This research study represents an ongoing research effort on Unidentified Anomalous Phenomena (UAP) with a focus on anomalous propagation of radar echo returns, mirroring established theoretical constructs of gravitat...This research study represents an ongoing research effort on Unidentified Anomalous Phenomena (UAP) with a focus on anomalous propagation of radar echo returns, mirroring established theoretical constructs of gravitational effects on light, which occur at higher frequencies and shorter wavelengths within the Electromagnetic Spectrum. These influences are also illustrated through other technologies, including Light Detection and Ranging (LIDAR) and the chromatic effects captured by hyperspectral cameras. This research addresses the complexities of interpreting unusual propagation patterns, such as Long Delay Echoes (LDE) and unexpected Field Echoes (UFE), which disrupt the anticipated propagation and echo protocols, thereby challenging our understanding and comprehension of radio transmission norms that may be influenced by a form of quantum entanglement. The paper posits a significant and largely unexamined correlation between these phenomena in the context of UAP activity, highlighting the urgent need for further research and innovative strategies in navigation technology and environmental monitoring to investigate these potential occurrences, which have remained enigmatic for nearly a century. Radar signals are vulnerable to intricate dynamics that can lead to Unusual Field Echoes (UFE), resulting in emergent anomalies, such as Multiple echo returns and LDEs. This study employed a 3-centimeter marine-based X-band radar operating in two scan geometries and a portable short-range millimeter-wave Doppler radar system. An analysis of these radar echoes over a two-year study identified signal propagation that deviated from navigational standards on Plan Position Indicators (PPI). This paper explores and investigates the potential impacts of UAP on radar transmission routes. Examining these complexities makes a case for an enhanced understanding of the interactions between established technological factors and elusive aerial phenomena.展开更多
针对普通X86平台下硬件图形处理器不支持多层图像显示功能的情况,考虑现有雷达图像显示方法不适合实现雷达多种信息分层显示的问题,提出在Linux系统下使用内存模拟显存并结合Qt图形视图框架和OpenGL像素操作接口的方法,实现雷达信息分...针对普通X86平台下硬件图形处理器不支持多层图像显示功能的情况,考虑现有雷达图像显示方法不适合实现雷达多种信息分层显示的问题,提出在Linux系统下使用内存模拟显存并结合Qt图形视图框架和OpenGL像素操作接口的方法,实现雷达信息分层与高效图像显示。该方法能有效实现雷达显控的主要功能:雷达平面位置显示(plan position indicator,PPI)、警戒区域目标闪烁及船舶自动识别系统(automatic identification system,AIS)目标管理与显示。测试结果表明,该方法具有显示效率高、图像刷新流畅及硬件要求低等优点,该系统已成功应用于某型号船载雷达系统。展开更多
文摘This research study represents an ongoing research effort on Unidentified Anomalous Phenomena (UAP) with a focus on anomalous propagation of radar echo returns, mirroring established theoretical constructs of gravitational effects on light, which occur at higher frequencies and shorter wavelengths within the Electromagnetic Spectrum. These influences are also illustrated through other technologies, including Light Detection and Ranging (LIDAR) and the chromatic effects captured by hyperspectral cameras. This research addresses the complexities of interpreting unusual propagation patterns, such as Long Delay Echoes (LDE) and unexpected Field Echoes (UFE), which disrupt the anticipated propagation and echo protocols, thereby challenging our understanding and comprehension of radio transmission norms that may be influenced by a form of quantum entanglement. The paper posits a significant and largely unexamined correlation between these phenomena in the context of UAP activity, highlighting the urgent need for further research and innovative strategies in navigation technology and environmental monitoring to investigate these potential occurrences, which have remained enigmatic for nearly a century. Radar signals are vulnerable to intricate dynamics that can lead to Unusual Field Echoes (UFE), resulting in emergent anomalies, such as Multiple echo returns and LDEs. This study employed a 3-centimeter marine-based X-band radar operating in two scan geometries and a portable short-range millimeter-wave Doppler radar system. An analysis of these radar echoes over a two-year study identified signal propagation that deviated from navigational standards on Plan Position Indicators (PPI). This paper explores and investigates the potential impacts of UAP on radar transmission routes. Examining these complexities makes a case for an enhanced understanding of the interactions between established technological factors and elusive aerial phenomena.
文摘针对普通X86平台下硬件图形处理器不支持多层图像显示功能的情况,考虑现有雷达图像显示方法不适合实现雷达多种信息分层显示的问题,提出在Linux系统下使用内存模拟显存并结合Qt图形视图框架和OpenGL像素操作接口的方法,实现雷达信息分层与高效图像显示。该方法能有效实现雷达显控的主要功能:雷达平面位置显示(plan position indicator,PPI)、警戒区域目标闪烁及船舶自动识别系统(automatic identification system,AIS)目标管理与显示。测试结果表明,该方法具有显示效率高、图像刷新流畅及硬件要求低等优点,该系统已成功应用于某型号船载雷达系统。