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Geolocation in ad hoc networks using DS-CDMA and generalized successive interference cancellation

机译:使用DS-CDMA和广义连续干扰消除的ad hoc网络中的地理位置

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摘要

Channel estimation and distributed positioning algorithms are presented for geolocation in a wireless ad hoc network. The network uses a direct-sequence code-division multiple-access-based handshaking protocol, in which nodes receive multiple acknowledgment packets in response to a request-to-send waveform. Round-trip travel time (RTT) and angle-of-arrival (AOA) measurements are obtained using the generalized successive interference cancellation/matching pursuits (GSIC/MP) algorithm. The performance of GSIC/MP is evaluated via simulation and comparison to the Crame/spl acute/r-Rao bound. Position estimates are initialized using linearized least-squares and updated by an extended Kalman filter-based algorithm that includes measurement validation for nonline-of-sight error mitigation. The method is generalized for distributed estimation in sparsely connected networks: at each node, position estimates from connected nodes are incorporated via a fusion algorithm and updated using locally processed RTT/AOA measurements. Finally, comprehensive ad hoc network simulations are presented including channel ray tracing, RTT/AOA estimation and validation, and distributed positioning.
机译:提出了用于无线自组织网络中的地理位置定位的信道估计和分布式定位算法。该网络使用直接序列码分多址基于握手的协议,其中节点响应于请求发送波形接收多个确认包。往返行程时间(RTT)和到达角(AOA)测量是使用广义连续干扰消除/匹配追踪(GSIC / MP)算法获得的。通过模拟和与Crame / spl急性/ r-Rao结合的比较来评估GSIC / MP的性能。位置估算值使用线性最小二乘法进行初始化,并通过基于卡尔曼滤波器的扩展算法进行更新,该算法包括针对非视距误差减轻的测量验证。该方法适用于稀疏连接网络中的分布式估计:在每个节点处,通过融合算法合并来自连接节点的位置估计,并使用本地处理的RTT / AOA测量值进行更新。最后,提出了全面的ad hoc网络仿真,包括信道射线跟踪,RTT / AOA估计和验证以及分布式定位。

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