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Attitude and orbit control systems for the LISA Pathfinder mission

机译:LISA探路者任务的姿态和轨道控制系统

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The main purpose of the USA Pathfinder mission is to provide in-orbit validation of the critical technologies necessary for LISA (Laser Interferometer Space Antenna), aiming at detecting gravitational waves generated by very massive objects such as black holes. The spacecraft consists of a Science Module (SCM) and a Propulsion Module (PRM). The former performs the science experiment, and the later provides the propulsive capability to raise the spacecraft from the injection orbit to the operational orbit at around L1 and is then separated from the former. The Spacecraft Attitude and Orbit Control System (AOCS) is actually composed of three distinct systems to fulfill the needs of the whole mission: - Composite AOCS, used to reach L1, aims at raising the Perigee through a succession of about 10 boosts performed with high thrust chemical propulsion; - Micro-propulsion AOCS takes over once the separation of the SCM from PRM has occurred and is based on micro-propulsion systems (micro-Newton electrical thrusters); - Drag-Free Attitude Control System (DFACS) is then used to perform science experiments. This article provides a comprehensive overview of the AOCS architecture, requirements, selected sensors and actuators, system design & evolution, and achieved performances. It focuses in particular on the Composite AOCS and the Micro-propulsion AOCS and will analyze the challenges of using micro-Newton electric propulsion.
机译:“美国探路者”任务的主要目的是对LISA(激光干涉仪空间天线)所需的关键技术进行在轨验证,旨在检测由黑洞等巨大物体产生的引力波。该航天器由一个科学模块(SCM)和一个推进模块(PRM)组成。前者进行科学实验,后者提供推进能力,将航天器从L1左右的注入轨道升至工作轨道,然后与前者分离。航天器的姿态和轨道控制系统(AOCS)实际上由三个不同的系统组成,可以满足整个任务的需求:-达到L1的复合AOCS,旨在通过连续进行约10次高功率提升来提高近地点推力化学推进-一旦将SCM与PRM分离,微推进AOCS就会接管,并基于微推进系统(微牛顿电动推进器); -然后,使用无阻力姿态控制系统(DFACS)进行科学实验。本文对AOCS体系结构,要求,所选的传感器和执行器,系统设计与发展以及已实现的性能进行了全面概述。它特别关注复合AOCS和微推进AOCS,并将分析使用微牛顿电推进的挑战。

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