Now showing 1 - 10 of 17
  • Some of the metrics are blocked by your 
    Item type:Publication,
    Efficient Processing Time with Carry-lookahead Adder Memristor Rationed Logic
    (2023-01-01)
    Yamtim, Suparlerk
    ;
    This paper presents a novel approach to the design of full adder circuits, leveraging the unique properties of memristors and CMOS logic in a hybrid system. This paper explores the design and operation of memristor-based logic gates, including AND, OR, NAND, and NOR gates, realized through CMOS inverters. This paper further proposes a full adder circuit using Hybrid Memristor-CMOS logic and a carry look-Ahead adder (CLA). Our simulations demonstrate that the proposed full adder circuit outperforms traditional RCA-based circuits in terms of speed. This work contributes to the ongoing discourse in digital electronics, offering fresh perspectives and potential solutions to existing challenges, and hope it will inspire further research in the field of memristor-based digital electronics.
  • Some of the metrics are blocked by your 
    Item type:Publication,
    A 1.2 v low-power true single-phase clock CMOS 2/3 prescalers
    (2014-11-05) ;
    Tudsorn, Apirak
    This paper presents a low-power true single-phase clock 2/3 prescalers at 1.2 V supply voltage. The true single-phase clock divider was developed to help achieve low power and highspeed. All simulation results have been carried out by using Hspice program simulator based on 0.13μm CMOS technology. The power consumption of the proposed circuit is less than that of the previous circuits. The prescaler is capable of operating from 0.5 to 9.7 GHz.
  • Some of the metrics are blocked by your 
    Item type:Publication,
    Path loss comparison in 850 MHz and 1800 MHz frequency bands
    (2016-09-06)
    Bhupuak, Wiyada
    ;
    Nowadays people widely used mobile phone instead of using landlines phones. This paper proposes to compare the path loss in 850 MHz and 1800 MHz frequency bands by various path loss models. The path loss under terms of the transmitter height and the receiver height. The well known path loss model such as Walfisch-Ikegami (WI), SUI and Ericsson model used to simulate path loss by MATLAB. The results shown that when the longest distance WI model has the most path loss at the receiving antenna height is 1 and 5 meters. The path loss in the frequency bands 1800 MHz is greater than the path loss in the frequency bands 850 MHz under the same conditions. The path loss can be use to determine where to install the mobile base station with high quality. That means at the same distance if using the frequency band 1800 MHz for mobile network in the same technology will require to install the mobiles base station more than using frequency band 800 MHz.
  • Some of the metrics are blocked by your 
    Item type:Publication,
    1V High speed E-TSPC 2/3 prescalers
    (2019-07-01)
    Lawang, Itthiphat
    ;
    Tudsorn, Apirak
    ;
    This paper presents a 1V High Speed E-TSPC 2/3 Prescalers. The true single-phase clock divider was developed to constitute work faster and low power. All simulation results are performed using the Hspice simulator program. And uesd CMOS technology on 45 mm. The power consumption of the proposed circuit will consume less power than other circuits previously. The maximum input frequency for simulations of the suggested prescaler reaches up to 24GHz at 1V supply voltage.
  • Some of the metrics are blocked by your 
    Item type:Publication,
    Estimation of Protection Distance between Digital TV Signals in Adjacent Channel on Terrestrial Television
    (2025-01-01)
    Chomsuk, Kinupong
    ;
    The Office of the National Broadcasting and Telecommunication Commission (NBTC) of Thailand initiated the transition to digital broadcasting. The implementation process requires a broadcasting license and digital transmission testing, which was carried out on channel 29 and channel 30 - adjacent channels. Due to the 20 MHz spacing between these signals, adjacent channel interference is inevitable. This study experimentally evaluates the degradation caused by interference between digital television signals operating on adjacent channels in terrestrial television broadcasting.A novel aspect of this research is the use of field strength measurements to assess the impact of adjacent channel interference on digital TV signals within urban areas. The results demonstrate that most measured protection ratios (PR) align with the ITU-R recommended value of -11 dB. This confirms that the power ratio is affected by spectrum overlap rather than the distance from the trasmitter station.
  • Some of the metrics are blocked by your 
    Item type:Publication,
    Design high speed and low power hybrid full adder circuit
    (2018-12-24)
    Lueangsongchai, Sathaporn
    ;
    This paper presents 1-bit hybrid full adder cells circuit scheme that high speed and low power consumption. This Full adder cells circuit is designed utilization of XOR gate, XNOR gate, pass logic gate and transmission gate. Result of simulation by HSPICE program based on 16 nm CMOS technology with 0.9V power supply voltage and maximum frequency at 8GHz.
  • Some of the metrics are blocked by your 
    Item type:Publication,
    Maintenance Decision Modeling for Solar Photovoltaic Performance Prediction Using RMSE and MAPE Methods
    (2025-01-01)
    Aree, Sompong
    ;
    This study evaluates the efficiency and degradation of a 999.50 kWp photovoltaic (PV) system in Thailand under clear sky conditions. It found that the system efficiency ratio significantly decreased, 10% below the design threshold. Thus, a feasible and optimal model can be identified to support better maintenance decisions. In addition, a real-time performance monitoring approach is proposed to enable building operators to make informed decisions about mechanical maintenance or cleaning maintenance. This method involves comparing the actual power generation data with the efficiency prediction based on linear regression modeling. In addition, the impact of dirt accumulation on the efficiency of the PV modules is evaluated. The preliminary results indicate that the output power decreases to 213.74 kW, and the corresponding efficiency ratio is 46.76%. A linear regression-based warning mechanism is adopted to issue an alarm when the efficiency drops below a threshold of 50% ± 10 or when the power drops below 300 kW ± 50. The results show that using this prediction approach can improve the system efficiency ratio by up to 70% and increase the output power by more than 355.53 kW. The accuracy of the model is verified with a mean square error(RMSE) of 18.86% or more than 81.14% and a mean absolute percentage error(MAPE) of 4.56%. The study concludes that the prediction simulation can effectively guide maintenance interventions, which can improve both power generation and system efficiency. Future work may incorporate AI-driven predictive analysis to further optimize the PV system and maintenance strategies.
  • Some of the metrics are blocked by your 
    Item type:Publication,
    Recognition of Marijuana Plant Leaf Diseases Based on Deep Learning
    (2025-01-01)
    Kong, Qingye
    ;
    Plant pests and diseases are a common problem in agricultural production, and if not handled properly, they can seriously affect crop yield and quality. The era of the Internet of Things has arrived, and modern monitoring methods have also been applied to the growth monitoring of some crops, achieving good results. However, the cultivation of marijuana still relies mainly on traditional manual monitoring and modern methods have not yet been widely used. At the same time, the prevention of diseases and pests in marijuana is the focus, and if problems are not detected early, the losses can often be severe. This article proposes using machine learning to screen for abnormal leaves and confirm whether the leaves are healthy. After repeated training, the system can compare and classify different images of marijuana leaves and identify abnormal parts. The system is designed based on Python. The test results indicate that this technology can be applied to distinguish marijuana leaves to ensure early detection of diseases and pests, and to minimize agricultural losses caused by untimely remedial measures.
  • Some of the metrics are blocked by your 
    Item type:Publication,
    0.3 v Fully Differential Current Conveyor Using MIBD-DT MOST technique
    (2022-01-01) ;
    Torteanchai, Usa
    ;
    Wongprommoon, Natapong
    ;
    Jongchanachavawat, Wirote
    ;
    This paper presents a new fully differential second-generation current conveyor (FDCCII) using multiple-input bulk-driven dynamic threshold voltage MOS transistor (MIBD-DT MOST) technique. This FDCCII, the MOST techniques such as the multiple-input (MI), bulk-driven (BD) and dynamic threshold voltage (DT) have been used. The MIBD can be reduced the number of differential pair of FDCCII and the DT-MOST technique can be reduced the power supply requirement. Thus, the proposed FDCCII is capable to working with a supply voltage of 0.3 V and it consumes a 0.132 uW of power dissipation. The simulations were performed with SPICE program using the 0.18 um CMOS technology. To prove the workability of the new circuit, the proposed FDCCII has been used to realize universal filter.
  • Some of the metrics are blocked by your 
    Item type:Publication,
    A 1.1-V Low power true single-phase clock 2/3 prescaler
    (2017-10-19) ; ;
    Tudsorn, Apirak
    This paper is proposed a low-power CMOS 2/3 prescaler using true single-phase technique on 45 nm CMOS technology with 1.1 V. The true-single-phase clock divider is used to achieve low power. The prescaler is capable of operating from 1 to 16 GHz. When operating at 1 GHz, it saves more power consumption compared to that of a conventional circuit and lowpower true single-phase clock CMOS 2/3 prescalers circuit operating in divide-by-2 mode and in divide-by-3 mode, respectively.