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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Numerical simulations of environment control and life support system in space station-oriented real-time system
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Numerical simulations of environment control and life support system in space station-oriented real-time system

机译:面向空间站的实时系统环境控制与生命支持系统的数值模拟

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An environment control and life support system (ECLSS) is an important system in a space station because it can provide a basic living environment for astronauts. The ECLSS is a typical time-variant complex system, hence there exits time-consuming technical difficulty during its development. The real-time simulation technology can help to accelerate its research process because some models of complex hardware need not to be built and calibrated at all. For a real-time simulation system with time-varying parameters, an implicit fixed time step numerical integration method is normally used as its solver. However, its computational efficiency is too low especially for the complex ECLSS simulation system on a single personal computer (PC) cluster. An explicit fixed time step integration method is computationally efficient, but their potential instability problems, which are caused by the time-varying parameters, limit its application to the ECLSS system. In this paper, an improved model method based on the explicit Euler method is proposed to simulate the complex time-variant ECLSS on a PC cluster. A simplified ECLSS system is established as an example to explain this proposed method. The eigenvalue estimation theory is used to analyze the numerical stability of the simplified system. Further, the potential instability problem of the explicit method can be avoided by an adaptive operator. Both of the stability and the accuracy of the proposed method are investigated carefully. It can be concluded from simulation results that this proposed method can provide a solution to realize the real-time simulation for the complex time-variant ECLSS on a PC cluster.
机译:环境控制和生命支持系统(ECLSS)是空间站中的重要系统,因为它可以为宇航员提供基本的生活环境。 ECLSS是典型的时变复杂系统,因此在其开发过程中不存在耗时的技术难题。实时仿真技术可以帮助加速其研究过程,因为根本不需要构建和校准某些复杂硬件的模型。对于具有时变参数的实时仿真系统,通常使用隐式固定时间步长数值积分方法作为其求解器。但是,它的计算效率太低,尤其是对于单个个人计算机(PC)群集上的复杂ECLSS仿真系统而言。一个明确的固定时间步长积分方法在计算上是有效的,但是由时变参数引起的潜在的不稳定性问题限制了其在ECLSS系统中的应用。本文提出了一种基于显式欧拉方法的改进模型方法,以在PC集群上模拟复杂的时变ECLSS。以简化的ECLSS系统为例来说明该方法。本征值估计理论用于分析简化系统的数值稳定性。此外,可以通过自适应算子来避免显式方法的潜在不稳定性问题。仔细研究了所提方法的稳定性和准确性。从仿真结果可以得出结论,该方法可以为在PC机群上实现复杂时变ECLSS的实时仿真提供解决方案。

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