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Accurate synchronization using a full duplex DSSS channel

机译:使用全双工DSSS通道进行精确同步

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In the future, geolocation systems will incorporate the characteristics of communications networks with positioning technologies to create systems capable of performing location aware computing. Such systems have wide applications in troop movements, field hospitals and homeland defense, as well as dual-use areas such as firefighter safety and wireless healthcare systems. Of particular interest are systems which may be deployed in an ad hoc manner. By their very nature, these systems cannot make use of pre-existing infrastructure everything necessary to create a functional system must be self-contained, allowing a complete system to be deployed anywhere, at any time. In many of these applications, there are sub-meter accuracy requirements for indoor positioning. For example, it Is important to differentiate which side of a wall a firefighter is on. To achieve this level of accuracy, work is ongoing which exploits the properties of Orthogonal Frequency Division Multiplexing (OFDM) signals and signal coding to mitigate errors associated with multipath interference. However, even if multipath is eliminated, the ability of a system to provide accurate positioning is also critically related to the ability of the transmitters and receivers in the system to establish a reference time. Current simulations indicate that local synchronization must be within few hundred picoseconds. This paper describes a synchronization mechanism, which employs a duplex Direct Sequence Spread Spectrum (DSSS) signal on a single carrier frequency. Recent results indicate that a Maximum Likelihood Estimator (MLE)-based receiver for DSSS signals yields a significant improvement in receiver dynamic range. By using this increased headroom, and knowledge of the signal being transmitted by a node, it becomes possible to extract other DSSS signals on the same carrier frequency. Once a duplex channel is established, local synchronization can be established to an arbitrary accuracy using coding techniques.
机译:将来,地理定位系统将结合通信网络的特征和定位技术,以创建能够执行位置感知计算的系统。这种系统在部队调动,野战医院和国土防御以及消防员安全和无线医疗系统等双重用途领域具有广泛的应用。可以以临时方式部署的系统特别令人关注。就其本质而言,这些系统无法利用现有的基础结构来创建功能性系统所需的一切都必须是独立的,从而允许将完整的系统随时随地部署。在许多此类应用中,室内定位存在亚米精度要求。例如,区分消防员在墙壁的哪一侧很重要。为了达到这种精确度,正在进行工作,该工作利用正交频分复用(OFDM)信号和信号编码的特性来减轻与多径干扰相关的误差。但是,即使消除了多径,系统提供准确定位的能力也与系统中的发射器和接收器建立参考时间的能力密切相关。当前的模拟表明本地同步必须在几百皮秒内。本文介绍了一种同步机制,该机制在单个载波频率上采用双工直接序列扩频(DSSS)信号。最近的结果表明,基于最大似然估计器(MLE)的DSSS信号接收器在接收器动态范围方面产生了显着改善。通过使用这种增加的净空,以及对节点正在发送的信号的了解,可以在相同的载波频率上提取其他DSSS信号。一旦建立了双工信道,就可以使用编码技术以任意精度建立本地同步。

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