Tutorial 2: "Low-Voltage Analog Baseband Circuitry for Wireless Communication"

Author(s):  
U Seng-Pan
Electronics ◽  
2021 ◽  
Vol 10 (24) ◽  
pp. 3054
Author(s):  
Kexin Ma ◽  
Jun Cai ◽  
Jinjun Feng

To realize the miniaturization of E-band traveling-wave tubes (TWTs), the size analysis and optimization design were carried out based on an improved cosine-vane folded waveguide (CV-FWG) slow-wave structure (SWS) that operates in a low voltage. In addition, a novel miniaturized T-shaped coupler was proposed to achieve a good voltage standing wave rate (VSWR) in a broad bandwidth. The coupler length was reduced by as much as 77% relative to an original design. With higher coupling impedance, the radius and length of the shortened SWS were optimized as 1.3 mm and 50 mm, respectively. Using microwave tube simulator suit (MTSS) and CST particle studio (PS), 3D beam–wave simulations at 9400 V, 20 mA predicted a gain of 20 dB and a saturated output power of 9 W. The simulation results for CV-FWG TWTs were compared with conventional FWG TWTs from 81 GHz to 86 GHz, showing significant performance advantages with excellent flatness for high-rate wireless communication in the future. The CV-FWG SWS circuit will be fabricated by 3D printing, and this work is underway.


2014 ◽  
Vol 644-650 ◽  
pp. 3505-3508
Author(s):  
Shou Yang Long ◽  
Xin Lu ◽  
Ye Shen He

The electric energy data acquire system with full coverage of power user is the important component of the deployment of strong & smart grid. The low-voltage power line communication has become a mainstream technology in the construction of electric energy data acquire system in China. Micro-power wireless is a short-range, low-power, low complexity, low-cost wireless communication technology, which has the characteristics of large capacity, short delay and high stability. However, a single communication mode is hard to meet the requirement of full coverage of electric power user because the structure of distribution network is complicated. This paper proposes an integrated solution based on the PLC and micro-power wireless communication for electric energy data acquire network system, which achieved good results in the field, validate the feasibility of the solution.


2016 ◽  
Vol 9 (2) ◽  
pp. 395-404
Author(s):  
Barun Basnet ◽  
Junho Bang ◽  
Jeho Song ◽  
Inho Ryu ◽  
Woochoun Lee

Author(s):  
Masanori FURUTA ◽  
Hidenori OKUNI ◽  
Masahiro HOSOYA ◽  
Akihide SAI ◽  
Junya MATSUNO ◽  
...  

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