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M-ary Signaling for Ultra Wideband Communication Systems Based on Pulse Position and Orthogonal Pulse Shape Modulation

机译:基于脉冲位置和正交脉冲形状调制的超宽带通信系统的Mary信令

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This paper describes a combined modulation scheme for time hopping ultra wideband (TH-UWB) radio systems based on orthogonal pulse position modulation (OPPM) and bi-orthogonal pulse shape modulation (BPSM). A set of M=2k symbols are constructed by using L = 2l orthogonal pulse positions and N = 2k-l-1 biorthogonal pulses, where k > 1 and l are nonnegative integers such that 0 les l les k-1. The selection of the number of pulse positions and pulses depends on the system performance and the availability of orthogonal pulses with estimable auto-correlation properties. This scheme allows an increase in the number of bits per symbol and consequently, reduces the duration of the pulse repetition interval which is obtain by increasing the number of orthogonal pulses. The proposed scheme achieves higher data rate by using a large number of orthogonal pulses in the same pulse repetition interval. It also reduces the system complexity by half by introducing antipodal version of orthogonal pulses. The proposed transmission scheme is analyzed through computer simulations in a multipath channel using two sets of orthogonal pulses.
机译:本文介绍了一种基于正交脉冲位置调制(OPPM)和双正交脉冲形状调制(BPSM)的跳时超宽带(TH-UWB)无线系统组合调制方案。通过使用L = 2 l 正交脉冲位置和N = 2 kl-1 双正交脉冲构造一组M = 2 k 符号,其中k> 1和l是非负整数,使得0 les l les k-1。脉冲位置和脉冲数的选择取决于系统性能以及具有可估计自相关特性的正交脉冲的可用性。该方案允许增加每个符号的位数,因此减少了通过增加正交脉冲的数量而获得的脉冲重复间隔的持续时间。所提出的方案通过在相同的脉冲重复间隔中使用大量的正交脉冲来实现更高的数据速率。通过引入正交脉冲的对偶形式,它还将系统复杂性降低了一半。通过使用两组正交脉冲的多路径信道中的计算机仿真,对提出的传输方案进行了分析。

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