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Position and Velocity Estimation of a Non-Cooperative Source From Asynchronous Packet Arrival Time Measurements

机译:基于异步数据包到达时间测量的非合作源的位置和速度估计

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We tackle the problem of identifying the trajectory of a moving radio source from Time of Arrival (TOA) measurements collected by a set of cooperating receivers. The considered system is completely asynchronous: nodes clocks are affected by unknown time and frequency offsets, and no control is exerted over packet transmission times. In the proposed solution, the receiver clock offset terms are estimated from TOA measurements on packets originated by non-cooperative reference transmitters, possibly but not necessarily coincidental with reference receivers. Transmission time ambiguity is resolved by exploiting the redundancy associated to the reception of the same packet at multiple receivers. A distinguishing feature of the proposed solution is that it seeks to identify the parameters of the trajectory as a whole, rather than the individual points of transmission as done in traditional point-based approaches. This allows the effective exploitation of TOA measurements collected in lossy scenarios, where the generic packet is received by a smaller subset of the available receivers (at least two). For the problem at hand, we provide distinct estimators based on TOA and Time-Difference of Arrival (TDOA) and prove their equivalence. Numerical results from simulations and from a real WiFi testbed are provided to validate the effectiveness of the proposed method.
机译:我们解决了从一组协作接收器收集的到达时间(TOA)测量中确定移动无线电源的轨迹的问题。所考虑的系统是完全异步的:节点时钟受未知时间和频率偏移的影响,并且对包传输时间没有任何控制。在提出的解决方案中,接收器时钟偏移项是根据对非协作参考发送器(可能但不一定与参考接收器一致)所发出的数据包进行TOA测量得出的。通过利用与多个接收器接收同一数据包相关的冗余来解决传输时间的歧义。所提出的解决方案的一个显着特征是它试图识别整个轨迹的参数,而不是像传统的基于点的方法那样识别传输的各个点。这允许有效利用在有损情况下收集的TOA测量值,在该情况下,通用数据包由可用接收器的较小子集(至少两个)接收。对于当前的问题,我们基于TOA和到达时差(TDOA)提供了不同的估计量,并证明了它们的等效性。提供了来自仿真和真实WiFi测试台的数值结果,以验证所提出方法的有效性。

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