在多路径导向频道上设计实践实践程序

Putra Yudhanata Pratama, N. Pramaita, N. Wirastuti, I. G. A. K. D. D. Harta
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引用次数: 0

摘要

对信息信号进行反射和分散,从而降低接收方接收信息信号的质量。这就导致了接收方信号的建设性和破坏性性质。这是经常发生的破坏性行为的一个例子。接收器correlation系统的实施是为了解决多路径偏移产生的问题。要获得最小误差的信号,就需要对每个多路径组件的传输过程进行分析。分析发现,从选择性方向的实践中发现的实践是多路径(Pseudo Noise)的活动,比多路径(6)的变化要好,最坏的是多路径(7)组件的变化。这证明和看到错误价值的比特率(BER)当每比特Energy To噪声功率密度打中Ratio (Eb -) = 10的多路径= 3的成绩在抽象组件:Barriers To the视线(LOS)可以因为diffraction,倒影》和资讯网signals哪种威尔scattering减少资讯网收到receiving side》之品质。这些迹象表明,在接收端的信号的构造和破坏的性质。破坏财产的行为正在拖延。接收器相关系统的实现是为了克服多路径影响所带来的问题。一种最小错误值的信号,一种分析需要与每个多路径的错误处理过程相关。分析结果表明,标准频率的结果最好是当多路径比较变量= 3比较多路径比较= 6,最坏的是多路径比较= 7。这是由价值证明的,当它是10的多路径属性= 3的多路径属性= 0.00368,而多路径属性= 6和多路径属性= 7价值0.00386和0.00507尊敬。基于这些结果,它可以得出结论,多个路径的数字对接收信号的质量有影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Desain Program Simulasi Unjuk Kerja Kode Pn Pada Kanal Multipath Fading
refleksi dan scattering pada sinyal informasi dimana akan mengurangi kualitas sinyal informasi diterima pada sisi penerima. Hal tersebut mengakibatkan adanya sifat konstruktif maupun destruktif pada sinyal di sisi penerima. Contoh sifat destruktif yang sering terjadi yakni fading dan delay . Sistem penerima correlation receiver diimplementasikan guna mengatasi masalah yang timbul akibat efek dari multipath fading . Untuk memperoleh sinyal dengan nilai error minimum, maka diperlukan analisis terkait proses transmisi pada masing-masing komponen multipath . Hasil analisis diperoleh bahwa unjuk kerja dari Kode PN ( Pseudo Noise ) pada kanal frequency selective fading yang lebih baik adalah variasi komponen multipath = 3 dibandingkan dengan variasi komponen multipath = 6 dan yang paling buruk adalah variasi komponen multipath = 7. Hal ini dibuktikan dengan melihat nilai Bit Error Rate (BER) saat Energy Per Bit To Noise Power Spectral Density Ratio (Eb/No) = 10 dengan komponen multipath = 3 memiliki nilai BER Abstract: Barriers to the Line of Sight ( LOS ) can cause diffraction, reflection and scattering of information signals which will reduce the quality of information received on the receiving side. This results in a constructive and destructive nature of the signal at the receiving end. Examples of destructive properties that often occur are fading and delay. The receiver correlation system is implemented to overcome the problems that arise due to the effects of multipath fading. To obtain a signal with a minimum error value, an analysis is needed related to the transmission process for each multipath component. The analysis results show that the performance of the PN code (Pseudo Noise) on the frequency selective fading channel is best when the multipath component variation = 3 compared to multipath component variation = 6, and the worst is multipath component variation = 7. This is proved by the value of BER when Eb/No = 10 with multipath component = 3 has BER value of 0.00368, while multipath component = 6 and multipath component = 7 have BER values of 0.00386 and 0.00507 respectively. Based on these results it can be concluded that the number of multipath components have an effect on the quality of the received signal.
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