Simultaneous Parametric and Functional Testing of Digital VLSI During Radiation Experiments

Author(s):  
Sevada Arabyan ◽  
Vladimir Shuvalov ◽  
Leonid Kessarinskiy ◽  
Alexey Shirin ◽  
Dmitry Boychenko
2020 ◽  
Vol 8 ◽  
pp. 14-21
Author(s):  
Surya Man Koju ◽  
Nikil Thapa

This paper presents economic and reconfigurable RF based wireless communication at 2.4 GHz between two vehicles. It implements digital VLSI using two Spartan 3E FPGAs, where one vehicle receives the information of another vehicle and shares its own information to another vehicle. The information includes vehicle’s speed, location, heading and its operation, such as braking status and turning status. It implements autonomous vehicle technology. In this work, FPGA is used as central signal processing unit which is interfaced with two microcontrollers (ATmega328P). Microcontroller-1 is interfaced with compass module, GPS module, DF Player mini and nRF24L01 module. This microcontroller determines the relative position and the relative heading as seen from one vehicle to another. Microcontroller-2 is used to measure the speed of vehicle digitally. The resulting data from these microcontrollers are transmitted separately and serially through UART interface to FPGA. At FPGA, different signal processing such as speed comparison, turn comparison, distance range measurement and vehicle operation processing, are carried out to generate the voice announcement command, warning signals, event signals, and such outputs are utilized to warn drivers about potential accidents and prevent crashes before event happens.


2011 ◽  
Vol 37 (1) ◽  
pp. 79-86
Author(s):  
Ming-Xia WANG ◽  
Xiang GAO ◽  
Qi-Jiao CHEN ◽  
Jian DONG ◽  
Wan-Chun ZHAO ◽  
...  

2019 ◽  
pp. 38-42
Author(s):  
S. Yu. Strakhov ◽  
A. A. Karasev

Authors explore issue of applicability of the methodology of building diagnostic software using network formal models in the functional testing of electronic equipment as part of complex technical systems. Using methods of system analysis allows to perform a decomposition of interdependent subsystems and to reveal basic acts of interaction between the control‑verification equipment and the object of diagnosis. Mathematical apparatus of Petri nets should be employed for the formalized description of such acts and determined the cause‑and‑effect relations in the diagnosed complex system`s processes. Network models properties studying (such as safety and accomplishment of the final positions) allows us to move to the test object`s algorithm`s developing. The article presents an approach of a formalized description for basic acts of interaction between the diagnosis system and the object.


Author(s):  
Lom Messan Hillah ◽  
Ariele-Paolo Maesano ◽  
Libero Maesano ◽  
Fabio De Rosa ◽  
Fabrice Kordon ◽  
...  

Author(s):  
Yeole Shivraj Narayan ◽  
S. Anand Kumar ◽  
Kode Jaya Prakash ◽  
B. Satyanarayana ◽  
S. Koteswari

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