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Performance Analysis of SDPSK and 1-Bit Differential GMSK Modems for FFH-FDMA Satellite Communications Under Jamming

机译:干扰下FFH-FDMA卫星通信的SDPSK和1位差分GMSK调制解调器的性能分析

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In this paper, SDPSK and 1-bit differential-detected GMSK are proposed for use in a tactical FH-FDMA on-board processing (OBP) satellite communication system. The proposed waveforms are modeled and their respective error performances are simulated under the effects of jamming. Both waveforms, known to be relatively robust for ACI and ISI, are convolutionally encoded and Fast Frequency Hopped (FFH) to mitigate the effects of jamming which is modeled as Partial Band Noise Jamming (PBNJ) or Band Multi-Tone jamming (BMTJ) with AWGN. Simulations are conducted at the modem level as a preliminary step towards assessing their performances in a multichannel FDMA OBP satellite system. Results are presented for the various modem configurations, several of which illustrate the effect of the different BT products on the FFH/GMSK waveform. A comparative assessment of FFH/GMSK and FFH/SDPSK under identical jamming is also presented. Based on the empirical results obtained herein, the feasibility of using FFH/GMSK in a mobile tactical FDMA OBP satellite communication system is strongly dependent on the specific BT product used and the severity of ISI. Furthermore, when considering BMTJ with AWGN impairment the modem performance is highly dependent upon the amount of thermal noise present in the jammed channel. On the contrary, FFH/SDPSK is fairly robust and insensitive to broadband noise and ISI, and is thus tentatively preferred for deployment in a mobile tactical FFH/FDMA OBP satellite communication system.
机译:在本文中,建议将SDPSK和1位差分检测的GMSK用于战术FH-FDMA机载处理(OBP)卫星通信系统。对提出的波形进行建模,并在干扰的影响下模拟它们各自的误差性能。这两种已知对ACI和ISI相对稳健的波形均进行了卷积编码和快速跳频(FFH)以减轻干扰的影响,建模为部分频带噪声干扰(PBNJ)或频带多音干扰(BMTJ) AWGN。在调制解调器级别进行模拟,作为评估其在多通道FDMA OBP卫星系统中性能的第一步。给出了各种调制解调器配置的结果,其中一些说明了不同BT产品对FFH / GMSK波形的影响。还提出了在相同干扰下对FFH / GMSK和FFH / SDPSK的比较评估。基于本文获得的经验结果,在移动战术FDMA OBP卫星通信系统中使用FFH / GMSK的可行性在很大程度上取决于所使用的特定BT产品和ISI的严重性。此外,当考虑具有AWGN损害的BMTJ时,调制解调器的性能高度依赖于阻塞信道中存在的热噪声量。相反,FFH / SDPSK相当健壮,并且对宽带噪声和ISI不敏感,因此在移动战术FFH / FDMA OBP卫星通信系统中部署时是首选。

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