首页> 外文期刊>IEEE Robotics and Automation Letters >Computing Minimum-Power Dipole Solutions for Interdipole Forces Using Nonlinear Constrained Optimization With Application to Electromagnetic Formation Flight
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Computing Minimum-Power Dipole Solutions for Interdipole Forces Using Nonlinear Constrained Optimization With Application to Electromagnetic Formation Flight

机译:非线性约束优化计算偶极间力的最小功率偶极子解及其在电磁编队飞行中的应用

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Electromagnetic formation flight (EMFF) denotes a method of formation flight control in which a cluster of spacecraft are equipped with controllable magnetic dipoles for coordination of their relative positions using interdipole forces. We present a method for finding a minimum-power dipole solution for a given set of desired interdipole forces. We approach this nonlinear constrained optimization problem using sequential quadratic programming, which requires a Jacobian relating changes in the dipoles to changes in forces, as well as the gradient and Hessian of a Lagrangian function. We derive compact analytic solutions for all three of these quantities, using linear-algebraic representations and vector calculus, which can be implemented numerically with a small set of simple functions. Our approach does not rely on arbitrary parameterizations as have prior approaches, and the structure enables further analysis of numerical conditioning and convergence. We conduct numerical simulations, using a number of configurations relevant to EMFF, to verify the method and characterize its performance when numerical routines are randomly initialized, which can serve as a benchmark against which future improvements can be quantified. The method presented may have other uses beyond EMFF, including being applied to new classes of modular magnetic systems.
机译:电磁编队飞行(EMFF)表示一种编队飞行控制方法,其中,航天器集群配备有可控磁偶极子,以利用偶极间力协调其相对位置。我们提出一种方法,用于针对给定的所需偶极间力集寻找最小功率偶极子解。我们使用顺序二次规划方法来解决此非线性约束优化问题,该问题需要将偶极子的变化与力的变化以及拉格朗日函数的梯度和黑森州联系起来的雅可比行列式。我们使用线性代数表示法和矢量演算来推导所有这三个量的紧凑型解析解,这可以通过一小组简单函数以数值方式实现。我们的方法不像以前的方法那样依赖于任意参数化,并且该结构能够进一步分析数值条件和收敛性。我们使用许多与EMFF相关的配置进行数值模拟,以验证该方法并在数值例程随机初始化时表征其性能,这可以作为可量化未来改进的基准。所提出的方法可能具有除EMFF以外的其他用途,包括应用于新型模块化磁系统。

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