одновременно, чтобы загрузить все процессоры рабочей станции) то Solver будет вначале зипповать данные для посылки Main control, который потом будет эти данные раззиповывать. Пересылка зазипованных данных много времени по сети не занимает (если сеть нормально настроена).
При Main control и Solver control папках на локальных компах, система работает с ограничение не более 1 ГБ данных в одном расчете порта (из-за используемого зип алгоритма)
Sagitarius
Цитата(nadie @ Jun 4 2007, 17:05) *
nadie

Да, не разобрался сразу, спасибо все заработало!
nadie
Если используете местную лицензию и есть возможность (в смысле железо позволит), проверьте пройдет ли моделирование модели с количеством узлов больше 30 миллионов?
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