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Universal Band Pass Sampling Algorithm for Integration of Multiple Wireless Technologies Using Software Defined Radio Platform

机译:使用软件定义的无线电平台集成多种无线技术的通用带通采样算法

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Software Defined Radio (SDR) architecture allows us to integrate different mobile technologies using common hardware but with different software modules. To achieve this, we need to keep the signal in digital form for as much portion of the circuitry as possible, so that the implementation could be carried out by programmable digital processors. For this purpose, the incoming radio frequency (RF) signal is down converted to baseband spectrum using band pass sampling method. Research works carried out so far in this field have developed a few algorithms for band pass sampling. But, these algorithms are not much useful for most of the mobile communication systems and they use complex methodology for computing the sampling frequency values. In order to use the SDR platform to integrate all current wireless technologies, an efficient, cost effective and less complex algorithm that can be labelled as universal band pass sampling algorithm is developed in this paper for multiple mobile systems. This algorithm is based on a novel idea of inserting guard bands between the signals which reduces the design complexities of perfect ADC and sharp cut off filters. Using this algorithm, valid sampling frequency ranges and corresponding IF values are calculated for down converting RF signals. The algorithm is tested for six RF signals of different wireless technologies which are integrated and simultaneously down converted using SDR based front end receiver and thus the system multiplies the base station capacity by a factor of six.?The simulation results are obtained and shown in this paper which proves that the algorithm developed works well for most of the wireless technologies.
机译:软件定义无线电(SDR)架构使我们能够使用通用硬件但使用不同软件模块来集成不同的移动技术。为了实现这一点,我们需要在电路的尽可能多的部分中保持数字形式的信号,以便可以通过可编程数字处理器执行该实现。为此,使用带通采样方法将输入的射频(RF)信号下变频为基带频谱。迄今为止,在该领域中进行的研究工作已经开发了几种用于带通采样的算法。但是,这些算法对于大多数移动通信系统而言并不是很有用,它们使用复杂的方法来计算采样频率值。为了使用SDR平台集成所有当前的无线技术,本文针对多种移动系统开发了一种高效,成本有效且不太复杂的算法,可以将其标记为通用带通采样算法。该算法基于在信号之间插入保护带的新颖思想,从而降低了完美ADC和尖锐截止滤波器的设计复杂性。使用该算法,可以计算出有效的采样频率范围和相应的IF值,以对RF信号进行下变频。该算法针对不同无线技术的六个RF信号进行了测试,这些信号被集成并使用基于SDR的前端接收器同时进行降频转换,因此系统将基站容量乘以六倍。本文证明了该算法的开发适用于大多数无线技术。

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