Towards “zero-energy” using NEMFET-based power management for 3D hybrid stacked ICs

Author(s):  
George Razvan Voicu ◽  
Marius Enachescu ◽  
Sorin Dan Cotofana
Keyword(s):  
2018 ◽  
Vol 8 (1) ◽  
pp. 211-221
Author(s):  
Negar Aminoroayaei ◽  
Bahram Shahedi

In the current century, a suitable strategy is concerned for optimal consumption of energy, due to limited natural resources and fossil fuels for moving towards sustainable development and environmental protection. Given the rising cost of energy, environmental pollution and the end of fossil fuels, zero-energy buildings became a popular option in today's world. The purpose of this study is to investigate the factors affecting the design of zero-energy buildings, in order to reduce energy consumption and increase productivity, including plan form, climatic characteristics, materials, coverage etc. The present study collects the features of zero-energy building in Isfahan, which is based on the Emberger Climate View in the arid climate, by examining the books and related writings, field observations and using a descriptive method, in the form of qualitative studies. The results of the research showed that some actions are needed to save energy and, in general, less consumption of renewable energy by considering the climate and the use of natural conditions.


2014 ◽  
Vol 5 (2) ◽  
pp. 157-166 ◽  
Author(s):  
Cs. Szász

The paper presents an intelligent building (IB) development strategy emphasizing the locally available non-polluting renewable energy resources utilization. Considering the immense complexity of the topic, the implementation strategy of the main energy-flow processes is unfolded, using the net zero-energy building concept (NZEB). Noticeably, in the first research steps the mathematical background of the considered NZEB strategy has been developed and presented. Then careful LabView software-based simulations prove that the adopted strategy is feasible for implementation. The result of the above mentioned research efforts is a set of powerful and versatile software toolkits well suitable to model and simulate complex heating, ventilation and air-conditioning processes and to perform energy balance performance evaluations. Besides the elaborated mathematical models, concrete software implementation examples and measurement data also is provided in the paper. Finally, the proposed original models offer a feasible solution for future developments and research in NZEB applications modelling and simulation purposes.


2014 ◽  
Vol 9 (4) ◽  
pp. 792 ◽  
Author(s):  
Anna Pinnarelli ◽  
Giuseppe Barone ◽  
Giovanni Brusco ◽  
Alessandro Burgio ◽  
Daniele Menniti ◽  
...  

2020 ◽  
Vol 3 (1) ◽  
pp. 83-97
Author(s):  
Dedi Sumanto

Conflicts can be dangerous or may even benefit a relationship, depending on how they are resolved. Because conflict creates strong emotions, emotions are not suitable as a basis for constructive problem solving. Conflict escalation rarely benefits a relationship, especially if it creates selfishness, stubbornness, and withdrawal from relationships. What's worse, conflicts can lead to physical disputes and actual violence, a community can work together, but it can be that at other times the community that has worked together can turn into social conflict. Conversely, people who initially conflict can change to work together for a certain time. For that social processes that occur are very dynamic, these conditions are very dependent on the power management model that runs in the community concerned thus interpreting the conflict based on the causes of conflict are: specific behaviors, norms and personal roles and dispositions. Conflict can also occur in the name of religion, caused by several factors including: superficial religious knowledge, fanaticism, religion as a doctrine, symbols, religious figures, history, fighting for surge.


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