M3D-ADTCO: Monolithic 3D Architecture, Design and Technology Co-Optimization for High Energy Efficient 3D IC

Author(s):  
Sebastien Thuries ◽  
Olivier Billoint ◽  
Sylvain Choisnet ◽  
Romain Lemaire ◽  
Pascal Vivet ◽  
...  
2015 ◽  
Vol 66 (5) ◽  
pp. 43-48
Author(s):  
Y. Yamamoto ◽  
H. Makiyama ◽  
T. Yamashita ◽  
H. Oda ◽  
S. Kamohara ◽  
...  

2020 ◽  
Vol 13 (2) ◽  
pp. 168-172
Author(s):  
Ravi Kumar Poluru ◽  
M. Praveen Kumar Reddy ◽  
Syed Muzamil Basha ◽  
Rizwan Patan ◽  
Suresh Kallam

Background:Recently Wireless Sensor Network (WSN) is a composed of a full number of arbitrarily dispensed energy-constrained sensor nodes. The sensor nodes help in sensing the data and then it will transmit it to sink. The Base station will produce a significant amount of energy while accessing the sensing data and transmitting data. High energy is required to move towards base station when sensing and transmitting data. WSN possesses significant challenges like saving energy and extending network lifetime. In WSN the most research goals in routing protocols such as robustness, energy efficiency, high reliability, network lifetime, fault tolerance, deployment of nodes and latency. Most of the routing protocols are based upon clustering has been proposed using heterogeneity. For optimizing energy consumption in WSN, a vital technique referred to as clustering.Methods:To improve the lifetime of network and stability we have proposed an Enhanced Adaptive Distributed Energy-Efficient Clustering (EADEEC).Results:In simulation results describes the protocol performs better regarding network lifetime and packet delivery capacity compared to EEDEC and DEEC algorithm. Stability period and network lifetime are improved in EADEEC compare to DEEC and EDEEC.Conclusion:The EADEEC is overall Lifetime of a cluster is improved to perform the network operation: Data transfer, Node Lifetime and stability period of the cluster. EADEEC protocol evidently tells that it improved the throughput, extended the lifetime of network, longevity, and stability compared with DEEC and EDEEC.


2021 ◽  
pp. 102867
Author(s):  
Niels Lassen ◽  
Tine Hegli ◽  
Tor Helge Dokka ◽  
Terje Løvold ◽  
Kristian Edwards ◽  
...  

2016 ◽  
Vol 6 (21) ◽  
pp. 1601037 ◽  
Author(s):  
Hong Gao ◽  
Tengfei Zhou ◽  
Yang Zheng ◽  
Yuqing Liu ◽  
Jun Chen ◽  
...  

Author(s):  
Chenggang Yuan ◽  
Min Pan ◽  
Andrew Plummer

Digital hydraulics is a new technology providing an alternative to conventional proportional or servovalve-controlled systems in the area of fluid power. Research is driven by the need for highly energy efficient hydraulic machines but is relatively immature compared to other energy-saving technologies. Digital hydraulic applications, such as digital pumps, digital valves and actuators, switched inertance hydraulic converters (SIHCs) and digital hydraulic power management systems, all promise high energy efficiency. This review introduces the development of SIHCs and evaluates the device configurations, performance and control strategies that are found in current SIHC research, particularly focusing on the work being undertaken in last 15 years. The designs for highspeed switching valves are evaluated, and their advantages and limitations are discussed. This article concludes with some suggestions for the future development of SIHCs.


2020 ◽  
Vol 10 (3) ◽  
pp. 733 ◽  
Author(s):  
Zhiyong Wu ◽  
Feiliang Chen ◽  
Zhiyi Xuan ◽  
Yuwei Chen ◽  
Wangzhou Shi ◽  
...  

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