首页> 外文会议>Enabling Technologies for Simulation Science IX >Engineering the Future of Military Tactical Vehicles and Systems with Modeling and Simulation
【24h】

Engineering the Future of Military Tactical Vehicles and Systems with Modeling and Simulation

机译:通过建模和仿真来设计军事战术车辆和系统的未来

获取原文
获取原文并翻译 | 示例

摘要

Stewart & Stevenson has developed a Modeling and Simulation approach based on Systems Engineering principles for the development of future military vehicles and systems. This approach starts with a requirements analysis phase that captures and distills the design requirements into a list of parameterized values. A series of executable engineering models are constructed to allow the requirements to be transformed into systems with definable architectures with increasing levels of fidelity. Required performance parameters are available for importation into a variety of modeling and simulation tools including PTC Pro/ENGINEER (for initial engineering models, mechanisms, packaging, and detailed 3-Dimensional solid models), LMS International Virtual.Lab Motion (for vehicle dynamics and ride analysis) and AVL Cruise (Powertrain simulations). Structural analysis and optimization (performed in ANSYS, Pro/MECHANICA, and Altair OptiStruct) is based on the initial geometry from Pro/ENGINEER. Spreadsheets are used for requirements analysis, design documentation and first-order studies. Collectively, these models serve as templates for all design activities. Design variables initially studied within a simplified system model can be cascaded down as the new requirements for a sub-system model. By utilizing this approach premature decisions on systems architectures can be avoided. Ultimately, the systems that are developed are optimally able to meet the requirements by utilizing this top-down approach. Additionally, this M&S approach is seen as a life-cycle tool useful in initially assisting with project management activities through the initial and detail design phases and serves as a template for testing and validation/verification activities. Furthermore, because of the multi-tiered approach, there is natural re-use possible with the models as well.
机译:Stewart&Stevenson已基于系统工程原理开发了一种建模和仿真方法,用于开发未来的军用车辆和系统。该方法从需求分析阶段开始,该阶段将设计需求捕获并提取到参数化值列表中。构建了一系列可执行的工程模型,以允许将需求转换为具有更高保真级别的可定义体系结构的系统。可以将所需的性能参数导入各种建模和仿真工具,包括PTC Pro / ENGINEER(用于初始工程模型,机构,封装和详细的三维实体模型),LMS International Virtual.Lab Motion(用于车辆动力学和行驶分析)和AVL Cruise(动力总成模拟)。结构分析和优化(在ANSYS,Pro / MECHANICA和Altair OptiStruct中执行)基于Pro / ENGINEER的初始几何形状。电子表格用于需求分析,设计文档和一阶研究。这些模型共同用作所有设计活动的模板。最初在简化的系统模型中研究的设计变量可以归为子系统模型的新要求。通过使用这种方法,可以避免对系统体系结构的过早决策。最终,通过使用这种自上而下的方法,所开发的系统可以最佳地满足要求。此外,这种M&S方法被视为一种生命周期工具,可用于在初始和详细设计阶段初步协助项目管理活动,并充当测试和验证/验证活动的模板。此外,由于采用了多层方法,因此模型也可以自然地重用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号