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In a One-Bit Rush: Low-Latency Wireless Spectrum Monitoring With Binary Sensor Arrays

机译:一站式服务:采用二进制传感器阵列的低延迟无线频谱监控

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Detecting the presence of a random wireless source with minimum latency utilizing an array of radio sensors is considered. The problem is studied under the constraint that the analog-to-digital conversion at each sensor is restricted to reading the sign of the analog received signal. We formulate the resulting digital signal processing task as a sequential hypothesis test in simple form. To circumvent the intractable probabilistic model of the multivariate binary array data, a reduced model representation within the exponential family in conjunction with a log-likelihood ratio approximation is employed. This approach allows us to design a likelihood-based sequential test and to analyze its analytic performance along Wald's classical arguments. In the context of wireless spectrum monitoring for satellite-based navigation and synchronization systems, we study the achievable processing latency, characterized by the average sample number, as a function of the binary sensors in use. The practical feasibility and potential of the discussed low-complexity sensing and decision-making technology is demonstrated via simulations.
机译:考虑使用无线传感器阵列以最小的等待时间检测随机无线源的存在。该问题是在每个传感器的模数转换被限制为读取模拟接收信号的符号的约束下进行研究的。我们将所得的数字信号处理任务表述为简单形式的顺序假设检验。为了规避多元二进制数组数据的难处理的概率模型,采用对数似然比近似的指数族内的简化模型表示。这种方法使我们可以设计基于似然的顺序检验,并根据Wald的经典观点分析其分析性能。在基于卫星的导航和同步系统的无线频谱监视的背景下,我们研究了可实现的处理等待时间,该等待时间以所使用的二进制传感器为函数,以平均样本数为特征。通过仿真演示了所讨论的低复杂度传感和决策技术的实际可行性和潜力。

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