scholarly journals Using profile information to assist advanced compiler optimization and scheduling

Author(s):  
W. Chen ◽  
R. Bringmann ◽  
S. Mahlke ◽  
S. Anik ◽  
T. Kiyohara ◽  
...  
2021 ◽  
Vol 2 (4) ◽  
Author(s):  
Nardine Osman ◽  
Ronald Chenu-Abente ◽  
Qiang Shen ◽  
Carles Sierra ◽  
Fausto Giunchiglia

AbstractIn this paper, we propose an architecture supporting online open communities, where by open communities, we mean communities where previously unknown people can join, possibly for a limited amount of time. The fundamental question that we address is “how we can make sure that an individual’s requirements are taken into consideration by the community while her privacy is respected and the community’s ethical code is not violated”. The main contributions are: (i) a conceptual framework which allows to describe individual and community profiles, including data and norms that provide information about their owner and their requirements, and (ii) a decentralised architecture enabling interactions that leverage the exchange of profile information among people and communities to ensure that requirements are fulfilled and privacy is respected.


2004 ◽  
Vol 43 (22) ◽  
pp. 4415 ◽  
Author(s):  
Marco Bruns ◽  
Stefan A. Buehler ◽  
John P. Burrows ◽  
Klaus-Peter Heue ◽  
Ulrich Platt ◽  
...  

2021 ◽  
Author(s):  
Nobuyuki Utsumi ◽  
F. Joseph Turk ◽  
Ziad. S. Haddad ◽  
Pierre-Emmanuel Kirstetter ◽  
Hyungjun Kim

<p>Passive microwave (MW) observation from low Earth-orbiting satellites is one of the major sources of information for global precipitation monitoring. Although various precipitation retrieval techniques based on passive MW observation have been developed, most of them focus on estimating precipitation rate at near surface height. Vertical profile information of precipitation is meaningful for process-based understanding of precipitation systems. Also, a previous study found that the use of the vertical precipitation profile information can improve sub-hourly surface precipitation estimates (Utsumi et al., 2019).</p><p>This study investigates the precipitation vertical profiles estimated by two passive MW algorithms, i.e., the Emissivity Principal Components (EPC) algorithm developed by authors (Turk et al., 2018; Utsumi et al., 2021) and the Goddard Profiling Algorithm (GPROF). The vertical profiles of condensed water content estimated by the two passive MW algorithms for the Global Precipitation Measurement Microwave Imager (GMI) observations are validation with the GMI + Dual-frequency Precipitation Radar combined algorithm (CMB) for June 2014 – May 2015. The condensed water content profiles estimated by the passive MW algorithms show biases in their magnitude (i.e., EPC underestimates the magnitude by 20 – 50% in the middle-to-high latitudes; GPROF overestimates the magnitude by 20 – 50% in the middle-to-high latitudes and more than 50% overestimation in the tropics). On the other hand, the shapes of the profiles are reproduced well by the passive MW algorithms. The relationship between the estimation performances of surface precipitation rate and vertical profiles are also investigated. It is shown that the error in the profile magnitude shows a clear positive relationship with the surface precipitation error. The estimation performance of the profile shapes also shows connection with the surface precipitation error. This result indicates that physically reasonable connections between the surface precipitation estimate and its associated profiles are achieved to some extent by the passive MW algorithms. This also implies that properly constraining physical parameters of the precipitation profiles would lead to the improvements of the surface precipitation estimates.</p><p>References</p><p>Utsumi, N., Kim, H., Turk, F. J., & Haddad, Ziad. S. (2019). Improving Satellite-Based Subhourly Surface Rain Estimates Using Vertical Rain Profile Information. Journal of Hydrometeorology, 20(5), 1015–1026.</p><p>Turk, F. J., Haddad, Z. S., Kirstetter, P.-E., You, Y., & Ringerud, S. (2018). An observationally based method for stratifying a priori passive microwave observations in a Bayesian-based precipitation retrieval framework. Quarterly Journal of the Royal Meteorological Society, 144(S1), 145–164.</p><p>Utsumi, N., Turk, F. J., Haddad, Z. S., Kirstetter, P.-E., & Kim, H. (2021). Evaluation of Precipitation Vertical Profiles Estimated by GPM-Era Satellite-Based Passive Microwave Retrievals. Journal of Hydrometeorology, 22(1), 95–112.</p>


Sign in / Sign up

Export Citation Format

Share Document