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Passive satellite localization using TDOA/FDOA/AOA measurements

机译:使用TDOA / FDOA / AOA测量的被动卫星本地化

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Dual satellite TDOA/FDOA localization scheme has problems of multiple ambiguous solutions and poor localization results in the sub-satellite area along the dual satellite baseline direction. Passive localization using TDOA and FDOA measurements usually does not have direct solution and requires numerical methods to determine the emitter's geolocation. We suggest a satellite passive localization method fusing the TDOA/FDOA/AOA measurements based on particle swarm optimization(PSO), which provides an evolutionary computation method to solve the nonlinear optimal problem. To be more close to the practical use, the WGS-84 earth model is adopted in this work. However, PSO can not be directly applied to geolocation problem due to the nonlinear constraint of earth surface. We examined a PSO based method which let the particle swarm fly on the earth surface. Computer simulation results show the effectiveness of the new localization method.
机译:双卫星TDOA / FDOA定位方案在双卫星基线方向上具有多种暧昧解决方案的问题,并且定位差的定位导致亚卫星区域。使用TDOA和FDOA测量的被动定位通常没有直接解决方案,并且需要数值方法来确定发射器的地理位置。我们建议卫星被动定位方法融合基于粒子群优化(PSO)的TDOA / FDOA / AOA测量,这提供了一种解决非线性最佳问题的进化计算方法。要更接近实际使用,在这项工作中采用了WGS-84地球模型。然而,由于地球表面的非线性约束,PSO不能直接应用于地理位置问题。我们检查了一种基于PSO的方法,使粒子群在地表上捕获。计算机仿真结果表明了新本地化方法的有效性。

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