使用期限*
许可形式单机和网络版
原产地加拿大
介质下载
适用平台windows
科学软件网提供大量正版科学软件,满足各学科的科研要求。科学软件网专注软件销售服务已达19年,全国大部分高校和企事业单位都是我们的客户。同时,我们还提供本地化服务,助力中国的科研事业。
通信结构(ComFab):应用程序间,通信控制体系结构。支持三种类型的通信接口:传统的TCP/IP(默认)、共享内存和直接网络连接(即InfiniBand上的RDMA)。
并行多次运行(PMR):并行执行多重运行。
EMTDC二进制输出文件格式:EMTDC输出文件的格式和处理方式已经彻底改变。所有EMTDC输出文件都保存在一个二进制文件中。这样有很多好处,包括**快速和的数据处理,尤其是在处理大量输出时。
潮流类型数据的转换
结合附加产品PRSIM,PSCAD可将PSS/E和DigSilent PowerFactory数据文件直接转换成PSCAD格式。转换后的PSCAD案例的运行条件与原始网络数据文件的设置(稳态潮流)兼容。PSCAD V5提供了名为NETEQ的完全网络等效计算功能。
Change was on the way: Minicomputers and later personal computers came on the scene with new operating systems, which made all the hocus-pocus associated with using large scientific programs on the old mainframes, obsolete. Virtual memory replaced overlays. New graduates, no longer intimidated by the computer, were more than capable of dealing with any programming situation. Today, the technical expert has control over both the computer and its programs and is intimately involved in adapting both hardware and software to meet his/her requirements for investigation and analysis.
EMTDC was developed for this new and more acceptable environment, first specifically for UNIX/Linux, and then on to Microsoft Windows operating systems. Model building of control and electric systems is no longer defined entirely by data entry – with the program hidden, untouchable somewhere in the depths of the computer memory: Now the model is created by user Fortran statements. Time domain model components, such as AC machines, exciters, six-pulse valve groups, etc., are modularized into subroutines for easy assembly by the user. The user is able to build his or her subroutines, if and when models are not available.
With the advent of PSCAD, the graphical user interface for EMTDC, there is for the most part, no longer any need for the user to build his/her own subroutines through coding. Subroutine assembly and insertion into EMTDC is now performed automatically by PSCAD. The responsibility of the user has been reduced to graphically assembling a given network, and in some cases, adding some user-defined code. However, there may still be a need in some instances, such as the conversion of older subroutines, where a good knowledge of the internal structure and methods of EMTDC is important.
低压直流单接地回路
传输极限研究
绝缘配合研究
暂态恢复电压(TRV)研究
配电压电容开关研究
系统运行规划研究和操作区域互连支持
我们签订的一个项目,协助一个多阶段试点项目
的开发,论证单线接地回路(SWER)高压直流输电
到偏远的北部地区的可行性。在一个新的高压直流输
电系统配电一体化的项目中我们提供支持。*1
和*2阶段已完成,*3阶段的安装目前正在进行中。
我们为Red Eléctrica de España进行了345KV串
联电感器暂态恢复电压(TRV)的研究,高压输电线
路的故障限流以及暂态稳定改善方面有时候是需要串
联电感器的(虽然并不常用),串联电感器对断路器
的暂态恢复电压提出了挑战。由于串联电感器的安装
并不常见,所以每种情况必须仔细评估考虑断路器,
电容耦合电压互感器(CCVTs)和其他主站设备的位
置。在TRV这些类型的研究方面我们是非常的。
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