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171.
Jinlu Hu Liang Jin Xiaojuan Wang Wenkai Cai Yongding Liu Gaohong Wang 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2014
The present study investigated the physiological and biochemical characteristics of Scytonema javanicum, a pioneer species isolated from desert biological crusts, under salinity stress. Pigment analysis showed that salinity decreased chlorophyll a and phycocyanin content, while low salinity increased carotenoid concentration and high salinity decreased carotenoid concentration. Salinity also inhibited CO2 assimilation rate and photosynthetic oxygen evolution in this cyanobacterium. Chlorophyll a fluorescence transient parameters (φPo, φEo, ψO, RC/ABS, RC/CS, PIABS, and PICS) were decreased under salt stress, while dVo/dto(Mo), Vj and φDo were increased. The decrease of ETRmax and Yield and the change of chlorophyll a fluorescence transients showed that salt stress had an important influence on photosynthesis. These results indicated that the effects of salinity stress on photosynthesis in S. javanicum may depend on the inhibition of electron transport and the inactivation of the reaction centers, but this inhibition may occur in the electron transport pathway at the PSII donor and acceptor sites. 相似文献
172.
飞行器结构部件冲击响应谱(SRS)匹配技术研究 总被引:2,自引:0,他引:2
本文介绍了利用TMS320C30高速数据处理芯片构成SRS分析与匹配系统的配置方案,以及利用此系统的特定子波加权合成-冲击波形,并反复修正此冲击波形,使其所产生的SRS与规定的谱值相匹配的迭代技术。 相似文献
173.
振动疲劳作为结构破坏失效形式之一,正日益得到重视。传统的船载雷达设备设计往往仅考虑静强度,从而导致结构抵抗疲劳破坏的能力不足。从模态分析的角度入手,利用模态叠加法进行随机振动分析,得到结构的各向应力功率谱密度。在此基础上进行基于Von Mises应力的谱分析,并分别从宽带和窄带过程的角度进行了疲劳寿命估算,最后对某船载雷达进行了随机振动疲劳分析。结果表明,船载雷达结构在满足静强度条件下,不一定能够满足抗疲劳性能要求。从模态振型分析的角度改进了结构设计,分析验证表明,改进后结构能够满足随机振动疲劳寿命要求。 相似文献
174.
《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2023,71(2):1319-1330
In radiation detector signal processing, usually, the charge-sensitive preamplifier converts the small charge signal coming from the semiconductor-based detector into voltage form and then the signal is further amplified to measure the energy of the incoming radiation. The voltage pulse from a charge-sensitive preamplifier (CSPA) is amplified using a shaping amplifier which reduces the signal bandwidth. To achieve better energy resolution, precise measurement of the peak amplitude of shaping amplifier output is required. The signal processing methods are available in which the signal from the charge-sensitive preamplifier can be directly digitized using high-speed Analog to Digital Converters (ADC), and then further signal processing such as gain and shaping is carried out inside the Field Programmable Gate Arrays (FPGA). For multiple detector systems, digital signal processing methods are quite difficult to implement in Field Programmable Gate Arrays (FPGA). In this context, The development of an alternative technique is initiated that uses a charge-sensitive preamplifier, shaping amplifier, low sampling analog-to-digital converter, and FPGA, where LaGrange’s interpolation technique is implemented in FPGA to precisely measure the peak of the analog pulse. In this paper, the comparison of the proposed method with other pulse amplitude measurement techniques is discussed. Results show that the implemented technique gives similar energy resolution compared to digital pulse processing and standard peak detector-based techniques. 相似文献