航天系统工程可以确保任务低风险、低成本。恶劣的运行环境及其对于航天系统的影响需要人们充分理解航天系统结构、推进系统、机械装置及软件的行为方式及其在轨道中的运行方式。
同时,航天企业面临着竞争更加激烈的商业环境,而按时、按预算开发并验证航天系统具有重要的资金意义。
数字化双胞胎技术发展迅速,能够帮助您掌握复杂的航天系统,而仿真可以帮助设计、开发并虚拟测试系统。然而,系统复杂性也决定物理测试可以洞察数字化双胞胎模型中的假设是否正确;因此,仿真模型的验证至关重要。
我们将探讨以下重要主题:
- 如何在满足性能目标的同时降低风险并节约时间和成本
- 如何实施数字化双胞胎以创新并在物理行为中获得工程见解
- 如何紧密联系仿真来执行大量验证测试活动
Examine the benefits of a digital twin in space systems engineering
- Reduce engineering risks and costs while reaching performance targets
- Implement a digital twin to innovate and gain engineering insight into the physical behavior
- Perform extensive qualification testing campaigns in close connection with simulation
Learn about solutions for your space systems engineering priorities
- Spacecraft propulsion performance
- Structural, thermal and robots engineering
- Spacecraft electromagnetics performance
- Spacecraft testing, verification and qualification
- Spacecraft safety and mission assurance
Explore space systems performance engineering with an expert.