Academic literature on the topic 'MSP430'

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Journal articles on the topic "MSP430"

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Liu, Han, Xiang Guang Chen, Lei Wu, Zhi Min Li, and Qiang Yang. "Development of the Online Automatic Measuring System for Total Sugar Content in Chlortetracycline Fermenter." Advanced Materials Research 760-762 (September 2013): 1067–70. http://dx.doi.org/10.4028/www.scientific.net/amr.760-762.1067.

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To realize online automatic measuring of total sugar content in chlortetracycline fermenter, we developed an online automatic measuring system based on MSP430 microcomputer. We designed the automatic sampling, filtering and washing of fermented liquid by controlling the I/O of MSP430 and the relay. The data of total sugar content was sampled and processed by MSP430. The data of total sugar content can display clearly and easily on host computer with the RS232 serial port connection between MSP430 and host computer. The software of this system was programed with C language based on IAR for MSP430 environment. The experiment results show that the online automatic measuring system of total sugar content in chlortetracycline fermenter can be met the demand of practical application.
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Yang, Qiang, Xiang Guang Chen, Lei Wu, and Han Liu. "Research and Application of Automatic Measuring System in Fermenters Total Sugar Content." Advanced Materials Research 760-762 (September 2013): 1071–74. http://dx.doi.org/10.4028/www.scientific.net/amr.760-762.1071.

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In order to achieve the automatic measurement of the total sugar content in Chlortetracycline fermentation kettle, MSP430 is designed as the hard core of the automatic measurement system. Based on MSP430 MCU, opening and closing valves of the automatic measurement system can be controlled, and the total sugar content can be acquired by measuring dope from filter. Wind turbine and valves of automatic measuring system are controlled in order to prepare for the next measurement of total sugar content. MSP430 software environment is developed using C language, and upper computer display system is developed using LabVIEW. The system motion state can be observed through the upper computer system. MSP430 can be connected upper computer through the RS232 protocol for data communications. Experimental results show that the automatic measurement system can meet the requirements of the actual application.
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Zhang, Chen, Yu Ming Xia, Wei Dong Wang, Cheng Lian Zhang, and Zhi Qiang Xu. "Design and Implementation of 1-Wire Bus Slave Device Based on MSP430 MCU." Advanced Materials Research 488-489 (March 2012): 1662–65. http://dx.doi.org/10.4028/www.scientific.net/amr.488-489.1662.

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This paper designs the hardware and software interface of the 1-Wire slave device based on MSP430 MCU. It gives the hardware circuit schematic and the software flow, describes the working principle. The design of hardware is very easy to use and the costs are low because the hardware of the 1-Wire bus slave device includes a MSP430 MCU and some ordinary components only. The software is easy to program and expends its function so for different purposes. By this design, the scope of application of 1-Wire bus is expended. The device has none interface of 1-Wire bus can communicate with MSP430 first and then communicate with master by the simulative 1-Wire bus slave device interface based on MSP430. If system has used 1-Wire device, using this design could reduce the complexity because need not use other information protocol.
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Seo, Hwajeong, Hyunjun Kim, Kyoungbae Jang, Hyeokdong Kwon, Minjoo Sim, Gyeongju Song, and Siwoo Uhm. "Compact Implementation of ARIA on 16-Bit MSP430 and 32-Bit ARM Cortex-M3 Microcontrollers." Electronics 10, no. 8 (April 11, 2021): 908. http://dx.doi.org/10.3390/electronics10080908.

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In this paper, we propose the first ARIA block cipher on both MSP430 and Advanced RISC Machines (ARM) microcontrollers. To achieve the optimized ARIA implementation on target embedded processors, core operations of ARIA, such as substitute and diffusion layers, are carefully re-designed for both MSP430 (Texas Instruments, Dallas, TX, USA) and ARM Cortex-M3 microcontrollers (STMicroelectronics, Geneva, Switzerland). In particular, two bytes of input data in ARIA block cipher are concatenated to re-construct the 16-bit wise word. The 16-bit word-wise operation is executed at once with the 16-bit instruction to improve the performance for the 16-bit MSP430 microcontroller. This approach also optimizes the number of required registers, memory accesses, and operations to half numbers rather than 8-bit word wise implementations. For the ARM Cortex-M3 microcontroller, the 8×32 look-up table based ARIA block cipher implementation is further optimized with the novel memory access. The memory access is finely scheduled to fully utilize the 3-stage pipeline architecture of ARM Cortex-M3 microcontrollers. Furthermore, the counter (CTR) mode of operation is more optimized through pre-computation techniques than the electronic code book (ECB) mode of operation. Finally, proposed ARIA implementations on both low-end target microcontrollers (MSP430 and ARM Cortex-M3) achieved (209 and 96 for 128-bit security level, respectively), (241 and 111 for 192-bit security level, respectively), and (274 and 126 for 256-bit security level, respectively). Compared with previous works, the running timing on low-end target microcontrollers (MSP430 and ARM Cortex-M3) is improved by (92.20% and 10.09% for 128-bit security level, respectively), (92.26% and 10.87% for 192-bit security level, respectively), and (92.28% and 10.62% for 256-bit security level, respectively). The proposed ARIA–CTR implementation improved the performance by 6.6% and 4.0% compared to the proposed ARIA–ECB implementations for MSP430 and ARM Cortex-M3 microcontrollers, respectively.
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Vasuki, G., P. A. Mohana Raja, and R. Shanmuga Sundaram. "Smart Traffic Flow Control Using MSP430." i-manager's Journal on Embedded Systems 3, no. 2 (July 15, 2014): 9–14. http://dx.doi.org/10.26634/jes.3.2.3203.

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Vasuki, G., P. A. Mohana Raja, and R. Shanmuga Sundaram. "Smart Traffic Flow Control Using MSP430." i-manager's Journal on Embedded Systems 3, no. 2 (July 15, 2014): 9–14. http://dx.doi.org/10.26634/jit.3.2.3203.

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Gao, Mei Feng, and Shao Peng Yang. "Design of Spectral Acquisition System Based on the Linear Array CCD ILX554B." Applied Mechanics and Materials 556-562 (May 2014): 1926–31. http://dx.doi.org/10.4028/www.scientific.net/amm.556-562.1926.

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The linear array CCD spectral acquisition system for a Photoelectric Direct Reading Spectrometer is presented. The spectral acquisition circuit, data processing and shortage circuit are designed. Taking microcontroller MSP430 as a control chip, Using PWM signals generated by MSP430 timer, the correct timing of CCD clock pulse, ADC clock and FIFO write enable signal was established. The experiment shows that the synchronization of spectral acquisition, data conversion and shortage was achieved, and the spectral acquisition system is feasible and reliability.
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Li, Qi, and Xiao Jian Zhang. "A Design of High Smart Pressure Sensor Based on Microcontroller and BP Network." Applied Mechanics and Materials 65 (June 2011): 122–25. http://dx.doi.org/10.4028/www.scientific.net/amm.65.122.

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We introduce the high smart pressure sensor’s hardware-circuit design which based on Ultra-Low Power MSP430 MCU, analyze the BP network algorithm in temperature compensation to deal with the pressure sensor’s temperature drift, and collect pressure sensor’s temperature and pressure signals by MCU for offline training in BP network. The result shows that the MSP430 MCU can reduce system power and its rich exterior equipments can reduce the size of pressure sensor, the accuracy is improved by BP network algorithm, zero drift and time drift are best controlled.
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Ding, Jian Jun, Jun Wang, Chao Sun, Yan Qun Liu, Jia Yan Shao, and Jing Li Xue. "Design of pH Meter Based on msp430." Applied Mechanics and Materials 397-400 (September 2013): 936–42. http://dx.doi.org/10.4028/www.scientific.net/amm.397-400.936.

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The pH meter based on msp430 has designed in this paper, and which can accomplish all kinds of functions, for instance, data collection, data analysis, local control and telecommunication. In order to improve the accuracy of data collection we use dual high impedance differential input circuit. And choose temperature transducer DS18B20 which has a function of automatic temperature compensation to reduce the effects of temperature fluctuation on measurement. So it can achieve accurate determination of the pH value of the material.
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Ji, Ling. "Control System Design Based on MSP430 Microcontroller." Advanced Materials Research 1030-1032 (September 2014): 1438–41. http://dx.doi.org/10.4028/www.scientific.net/amr.1030-1032.1438.

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Single-chip microcomputer MSP430F44 is the core control chip of the multifunction TIG welding controller, MCU is produced by TI and 16-bit flash type, the chip control system uses C430 language to modular software programming, coordination with other subroutines by the main program module , through a simple interface conditioning circuitry on a TIG welder can achieve a variety of welding processes, the welding flexible demand is satisfied. One of the most important module of the welding current waveform generator module, the welding waveform parameters are automatically generated by two way, one is the welding methods, the other is the welding parameters, then judge the input signal of the welding gun, when the gun is pressed, the corresponding waveform output; the welding current waveform output can be achieved using this software, is displayed on the welding current waveform generator.
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Dissertations / Theses on the topic "MSP430"

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Kaluža, Jan. "Pokročilý simulátor mikrokontrolérů rodiny MSP430." Master's thesis, Vysoké učení technické v Brně. Fakulta informačních technologií, 2014. http://www.nusl.cz/ntk/nusl-236101.

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The goal of this master's thesis is to provide an introduction to MSP430 microcontrollers and to design a simulator of these microcontrollers, focusing on easy implementation of extensions using peripherals. After a short introduction, the MSP430 microcontrollers are briefly described, including their internal peripherals and the formats used to store the binary executable code. The thesis continues with a  description of discrete event simulation using the DEVS formalism. Based on previous chapters, the new simulator (consisting of a simulation core, graphical user interface and library for MSP430 microcontroller simulation)  is designed and implemented. The implementation is tested by comparison with real microcontroller and in the end of the thesis, there is a summary and evaluation of the implemented simulator.
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Tapaninen, J. (Juuso). "MSP430- ja AVR-mikrokontrollerien I/O-rakenteet." Bachelor's thesis, University of Oulu, 2019. http://jultika.oulu.fi/Record/nbnfioulu-201905141778.

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Tiivistelmä. Tässä tutkimuksessa perehdytään MSP430- ja AVR-mikrokontrollereiden I/O-toteutuksiin ja tutkitaan niiden käyttäytymistä. Toteutuksiin perehtyminen sisältää digitaalisen rakenteen läpikäymisen vaihe vaiheelta. Käyttäytymistä tutkitaan mittaamalla muuttuva-arvoisen pinnin nousu- ja laskuajat, minkä lisäksi tutkimuksessa mitataan pinnin resistanssit usealla käyttöjännitteellä.The I/O structure of MSP430 and AVR microcontrollers. Abstract. This research is about exploring the implementation and behaviour of the I/O structure of MSP430 and AVR microcontrollers. The implementation part includes reviewing the digital design step by step. Behaviour is reviewed by measuring the rise and fall times of a pin that is changing its state. In addition, pin resistances are measured using several operating voltages.
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John, Lijo. "Implementation of bitmask based code compression algorithm on MSP430 microcontroller." University of Cincinnati / OhioLINK, 2012. http://rave.ohiolink.edu/etdc/view?acc_num=ucin1352402739.

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Fulbright, Jr Thomas. "DESIGN IMPLEMENTATION OF A MICROCONTROLLER BASED EXTERNAL FACILITY ACCESS CONTROL SYSTEM." Master's thesis, University of Central Florida, 2005. http://digital.library.ucf.edu/cdm/ref/collection/ETD/id/2830.

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In order to solve the College of Engineering and Computer Science facility access problem, an automated system that provides exterior doors with a time schedule and allows authorized users to gain access to the facility after hours was developed. A microcontroller based system has been designed to interface with a personal computer. The system designed within this thesis can be used as a starting point for multiple facility access control systems. This thesis will describe the design, integration, test, and final delivery of a facility access system that incorporates the Texas Instruments MSP430 microcontroller, a magnetic card swipe reader, and software developed in Microsoft Visual Basic .Net to provide a reliable and robust system for the College of Engineering and Computers Sciences needs.
M.S.Cp.E.
Department of Electrical and Computer Engineering
Engineering and Computer Science
Computer Engineering
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Garcia-Fernández, Victor. "Use of Gravity Sensors for Free Space Orientation." Thesis, KTH, Skolan för informations- och kommunikationsteknik (ICT), 2015. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-174845.

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This thesis deals with different approaches to filtering the signal output of a three axis accelerometerfor free space orientation, that is, finding the orientation of a sensor relative to gravity. Theplatform this orientation system is to be developed for is a low-power, high-efficiency fixed-pointmath microprocessor, therefore efficiency and mathematical operation precision are factors thatalso need to be taken into consideration in this work.This is an exploratory work which goals are to analize potential filtering solutions for free spaceorientation with a three-axis accelerometer, develop a tool to validate the theorical analysis, studythe repercusions of limited precision math on those algorithms and implement a filtering solutionas versatile as possible.The goal of finding the orientation with the output of an accelerometer and without a prioriinformation is deceptively simple: while in relaxed state and within inertial systems the outputof a three axis accelerometer and the direction of gravity is the same, when that hypothesis istaken away measurements output by the accelerometer include both gravity and acceleration dueto external forces applied to the system.The contributions of this thesis are a discussion of potential solutions for free space orientationwith unrestrictive preconditions by use of an accelerometer, and an implementation of such solutionfor the MSP430, popular platform of choice for digital signal processing. The main purposeof such a solution is to improve the precision with which gravity is estimated from the outputof the accelerometer. Potential applications of this work are relative position tracking, mapping,positioning systems (for example, within buildings or vehicles, where any other existing positioningsystem cannot work, such as tunnels for GPS).Instead of just low-pass filtering the output of the accelerometer, estimations to the state ofexternal forces applied to the system and tracking of changes to those forces are presented. Tomodel that system, the Kalman filter and the Particle filter are introduced and analyzed as potentialsolutions.This document includes a discussion of both Kalman and Particle filters, implementation ofa tool to compare and validate the models to estimate gravity, a discussion of the effect of fixedpoint math to those models and an implementation of a gravity estimation algorithm that is typeand plattform agnosic based on the output of a 3-axis accelerometer.All relevant code has been included as an appendix to this work This thesis deals with di_erent approaches to _ltering the signal output of a three axis accelerometer for free space orientation, that is, _nding the orientation of a sensor relative to gravity. The plattform this orientation system is to be developed for is a low-power, high-e_ciency _xed-point math microprocessor, therefore e_ciency and mathematical operation precision are factors that also need to be taken into consideration in this work. This is an exploratory work which goals are to analize potential _ltering solutions for free space orientation with a three-axis accelerometer, develop a tool to validate the theorical analysis, study the repercusions of limited precision math on those algorithms and implement a _ltering solution as versatile as possible. The goal of _nding the orientation with the output of an accelerometer and without a priori information is deceptively simple: while in relaxed state and within inertial systems the output of a three axis accelerometer and the direction of gravity is the same, when that hypothesis is taken away measurements output by the accelerometer include both gravity and acceleration due to external forces applied to the system. The contributions of this thesis are a discussion of potential solutions for free space orientation with unrestrictive preconditions by use of an accelerometer, and an implementation of such solution for the MSP430, popular platform of choice for digital signal processing. The main purpose of such a solution is to improve the precision with which gravity is estimated from the output of the accelerometer. Potential applications of this work are relative position tracking, mapping, positioning systems (for example, within buildings or vehicles, where any other existing positioning system cannot work, such as tunnels for GPS). Instead of just low-pass _ltering the output of the accelerometer, estimations to the state of external forces applied to the system and tracking of changes to those forces are presented. To model that system, the Kalman _lter and the Particle _lter are introduced and analyzed as potential solutions. This document includes a discussion of both Kalman and Particle _lters, implementation of a tool to compare and validate the models to estimate gravity, a discussion of the e_ect of _xed point math to those models and an implementation of a gravity estimation algorithm that is type and plattform agnosic based on the output of a 3-axis accelerometer. All relevant code has been included as an appendix to this work.
Denna avhandling beskriver olika metoder för filtrering av utsignalen från en tre-axlig accelerationsmätare för orientering i ledigt utrymme, det vill säga att finna en sensors orientering iförhållande till tyngdkraften. Den plattform detta orienteringssystem ska utvecklas för är en högeffektivmikro-processor med fixed-point matematik, därför är även matematisk operationsprecisionoch efiektivitet faktorer som måste beaktas i detta arbete.Detta är ett förberedande arbete där målet är att analysera möjliga filtreringslösningar för friutrymmesorientering med en tre-axlig accelerationsmätare, utveckla ett verktyg för att validerateoretisk analys, studera konsekvenserna av att använda begränsad precisionsmatematik både algoritmernaoch implementera en filtreringslösning för mikroprocessorerna.Målet med att finna orienteringen med hjälp av utsignalen från en accelerationsmätare ochutan a priori-information är bedrägligt enkel: I avslappnat tillstånd och inom interna system ärutgången hos en tre-axlig accelerationsmätare och tyngdkraftens riktning densamma, när den hypotesenär borttagen visar mätningar att utgång av accelerometern inkluderar både gravitationoch acceleration pågrund av yttre påfrestningarna påsystemet.Bidragen från denna uppsats är en diskussion om möjliga lösningar för orientering i frittutrymme med orestriktiva förutsättningar genom användning av en accelerationsmätare, och ettgenomförande av en sådan lösning för fixed-point matematik mikrokontrollerna. Det huvudsakligasyftet med en sådan läsning är att förbättra den precision med vilken gravitation uppskattas frånutsignalen från en accelerationsmätare. Potentiella tillämpningar av detta arbete är relativ positionsspårning, kartläggning, positioneringssystem (till exempel inom byggnader eller fordon, därandra befintliga positioneringssystem inte kan arbeta, till exempel tunnlar för GPS).Istället för att bara lågpass-filtrera utsignalen från en accelerationsmätare appliceras uppskattningartill stadiet av yttre krafter påsystemet och spårning av ändringar i dessa krafter presenteras.För att modellera systemet introduceras Kalman-filter och partikelfilter för att analyseras som potentiellalösningar.Det här dokumentet innehåller en diskussion om både Kalman och Partikelfilter, implementationav ett verktyg för att jämföra och validera modeller i syfte att uppskatta gravitationen,en diskussion om effekten av fixed-point matematik för dessa modeller och ett genomförande aven gravitationsuppskattningsalgoritm för mikrokontrollerna utifrån utgången hos en treaxlig accelerometer.Relevant kod finns som bilaga till detta arbete.. Denna avhandling beskriver olika metoder för filtrering av utsignalen från en tre-axlig accelerationsm ätare för orientering i ledigt utrymme, det vill säga att finna en sensors orientering i förhållande till tyngdkraften. Den plattform detta orienteringssystem ska utvecklas för är en högeffektiv mikro-processor med fixed-point matematik, därför är även matematisk operationsprecision och efiektivitet faktorer som måste beaktas i detta arbete. Detta är ett förberedande arbete där målet är att analysera möjliga filtreringslösningar för fri utrymmesorientering med en tre-axlig accelerationsmätare, utveckla ett verktyg för att validera teoretisk analys, studera konsekvenserna av att använda begränsad precisionsmatematik både algoritmerna och implementera en filtreringslösning för mikroprocessorerna. Målet med att finna orienteringen med hjälp av utsignalen från en accelerationsmätare och utan a priori-information är bedrägligt enkel: I avslappnat tillstånd och inom interna system är utgången hos en tre-axlig accelerationsmätare och tyngdkraftens riktning densamma, när den hypotesen är borttagen visar mätningar att utgång av accelerometern inkluderar både gravitation och acceleration pågrund av yttre påfrestningarna påsystemet. Bidragen från denna uppsats är en diskussion om möjliga lösningar för orientering i fritt utrymme med orestriktiva förutsättningar genom användning av en accelerationsmätare, och ett genomförande av en sådan lösning för fixed-point matematik mikrokontrollerna. Det huvudsakliga syftet med en sådan läsning är att förbättra den precision med vilken gravitation uppskattas från utsignalen från en accelerationsmätare. Potentiella tillämpningar av detta arbete är relativ positionssp årning, kartläggning, positioneringssystem (till exempel inom byggnader eller fordon, där andra befintliga positioneringssystem inte kan arbeta, till exempel tunnlar för GPS). Istället för att bara lågpass-filtrera utsignalen från en accelerationsmätare appliceras uppskattningar till stadiet av yttre krafter påsystemet och spårning av ändringar i dessa krafter presenteras. För att modellera systemet introduceras Kalman-filter och partikelfilter för att analyseras som potentiella lösningar. Det här dokumentet innehåller en diskussion om både Kalman och Partikelfilter, implementation av ett verktyg för att jämföra och validera modeller i syfte att uppskatta gravitationen, en diskussion om effekten av fixed-point matematik för dessa modeller och ett genomförande av en gravitationsuppskattningsalgoritm för mikrokontrollerna utifrån utgången hos en treaxlig accelerometer. Relevant kod finns som bilaga till detta arbete..
Este documento presenta y discute diferentes soluciones para filtrar la señal de salida de un acelerómetro triaxial con el objetivo de conocer su orientación en el espacio libre, es decir, estimar la orientacifion del senson en relación con la gravedad. La plataforma sobre la cual estos algoritmos han de ser desplegados es un microcontrolador de bajo consumo y alta eficiencia, TI MSP430, por ello, la eficiencia y la precisión de las operaciones matemáticas en los diferentes algoritmos son también tratadas en este documento. Éste es un trabajo de exploración cuyos objectivos son el análisis de soluciones para el filtrado de la señal de un acelerómetro triaxial, el desarrollo de una herramienta para la validación del análisis teórico, el estudio de la repercusión sobre los algoritmos de filtrado de la limitada precisión en las operaciones matemáticas, y la implementación de una solución de filtrado para el microcontrolador MSP430 de Texas Instruments. Encontrar la orientación de un sensor con la señal de salida de un acelerómetro es un abjetivo relativamente complejo: mientras el sensor están estacionario, la señal de salida es la orientación, pero cuando fuerzas externas son aplicadas sobre el sensor, estas fuerzas contribuyen como ruido al problema que se presenta. Las contribuciones de este documento son una discusión sobre potenciales soluciones para el filtrado de la señal de un acelerómetro triaxial para la orientación en el espacio libre, y una implementación de una solución para el microcontrolador MSP430, plataforma popular para el proceso digital de señales. La principal misión de esta implementación es la mejora de la precisión con la que se estima la dirección de la gravedad mediante el uso de un acelerómetro triaxial. Aplicaciones potenciales están relacionadas con seguimiento de posición, mapeado, sistemas de posicionamiento (por ejemplo, dentro de vehiculos o edificios donde otros sistemas no funcionarían, como por ejemplo GPS en un túnel). En lugar de un simple filtro paso bajo para eliminar el ruido introducido por fuerzas externas, estimaciones del estado de las fuerzas externas y filtros para el seguimiento de las mismas son presentados en este documento. Para modelar dicho sistema, se introcucen el filtro de Kalman y el filtro de Partículas, y ambos se analizan como soluciones para este problema. Este documento incluye una discusión de ambos tros, la implementacion de una herramienta de validación para los mismos, anfialisis del efecto de la introducción de álgebra de punto fijo sobre los modelos, y una implementacion del sistema para el MSP430 de Texas Instruments. El código relevante de este trabajo se incluye como apéndice a este trabajo.
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Michalek, Paul. "AN AUTHENTIC ECG SIMULATOR." Master's thesis, University of Central Florida, 2006. http://digital.library.ucf.edu/cdm/ref/collection/ETD/id/2500.

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An ECG (electrocardiogram) simulator is an electronic tool that plays an essential role in the testing, design, and development of ECG monitors and other ECG equipment. Principally an ECG simulator provides ECG monitors with an electrical signal that emulates the human heart's electrical signal so that the monitor can be tested for reliability and important diagnostic capabilities. However, the current portable commercially available ECG simulators are lacking in their ability to fully test ECG monitors. Specifically, the portable simulators presently on the market do not produce authentic ECG signals but rather they endeavor to create the ECG signals mathematically. They even attempt to mathematically create arrhythmias (irregular heartbeats of which there are many different types). Arrhythmia detection is an important capability for any modern ECG monitor because arrhythmias are often the critical link to the diagnosis of heart conditions or cardiovascular disease. The focus of this thesis is the design and implementation of a portable ECG simulator. The important innovation of this prototype simulator is that it will not create its ECG signals mathematically, but rather it will store ECG data files on a memory module and use this data to produce an authentic ECG signal. The data files will consist of different types of ECG signals including different types of arrhythmias. The data files are obtained via the internet and require formatting and storing onto a memory chip. These files are then processed by a digital to analog converter and output on a four lead network to produce an authentic ECG signal. The system is built around the ultra-low power Texas Instruments MSP430 microcontroller.
M.S.
School of Electrical Engineering and Computer Science
Engineering and Computer Science
Computer Engineering
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Gouvêa, Conrado Porto Lopes 1984. "Implementação em software de criptografia baseada em emparelhamentos para redes de sensores usando o microcontrolador MSP430." [s.n.], 2010. http://repositorio.unicamp.br/jspui/handle/REPOSIP/275806.

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Orientador: Julio César López Hernández
Dissertação (mestrado) - Universidade Estadual de Campinas, Instituto de Computação
Made available in DSpace on 2018-08-16T09:36:03Z (GMT). No. of bitstreams: 1 Gouvea_ConradoPortoLopes_M.pdf: 1643588 bytes, checksum: 84895f14e5bab746796d6ca64e8287cf (MD5) Previous issue date: 2010
Resumo: Redes de sensores sem fio têm se tornado populares recentemente e possuem inúmeras aplicações. Contudo, elas apresentam o desafio de como proteger suas comunicações utilizando esquemas criptográficos, visto que são compostas por dispositivos de capacidade extremamente limitada. Neste trabalho é descrita uma implementação eficiente em software, para redes de sensores sem fio, de duas tecnologias de criptografia pública: a Criptografia Baseada em Emparelhamentos (CBE) e a Criptografia de Curvas Elípticas (CCE). Nossa implementação foca a família de microcontroladores MSP430 de 16 bits, utilizada em sensores como o Tmote Sky e TelosB. Em particular, para a CBE, foram implementados algoritmos para o cálculo de emparelhamentos nas curvas MNT e BN sobre corpos primos; para a CCE, foi implementado o esquema de assinatura ECDSA sobre corpos primos para os níveis de segurança de 80 e 128 bits. As principais contribuições deste trabalho são um estudo aprofundado dos algoritmos de emparelhamentos bilineares e novas otimizações na aritmética de corpos primos para a MSP430, que consequentemente melhoram o desempenho dos criptossistemas de CBE e CCE em tal plataforma
Abstract: Wireless sensor networks have become popular recently and provide many applications. However, the deployment of cryptography in sensor networks is a challenging task, given their limited computational power and resource-constrained nature. This work presents an efficient software implementation, for wireless sensor networks, of two public-key systems: Pairing-Based Cryptography (PBC) and Elliptic Curve Cryptography (ECC). Our implementation targets the MSP430 microcontroller, which is used in some sensors including the Tmote Sky and TelosB. For the PBC, we have implemented algorithms for pairing computation on MNT and BN curves over prime fields; for the ECC, the signature scheme ECDSA over prime fields for the 80-bit and 128-bit security levels. The main contributions of this work are an in-depth study of bilinear pairings algorithms and new optimizations for the prime field arithmetic in the MSP430, which improves the running times of the PBC and ECC cryptosystems on the platform
Mestrado
Teoria da Computação
Mestre em Ciência da Computação
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Karim, Rafid, and Haidara Al-Fakhri. "Smart Door Lock : A first prototype of a networked power lock controller with an NFC interface." Thesis, KTH, Radio Systems Laboratory (RS Lab), 2013. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-134894.

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Most major cell phone manufacturers have been releasing cell phones equipped with Near Field Communication (NFC). At the same time there is also increasing use of mobile payments and user verification with the use of the NFC technology. These trends indicate both the increasing popularity and great potential for increased use of NFC in today’s society. As a result NFC has a huge potential to simplify our everyday tasks, ranging from paying for items to accessing our office or home. In this context we will focus on using NFC together with a Power over Ethernet (PoE) powered circuit board and NFC reader to realize a simple system for granting access to open a locked door. One of the purposes of this realization is to explore what services can be realized when such a system is connected to the home/building network and connected to the Internet. A second purpose is to learn how to use network attached devices, as the concept of the Internet of Things is considered by many to be a driving force in the next generation Internet. This project uses very in expensive and low power hardware, as the number of devices is potentially very large and thus in order to minimize the technology’s impact on the environment we must consider how to minimize the power used – while maintaining the desired user functionality. This bachelor’s thesis project made it possible for a PoE powered circuit board containing a MSP430 microcontroller to work along with a NFC reader, which was connected through the Serial Peripheral Interface (SPI). We hope that the end result of this project will lead to a simpler life by exploiting this increasingly ubiquitous technology. For example, a homeowner could send a one-time key to a repair person who is coming to fix their sink. Similarly a homeowner could send a key to their neighbor which is valid for two weeks so that their neighbor could come into their home to water the plants while they are away on vacation. Another example is lending your apartment key to a friend while you are out of town.
Det blir allt vanligare med närfältskommunikation (NFC) i dagens samhälle, mobiltelefons-tillverkarna börjar utveckla nya telefoner med NFC teknik inbyggd, samtidigt som användningen av NFC ökat. Det sker även en utveckling inom mobila betalningar och användar-verifiering med användning av NFC, då NFC förenklar detta. Med detta sagt kommer vi att arbeta med detta i detta kandidatexamens-arbete där vi fokuserar på NFC samt Power over Ethernet som använder MSP430 chippet som kärna. Med dessa enheter kombinerade kommer en enkel rörelse med ett NFC kort över en NFC läsare som sedan skall ge åtkomst till en låst dörr. Detta i större kombination med en Internetuppkoppling kunna ge ägaren möjligheten att kunna skicka ut dörrnycklar till andra användare. I detta kandidatexamensarbete gjorde vi det möjligt för ett PoE kretskort bestående av ett MPS430 mikroprocessor att samarbeta med en NFC läsare genom SPI protokollet. Genom att utveckla detta projekt hoppas vi att vårt slutresultat leder till en enklare delning av nycklar med hjälp av denna teknologi.
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Hanuš, Ivan. "USB měřicí modul pro virtuální instrumentaci." Master's thesis, Vysoké učení technické v Brně. Fakulta elektrotechniky a komunikačních technologií, 2015. http://www.nusl.cz/ntk/nusl-221295.

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The objective of this thesis is design of the universal USB measuring module for virtual instrumentation. The module is connected to PC via USB interface. The module have analog inputs and analog outputs. The inputs have some switchable ranges, adjustable high-pass and low-pass fiters. Also the module have the digital input-output unit with 8 channels with configurable data direction and voltage level. Physical layer for digital serial interfaces SPI/UART and I2C is also part of this unit. The module is able to communicate with LabVIEW enviroment. The teoretical part contains survey of the commercial USB modules for data acquisition and generation from various manufacturers with its basic parameters. Some selected modules are described in detail. Furthermore the thesis deals with possibilities of connecting the USB module with the LabVIEW enviroment. The practical part deals with the design of input-output circuits and with design of the module itself. Furthemore, tho communication protocol, utility library and demonstration LabVIEW software are described in this part. At the end of this part, there are results of verification measurements. The result of this thesis is completed universal USB measuring module with utility library and demonstration program.
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Zengin, Salih. "Systemc Implementation Of A Risc-based Microcontroller Architecture." Master's thesis, METU, 2006. http://etd.lib.metu.edu.tr/upload/2/12608083/index.pdf.

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Increasing the complexity of modern electronic systems leads to Electronic System Level (ESL) modeling concept, which supports hardware and software co-design and co-verification environment in a single framework. SystemC language, which is an IEEE approved electronic design standard for system design and verification processes, provides such an environment by supporting a wide range of abstraction levels from system-level to register-transfer level (RTL). In this thesis, two different models of a processor core, whose instruction set architecture (ISA) is compatible with 16-bit TI MSP430 microcontroller, are designed by employing the classical hardware modeling capability of the SystemC language. With its well-designed orthogonal instruction set, elegant addressing modes, useful constant generators and flexible von-Neumann architecture, 16-bit RISC-like processor of the MSP430 microcontroller is an ideal selection for the system-on-a-chip (SoC) designs. Instruction set and addressing modes of the designed processors are simulated thoroughly. In addition, original 16-bit and 32-bit cyclic redundancy code (CRC) programs are used in order to verify the processor cores. In this study, SystemC to hardware flow is also illustrated by synthesizing the Arithmetic and Logic Unit (ALU) part of the processor into a Xilinx-based hardware.
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Books on the topic "MSP430"

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Galkins, Iļja. MSP430 mikrokontrolleru pielietošanas pamati. Rīga: RTU Izdevniecība, 2009.

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Nagy, Chris. Embedded systems design using the TI MSP430 series. Amsterdam: Newnes, 2003.

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Analog and digital circuits for electronic control system applications: Using the TI MSP430 microcontroller. Amsterdam: Elsevier/Newnes, 2005.

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Bai, Ying. Microcontroller Engineering with MSP432. Boca Raton : Taylor & Francis, CRC Press, 2017.: CRC Press, 2016. http://dx.doi.org/10.1201/9781315367101.

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Networking and internetworking with microcontrollers. Amsterdam: Newnes, 2004.

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MSP430 Microcontroller Basics. Newnes, 2008.

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MSP430 Microcontroller Basics. Elsevier, 2008. http://dx.doi.org/10.1016/b978-0-7506-8276-3.x5001-9.

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MSP430-based Robot Applications. Elsevier, 2013. http://dx.doi.org/10.1016/c2011-0-07603-2.

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Microcontroladores MSP430: Teoria e Prática. Érica, 2005.

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Getting Started with the MSP430 LaunchPad. Elsevier Science & Technology, 2013.

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Book chapters on the topic "MSP430"

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LaMeres, Brock J. "The MSP430." In Embedded Systems Design using the MSP430FR2355 LaunchPad™, 143–61. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-40574-8_4.

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Ravi Shankar Reddy, C., V. Siva Kumar Reddy, T. Vinay Simha Reddy, and P. Sanjeeva Reddy. "Advanced Protection for Automobiles Using MSP430." In Advances in Intelligent Systems and Computing, 665–72. Singapore: Springer Singapore, 2019. http://dx.doi.org/10.1007/978-981-13-3600-3_63.

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LaMeres, Brock J. "Getting Started Programming the MSP430 in Assembly." In Embedded Systems Design using the MSP430FR2355 LaunchPad™, 163–78. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-40574-8_5.

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Ram Tejaswini, K., J. Prathyusha, G. Rahul Kumar, and N. Abid Ali Khan. "User Interface Design for MSP430 IoT Hardware." In Lecture Notes in Electrical Engineering, 357–67. Singapore: Springer Singapore, 2019. http://dx.doi.org/10.1007/978-981-13-7091-5_30.

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Qiyan, Wu, Miao Changyun, and Wu Zhigang. "The Design of Voice Alarm Terminal Based on MSP430." In Communications in Computer and Information Science, 140–47. Berlin, Heidelberg: Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-23220-6_17.

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Hinterwälder, Gesine, Amir Moradi, Michael Hutter, Peter Schwabe, and Christof Paar. "Full-Size High-Security ECC Implementation on MSP430 Microcontrollers." In Progress in Cryptology - LATINCRYPT 2014, 31–47. Cham: Springer International Publishing, 2015. http://dx.doi.org/10.1007/978-3-319-16295-9_2.

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Cao, Hua-Jie, Hao-Dong Liu, and Ming Liu. "Agricultural Data Acquisition and Communication Embedded System Based on MSP430." In Communications in Computer and Information Science, 77–86. Singapore: Springer Singapore, 2015. http://dx.doi.org/10.1007/978-981-10-0421-6_8.

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Xia, Lianming, Xiangyou Wang, Duanyang Geng, and Qingfeng Zhang. "Performance Monitoring System for Precision Planter Based on MSP430-CT171." In Computer and Computing Technologies in Agriculture IV, 158–65. Berlin, Heidelberg: Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-18336-2_19.

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Fujdiak, Radek, Petr Mlynek, Jiri Misurec, and Janko Slacik. "Software Optimization of Advanced Encryption Standard for Ultra-Low-Power MSP430." In Advances in Intelligent Systems and Computing, 469–78. Cham: Springer International Publishing, 2017. http://dx.doi.org/10.1007/978-3-319-57141-6_50.

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Rasool Reddy, K., D. Vamsi Raju, and G. Kundan Kumar. "Design of Electronic Security System in Restricted Areas on MSP430 Processor." In Lecture Notes in Electrical Engineering, 671–81. Singapore: Springer Singapore, 2018. http://dx.doi.org/10.1007/978-981-13-1906-8_68.

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Conference papers on the topic "MSP430"

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Mischie, Septimiu, and Robert Pazsitka. "Designing a MSP430 Bootloader." In 2019 International Conference on Applied Electronics (AE). IEEE, 2019. http://dx.doi.org/10.23919/ae.2019.8866999.

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Ying, Liu, Li Min, and Su Zhihua. "ECG Tester Based on MSP430." In 2016 International Conference on Robots & Intelligent System (ICRIS). IEEE, 2016. http://dx.doi.org/10.1109/icris.2016.110.

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Martens, Olev, Siim Pille, and Marko Reidla. "Capacitance measurement with MSP430 microcontrollers." In 2014 6th European Embedded Design in Education and Research Conference (EDERC). IEEE, 2014. http://dx.doi.org/10.1109/ederc.2014.6924400.

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Kakkar, Krippy, Sunil Kumar, and Khushboo Tomar. "Sniffing one-wire algorithm using MSP430." In 2015 Annual IEEE India Conference (INDICON). IEEE, 2015. http://dx.doi.org/10.1109/indicon.2015.7443300.

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Ding, Yanchuang, and Yingying Yao. "Illuminance Test System Based on MSP430." In 2010 2nd International Conference on Information Engineering and Computer Science (ICIECS). IEEE, 2010. http://dx.doi.org/10.1109/iciecs.2010.5678322.

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Kulkarni, Apurva, and Manisha Amlekar. "Intelligent Power Monitoring Switch using MSP430." In 2015 International Conference on Pervasive Computing (ICPC). IEEE, 2015. http://dx.doi.org/10.1109/pervasive.2015.7087090.

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Schiller, Eryk, Elfat Esati, Sina Rafati Niya, and Burkhard Stiller. "Blockchain on MSP430 with IEEE 802.15.4." In 2020 IEEE 45th Conference on Local Computer Networks (LCN). IEEE, 2020. http://dx.doi.org/10.1109/lcn48667.2020.9314805.

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Zhen Liping and Si Shaowei. "Infrared Temperature Measurement System Based on MSP430." In 2011 International Conference on Measuring Technology and Mechatronics Automation (ICMTMA). IEEE, 2011. http://dx.doi.org/10.1109/icmtma.2011.392.

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Oliveira, Caio Souza, and Diogenes C. da Silva. "Alchemy: An MSP430-based reconfigurable processor architecture." In 2015 IEEE 6th Latin American Symposium on Circuits & Systems (LASCAS 2015). IEEE, 2015. http://dx.doi.org/10.1109/lascas.2015.7250440.

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Hùng Danh, Nguyễn Lê, Nguyễn Minh Trường, and Nguyễn Chí Ngôn. "Composite material mixer control using MCU-MSP430." In HNKH toàn quốc lần thứ 3 về điều khiển & Tự động hoá. Publishing House for Science and Technology, 2016. http://dx.doi.org/10.15625/vap.2015.0007.

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