电子科技大学通信抗干扰全国重点实验室,四川 成都 611731
[ "宋强健(2001- ),男,电子科技大学硕士生,主要研究方向为卫星通信、通信信号处理。" ]
[ "陈雨濛(1997- ),男,电子科技大学博士生,主要研究方向为卫星通信系统资源分配和嵌入式多处理器系统。" ]
[ "朱立东(1968- ),男,博士,电子科技大学教授、博士生导师,主要研究方向为卫星通信、星地网络融合、通信信号处理、通信抗干扰/抗截获等。" ]
收稿:2025-01-16,
修回:2025-04-29,
纸质出版:2025-05-20
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宋强健,陈雨濛,朱立东.星地场景下OTFS系统的一种峰均比抑制算法[J].电信科学,2025,41(05):60-71.
SONG Qiangjian,CHEN Yumeng,ZHU Lidong.A peak-to-average power ratio reduction algorithm for OTFS systems in satellite-to-ground scenarios[J].Telecommunications Science,2025,41(05):60-71.
宋强健,陈雨濛,朱立东.星地场景下OTFS系统的一种峰均比抑制算法[J].电信科学,2025,41(05):60-71. DOI: 10.11959/j.issn.1000-0801.2025132.
SONG Qiangjian,CHEN Yumeng,ZHU Lidong.A peak-to-average power ratio reduction algorithm for OTFS systems in satellite-to-ground scenarios[J].Telecommunications Science,2025,41(05):60-71. DOI: 10.11959/j.issn.1000-0801.2025132.
正交时频空(orthogonal time frequency space,OTFS)调制在高多普勒环境下可实现可靠通信,适用于卫星通信等高动态场景。然而,其峰值与平均功率比(peak-to-average power ratio,PAPR)易超出功放线性范围,导致非线性失真。部分传输序列(partial transfer sequence,PTS)算法通过对数据符号分块再选取合适的旋转因子可以抑制PAPR。为提高PTS算法抑制PAPR的能力,提出了一种基于改进的灰狼优化(improved grey wolf optimizer,IGWO)算法的PTS算法,即IGWO-PTS算法,以适应离散组合优化问题并获得更优的子块划分方案,从而获得更好的PAPR抑制能力。推导证明了当相位旋转因子集合元素具有旋转对称性时,相位旋转因子组合空间可以收缩为原来的
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(
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为集合中元素个数),极大程度上降低了系统复杂度。仿真实验表明,IGWO-PTS算法相对于传统算法具有更好的PAPR抑制性能,并且在星地高动态场景下可以保持良好的传输可靠性。
Orthogonal time frequency space (OTFS) modulation is shown to enable reliable communication in high-Doppler environments
making it suitable for high-mobility scenarios such as satellite communication. However
its high peak-to-average power ratio (PAPR) often exceeded the linear range of power amplifi
ers
causing nonlinear distortion. The partial transmit sequence (PTS) algorithm was utilized to mitigate PAPR by dividing data symbols into subblocks and selecting appropriate phase rotation factors. To enhance the PAPR suppression capability of the PTS algorithm
an improved grey wolf optimizer-based PTS algorithm
termed IGWO-PTS
was proposed to address the discrete combinatorial optimization problem
achieving a more optimal subblock partitioning scheme and better PAPR reduction. It was mathematically provened that when the elements of the phase rotation factor set exhibited rotational symmetry
the phase rotation factor combination space could be reduced to
<math id="M3"><mrow><mrow><mn mathvariant="normal">1</mn></mrow><mo>/</mo><mrow><mi>K</mi></mrow></mrow></math>
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4.48733330
of its original size (where
K
denotes the number of set elements)
resulting in significant reduction in system complexity. Simulation results demonstrate that the IGWO-PTS algorithm outperformes traditional methods in PAPR reduction,maintaines reliable transmission in high-mobility satellite-to-ground scenarios.
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