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A REAL-TIME LAUNCHING CALIBRATION SYSTEM AND FAILURE ANALYSIS APPROACH FOR THE REAL-TIME MEXICAN SATELLITE SPACE LAUNCH CENTER

机译:墨西哥实时卫星空间发射中心的实时发射标定系统及失效分析方法

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In this paper, the Real-Time Calibration System for Real-Time Satellite Launch Platform and the Space System Engineering Design, and the System Probabilistic Risk Assessment using Failure Three Analysis (FTA) is presented and designed in the OneSide Tech Start-Up Headquarters. Mexico holds the fourth best place in the world for building a Space Port to launch Space Satellites, since its geographic location is optimal for its construction (near the Equator). It is essential to have the Probabilistic Risk Assessment and Failure Analysis in Space Systems Engineering from its design, in order to minimize risks and avoid any possible catastrophe or position rocket failure throughout any wrong orbit. Mexico is planning to construct a Space Port and a Rocket Space Launch Center in the near future in order to be part of the nations with Space Programs. Some methodologies are used for the System Design, Modelling and Engineering (Hardware and Software), such as Structured Analysis for Real Time (SA-RT), LACATRE Real-Time Software Design; the final results were performed with the Failure Analysis through Fault Trees (FTA) by means of a quantitative probabilistic approach and Simulation using Windchill Quality Software. This is the first step to propose and build the first Satellite Launch Platform in Mexico, including the Real-Time Calibration System. Related Researching Work had been published at IJERA NASA Indexed magazine (Vol 5. Issue 11 2015), presented at 7th IAASS Conference at Friedrichshafen Germany in October 2014, and during 6th IAASS Conference at Montreal Canada in May 2013.
机译:本文在OneSide Tech Startup总部中提出并设计了用于实时卫星发射平台和空间系统工程设计的实时校准系统,以及使用故障三分析(FTA)进行的系统概率风险评估。墨西哥在建设发射太空卫星的太空港方面位居世界第四,这是因为墨西哥的地理位置是其建造的最佳地点(在赤道附近)。必须从设计入手进行空间系统工程中的概率风险评估和故障分析,以最大程度地降低风险并避免在任何错误的轨道上发生任何可能的灾难或定位火箭故障。墨西哥正计划在不久的将来建造一个太空港和一个火箭太空发射中心,以便成为拥有太空计划的国家的一部分。某些方法用于系统设计,建模和工程(硬件和软件),例如实时结构化分析(SA-RT),LACATRE实时软件设计;最终结果是通过定量树的方法通过故障树进行故障分析(FTA)进行的,并使用Windchill Quality Software进行了仿真。这是在墨西哥提出并建造第一个卫星发射平台(包括实时校准系统)的第一步。相关研究工作已在IJERA NASA索引杂志(第5卷,2015年第11期)上发表,该杂志在2014年10月于德国腓特烈港举行的IAASS第七届会议上以及2013年5月在加拿大蒙特利尔的IAASS第六届会议上发表。

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