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Flight Control Computer Operational Flight Program Development for the Control Laws Switching Mechanism

机译:飞行控制计算机运营飞行计划的控制法制转换机制

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All new flight control law and flight control computer developments have historically been an extremely expensive and time-consuming proposition specially in a flight-critical system. To reduce and avoid these kind of problems, the switching mechanism method has been addressed. Here the switching mechanism needs two computers. One is a basic(or primary) computer already customized to the production airframe and the other one is a new developed computer with a research control law algorithm. So the basic computer provides a pilot-selectable research flight control law capability during flight This paper describes the modified basic digital fly-by-wire Flight Control Computer(FCC) software development for the switching mechanism which has been already verified for the safety of flight in its operational field. This paper also presents and describes system design, software mechanization design, autocode design for the switching algorithm, and system verification and validation(V&V). The function of switching and data communication can minimize the interferences between two computers, two control laws, or both. This successful flight control system for switching mechanism will provide a useful equipment for the future development of risk challengeable control laws algorithm, software, and hardware development.
机译:所有新的飞行控制法和飞行控制计算机发展历史上一直是一种非常昂贵且耗时的主张,特别是在飞行临界系统中。为了减少和避免这些问题,已经解决了切换机制方法。这里,切换机制需要两台计算机。一个是已经为生产机身定制的基本(或主要)计算机,另一个是具有研究控制法算法的新型开发的计算机。因此,基本计算机在飞行期间提供了一个飞行员选择的研究飞行控制法能力本文介绍了改进的基本数字蝇线飞行控制计算机(FCC)软件开发,用于开关机构已被验证以用于飞行的安全性在其运作领域。本文还介绍了系统设计,软件机械化设计,用于交换算法的自动模型设计,以及系统验证和验证(V&V)。切换和数据通信的功能可以最大限度地减少两台计算机之间的干扰,两个控制法则或两者。这种成功的用于切换机制的飞行控制系统将为未来开发风险有挑战性的控制法算法,软件和硬件开发提供有用的设备。

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