We present (on the 13<sup>th</sup> International Conference on Geology and Geophysics) the convincing evidence that the strongest earthquakes (according to the U.S. Geological Survey) of the Earth (during ...We present (on the 13<sup>th</sup> International Conference on Geology and Geophysics) the convincing evidence that the strongest earthquakes (according to the U.S. Geological Survey) of the Earth (during the range 2020 - 2023 AD) occurred near the predicted (calculated in advance based on the global prediction thermohydrogravidynamic principles determining the maximal temporal intensifications of the global seismotectonic, volcanic, climatic and magnetic processes of the Earth) dates 2020.016666667 AD (Simonenko, 2020), 2021.1 AD (Simonenko, 2019, 2020), 2022.18333333 AD (Simonenko, 2021), 2023.26666666 AD (Simonenko, 2022) and 2020.55 AD, 2021.65 AD (Simonenko, 2019, 2021), 2022.716666666 AD (Simonenko, 2022), respectively, corresponding to the local maximal and to the local minimal, respectively, combined planetary and solar integral energy gravitational influences on the internal rigid core of the Earth. We present the short-term thermohydrogravidynamic technology (based on the generalized differential formulation of the first law of thermodynamics and the first global prediction thermohydrogravidynamic principle) for evaluation of the maximal magnitude of the strongest (during the March, 2023 AD) earthquake of the Earth occurred on March 16, 2023 AD (according to the U.S. Geological Survey). .展开更多
梳理分析了软件通信体系架构(software defined radio,SCA)最新发展现状并设计了典型通用架构,研究了SCA的技术体制,总结了SCA技术体制中的规范特点和主要优势;对SCA的关键技术和标准演进进行了详细分析;给出了SCA的设计思路,并基于SCA...梳理分析了软件通信体系架构(software defined radio,SCA)最新发展现状并设计了典型通用架构,研究了SCA的技术体制,总结了SCA技术体制中的规范特点和主要优势;对SCA的关键技术和标准演进进行了详细分析;给出了SCA的设计思路,并基于SCA标准设计了典型软件无线电平台的通用架构,主要包括硬件平台、通用软件平台和波形组件,并给出基于该典型通用架构的设计实例。通过对SCA发展研究及相关典型通用架构设计,能够为新型软无电台设计提供相关研究成果和参考依据,推进新体制软件无线电电台跨越式发展。展开更多
文摘We present (on the 13<sup>th</sup> International Conference on Geology and Geophysics) the convincing evidence that the strongest earthquakes (according to the U.S. Geological Survey) of the Earth (during the range 2020 - 2023 AD) occurred near the predicted (calculated in advance based on the global prediction thermohydrogravidynamic principles determining the maximal temporal intensifications of the global seismotectonic, volcanic, climatic and magnetic processes of the Earth) dates 2020.016666667 AD (Simonenko, 2020), 2021.1 AD (Simonenko, 2019, 2020), 2022.18333333 AD (Simonenko, 2021), 2023.26666666 AD (Simonenko, 2022) and 2020.55 AD, 2021.65 AD (Simonenko, 2019, 2021), 2022.716666666 AD (Simonenko, 2022), respectively, corresponding to the local maximal and to the local minimal, respectively, combined planetary and solar integral energy gravitational influences on the internal rigid core of the Earth. We present the short-term thermohydrogravidynamic technology (based on the generalized differential formulation of the first law of thermodynamics and the first global prediction thermohydrogravidynamic principle) for evaluation of the maximal magnitude of the strongest (during the March, 2023 AD) earthquake of the Earth occurred on March 16, 2023 AD (according to the U.S. Geological Survey). .
文摘梳理分析了软件通信体系架构(software defined radio,SCA)最新发展现状并设计了典型通用架构,研究了SCA的技术体制,总结了SCA技术体制中的规范特点和主要优势;对SCA的关键技术和标准演进进行了详细分析;给出了SCA的设计思路,并基于SCA标准设计了典型软件无线电平台的通用架构,主要包括硬件平台、通用软件平台和波形组件,并给出基于该典型通用架构的设计实例。通过对SCA发展研究及相关典型通用架构设计,能够为新型软无电台设计提供相关研究成果和参考依据,推进新体制软件无线电电台跨越式发展。