Positioning using wave signal measurements is used in several applications, such as GPS systems, structure from sound and Wifi based positioning. Mathematically, such problems require the computation of the positions of receivers and/or transmitters as well as time offsets if the devices are unsynchronized. In this paper, we expand the previous state-of-the-art on positioning formulations by introducing Multiple Offsets Multilateration (MOM), a new mathematical framework to compute the receivers positions with pseudoranges from unsynchronized reference transmitters at known positions. This could be applied in several scenarios, for example structure from sound and positioning with LEO satellites. We mathematically describe MOM, determining how many receivers and transmitters are needed for the network to be solvable, a study on the number of possible distinct solutions is presented and stable solvers based on homotopy continuation are derived. The solvers are shown to be efficient and robust to noise both for synthetic and real audio data.
翻译:在几个应用中,例如全球定位系统系统、音频和Wifi基定位结构,使用波信号测量值定位。从数学角度讲,这些问题要求计算接收器和/或发射机的位置,如果设备不同步,则需要时间抵消。在本文中,我们通过引入多偏差多变化(MOM)来扩大先前关于定位配方的最新技术,这是一个新的数学框架,用已知位置上未同步的参照发射机的伪测距来计算接收器的位置。这可以适用于几种假设情况,例如低地球轨道卫星的音频和定位结构。我们用数学描述MOM,确定网络需要多少个接收器和发报送器才能安全。我们用数学描述MOM,确定网络需要多少个接收器和发报送器,对可能的不同解决方案的数量进行一项研究,并产生基于同质持续状态的稳定解答器。对于合成和真实音频数据来说,解调器的效率和坚固度都显示对噪音有效且有力。