标题: | 应用于无线干扰环境下结合时空编码技术及展频系统之研究 Combined Space-Time Coding with Frequency-Hopping Spread Spectrum for Wireless Jamming Channels |
作者: | 陈宗保 Chung-Pao Chen 王忠炫 Chung-Hsuan Wang 电信工程研究所 |
关键字: | 时空码;跳频展频技术;部分频道干扰杂讯;衰减;Space-time coding;Frequency-hopping spread spectrum;Partial-band noise jammers;Fading |
公开日期: | 2006 |
摘要: | 在无线传输的环境中,传输的信号常遭受到恶意的干扰源及通道衰减效应,导致接收讯号产生严重的失真。跳频展频系统是一般最常用来抑制干扰效应的技术,而具有分集增益及编码增益的时空编码技术可有效的降低通道衰减效应。因此,在本篇论文里吾人便结合了两者之优点,提出了时空编码结合跳频展频技术以提升传输系统在无线干扰环境中之整体效能。 为了能够专注于分析时空码的解码设计,吾人考虑了三种较简单的跳频方式。第一种定义为所有传送天线的讯号都跳至相同的频带上,称此为最差跳频。第二种情形为所有传送信号皆设计为避免互相发生碰撞,称此为最佳跳频。而最后一种所提出的跳频方式,便是任何传输信号皆随机的跳至任一频带上,称此为均匀跳频。其中最差及最佳跳频方式分别代表为此系统效能分析的上界与下界。而在跳频频带数够大及传送天线个数少的情况下,均匀跳频方式可使系统效能近似于使用最佳跳频方式。针对上述跳频方式,吾人推导出在路径增益已知或未知情况下此系统的最大可能性解码。然而,由于最大可能性解码相当的复杂,在实际应用中较不易实现,因此,吾人提出了一些次佳解码方式来降低解码复杂度,并模拟其在多重传送及接收天线架构下之效能。此外,吾人亦针对此系统提出了在无线干扰环境下好的时空码准则。最后经由模拟结果验证出,在相同的讯杂比及频宽效益的考量之下,此系统比传统单进单出编码效能来的更佳。 In wireless jamming environments, the transmitted signals usually suffer from hostile jammers and undesired channel impairments, e.g., multipath fading. Conventionally, frequency-hopping spread spectrum (FHSS) systems are most effective anti-jamming techniques, and space-time coding (STC), which introduces temporal and spatial correlation into the transmitted signals to achieve transmitter diversity without sacrificing the bandwidth, has been shown to provide excellent performance against multipath fading. Therefore, in this thesis, we combine STC with the FHSS to construct a powerful high-rate transmission scheme for wireless jamming channels. Three cases of FH are considered here to simplify the design of STC. One is the worst-case frequency hopping which hops the symbols from all transmitter antennas into the same frequency band, another is the perfect frequency hopping which avoids any possible collision of the transmitted symbols, and the other is the uniform frequency hopping which hops the transmitted symbol randomly over the total frequency hopping bands. The actual performance of the combined STC/FHSS system with arbitrary hopping patterns can then be upper and lower bounded by the evaluated performance of the worst case and perfect case, respectively. Moreover, the performance of the uniform case can approach the perfect case as the number of frequency bands is very large and few antennas are used for transmission. The maximum likelihood decoding of space-time codes is derived with respect to different reception conditions. Several suboptimal schemes are proposed for complexity reduction. We also present the design criteria for constructing good space-time codes with respect to the wireless jamming channels. Verified by the simulation results, the proposed system can provide better performance than the conventional schemes in terms of both bandwidth efficiency and signal-to-noise ratio. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT009413559 http://hdl.handle.net/11536/80820 |
显示于类别: | Thesis |
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