ring exchange
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2021 ◽  
Vol 26 (6) ◽  
pp. 473-480
Author(s):  
Gangqiang LI ◽  
Yu LIU ◽  
Lili ZHANG ◽  
Chunhong LI ◽  
Wei ZHANG

The traditional distributed tactical training simulation system is limited by the availability and bandwidth of military network transmission channel and does not have the feasibility of remote interconnection and spatial sub-regional deployment. In this paper, a new communication method of distributed tactical training simulation system is proposed to solve the problem of strong business coupling between nodes and system availability under the condition of low bandwidth. The operator of federated exchange, federated queue and their concepts and design requirements are firstly proposed, and the inverted tree, triangle, ring exchange topology and circular queue structure are further constructed. Theoretically, the expected goal of high-speed interworking between nodes in the cluster and high reliable transmission between clusters is realized. The example also shows that this method can significantly improve the throughput of single switching node and federated node after using reliability confirmation mechanism.


2021 ◽  
Vol 103 (9) ◽  
Author(s):  
Niklas Casper ◽  
Wolfram Brenig
Keyword(s):  

2020 ◽  
Vol 2020 (42) ◽  
pp. 6576-6587
Author(s):  
Tobias Blockhaus ◽  
Stefanie Bernhartzeder ◽  
Werner Kempinger ◽  
Christian Klein‐Heßling ◽  
Stefan Weigand ◽  
...  

2020 ◽  
Author(s):  
Tokuro Hata ◽  
Yoshimichi Teratani ◽  
Tomonori Arakawa ◽  
Sanghyun Lee ◽  
Meydi Ferrier ◽  
...  

Abstract Understanding the properties of correlated quantum liquids is a fundamental issue of condensed matter physics. Even in such a correlated case, fascinatingly, we can tell that the equilibrium fluctuations of the system govern its linear response to an external field, relying on the fluctuation dissipation relations based on the two-body correlations. Going beyond, up to the three-body correlations, is of importance for van der Waals force [1], the three-body force in nuclei [2], the Efimov state [3, 4], the ring exchange interaction in solid 3He [5, 6], and frustrated spin systems [7]. In our work, we have used a quantum dot in the Kondo regime, which is a controllable realization of such a correlated quantum liquid [8–11]. Thanks to the quality of our sample, where the Kondo effect in the unitary limit was achieved, we could quantitatively measure the three-body correlations and their role in the non-equilibrium regime, in perfect agreement with recent results of the Fermi liquid theory [12– 15]. In particular, we have demonstrated its importance when time-reversal symmetry is broken, solving a long-standing puzzle of the Kondo systems under the magnetic field [13]. The demonstrated method to relate three-body correlation and non-equilibrium transport opens up a way for further investigation of the dynamics of quantum many-body systems.


2020 ◽  
Vol 124 (7) ◽  
Author(s):  
Annabelle Bohrdt ◽  
Ahmed Omran ◽  
Eugene Demler ◽  
Snir Gazit ◽  
Fabian Grusdt

2019 ◽  
Vol 99 (5) ◽  
Author(s):  
C. B. Larsen ◽  
A. T. Rømer ◽  
S. Janas ◽  
F. Treue ◽  
B. Mønsted ◽  
...  

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