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1.
Adv Sci (Weinh) ; 8(10): 2004885, 2021 05.
Artigo em Inglês | MEDLINE | ID: mdl-34026462

RESUMO

For wearable electronics/optoelectronics, thermal management should be provided for accurate signal acquisition as well as thermal comfort. However, outdoor solar energy gain has restricted the efficiency of some wearable devices like oximeters. Herein, wireless/battery-free and thermally regulated patch-type tissue oximeter (PTO) with radiative cooling structures are presented, which can measure tissue oxygenation under sunlight in reliable manner and will benefit athlete training. To maximize the radiative cooling performance, a nano/microvoids polymer (NMVP) is introduced by combining two perforated polymers to both reduce sunlight absorption and maximize thermal radiation. The optimized NMVP exhibits sub-ambient cooling of 6 °C in daytime under various conditions such as scattered/overcast clouds, high humidity, and clear weather. The NMVP-integrated PTO enables maintaining temperature within ≈1 °C on the skin under sunlight relative to indoor measurement, whereas the normally used, black encapsulated PTO shows over 40 °C owing to solar absorption. The heated PTO exhibits an inaccurate tissue oxygen saturation (StO2) value of ≈67% compared with StO2 in a normal state (i.e., ≈80%). However, the thermally protected PTO presents reliable StO2 of ≈80%. This successful demonstration provides a feasible strategy of thermal management in wearable devices for outdoor applications.


Assuntos
Oximetria/instrumentação , Oxigênio/análise , Processamento de Sinais Assistido por Computador/instrumentação , Tecnologia sem Fio/instrumentação , Regulação da Temperatura Corporal , Temperatura Baixa , Humanos , Monitorização Fisiológica/instrumentação , Oximetria/normas , Oximetria/estatística & dados numéricos , Oxigênio/metabolismo , Temperatura Cutânea
2.
Sensors (Basel) ; 20(5)2020 Mar 04.
Artigo em Inglês | MEDLINE | ID: mdl-32143462

RESUMO

As satellite communications provide ubiquitous coverage, they play a key role in providing Internet connectivity in remote or marginalized areas, so as to enable the vision of a truly global connectivity of the Internet of Things (IoT). However, these areas often lack reliable electricity supply. Thus, this paper proposes a satellite internet access point powered by solar energy, so that a stable Internet connection can be provided. The access point provides Wi-Fi coverage so that sensors, IoT, and devices can connect to the access point using the Wi-Fi, a common wireless technology. Our design took some cost-saving measures to make it affordable and selected the components that require minimal maintenance operations. The satellite access point costs about USD $500, and can provide four days of Internet connectivity without solar energy.

3.
PLoS One ; 15(2): e0228861, 2020.
Artigo em Inglês | MEDLINE | ID: mdl-32084146

RESUMO

A wireless photovoltaic retinal prosthesis is currently being studied with the aim of providing prosthetic vision to patients with retinitis pigmentosa (RP) and age-related macular degeneration (AMD). The major challenge of a photovoltaic device is its limited power efficiency. Our retinal prosthetic design implements a unique divisional power supply scheme (DPSS) system that provides the electrical power generated by all of the solar cells to only a subset of electrodes at any moment in time. The aim of the present study was to systematically characterize the spatiotemporal integration performance of the system under various DPSS conditions using human subjects and a psychophysical approach. A 16x16 pixels LED array controlled by Arduino was used to simulate the output signal of the DPSS design, and human performance under different visual stimulations at various update frequencies was then used to assess the spatiotemporal capability of retinal prostheses. The results showed that the contrast polarity of the image, image brightness, and division number influenced the lower limit of the update frequency of the DPSS system, while, on the other hand, visual angle, ambient light level, and stimulation order did not affect performance significantly. Pattern recognition by visual persistence with spatiotemporal integration of multiple frames of sparse dots is a feasible approach in retinal prosthesis design. These findings provide an insight into how to optimize a photovoltaic retinal prosthesis using a DPSS design with an appropriate update frequency for reliable pattern recognition. This will help the development of a wireless device able to restore vision to RP and AMD patients in the future.


Assuntos
Fontes de Energia Elétrica , Próteses Visuais , Adulto , Sensibilidades de Contraste/fisiologia , Estimulação Elétrica , Eletrodos Implantados , Voluntários Saudáveis , Humanos , Degeneração Macular/fisiopatologia , Degeneração Macular/cirurgia , Reconhecimento Visual de Modelos/fisiologia , Estimulação Luminosa , Psicofísica , Retinose Pigmentar/fisiopatologia , Retinose Pigmentar/cirurgia , Energia Solar , Análise Espaço-Temporal , Percepção Visual/fisiologia , Tecnologia sem Fio , Adulto Jovem
4.
Annu Int Conf IEEE Eng Med Biol Soc ; 2018: 4657-4660, 2018 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-30441389

RESUMO

This paper presents the study of subcutaneous solar energy harvesting for implantable sensor systems. The characteristics of a flexible solar panel under a 3 mm thick porcine skin are measured under different ambient light conditions. The output power of the solar panel when covered by the skin varies from tens of micro Watts to a few milli Watts depending on the light source. A low-power implantable sensor prototype is proposed to evaluate the performance of the subcutaneous solar energy harvester. It consists of a power management circuit, a temperature sensor and a Bluetooth low energy (BLE) module. The average working current of the prototype is $400 \mu \mathrm {A}$ (transient BLE transmission current is 8 mA), while its sleep current is only $7 \mu \mathrm {A}$. Experimental results show that the subcutaneous solar energy harvester illuminated by both sunlight and artificial light sources can power the implantable prototype.


Assuntos
Próteses e Implantes , Energia Solar , Tecnologia sem Fio , Animais , Fontes de Energia Elétrica , Pele , Luz Solar , Suínos
5.
PLoS One ; 13(11): e0205587, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-30427842

RESUMO

A compact UHF antenna has been presented in this paper for nanosatellite space mission. A square ground plane with slotted rectangular radiating element have been used. Coaxial probe feeding is used to excite. The rectangular slot of the radiating patch is responsible for resonating at lower UHF bands. One of the square faces of the nanosatellite structure works as the ground plane for the slotted radiating element. The fabricated prototype of the proposed antenna has achieved an impedance bandwidth (S11< -10dB) of 7.0 MHz (398 MHz- 405 MHz) with small size of 97 mm× 90 mm radiating element. The overall ground plane size is 100 mm × 100 mm × 0.5 mm. The proposed antenna has achieved a gain of 1.18 dB with total efficiency of 62.5%. The proposed antenna addresses two design challenges of nanosatellite antenna, (a) assurance of the placement of solar panel beneath the radiating element; (b) providing about 50% open space for solar irradiance to pass onto the solar panel, enabling the solar panel to achieve up to 93.95% of power under of normal conditions.


Assuntos
Nanofios/química , Energia Solar , Voo Espacial , Tecnologia sem Fio/tendências , Humanos , Vibração
6.
PLoS One ; 12(9): e0184125, 2017.
Artigo em Inglês | MEDLINE | ID: mdl-28886067

RESUMO

In a variety of agricultural activities, such as irrigation scheduling and nutrient management, soil water content is regarded as an essential parameter. Either power supply or long-distance cable is hardly available within field scale. For the necessity of monitoring soil water dynamics at field scale, this study presents a wireless soil moisture sensor based on the impedance transform of the frequency domain. The sensor system is powered by solar energy, and the data can be instantly transmitted by wireless communication. The sensor electrodes are embedded into the bottom of a supporting rod so that the sensor can measure soil water contents at different depths. An optimal design with time executing sequence is considered to reduce the energy consumption. The experimental results showed that the sensor is a promising tool for monitoring moisture in large-scale farmland using solar power and wireless communication.


Assuntos
Tecnologia de Sensoriamento Remoto , Solo/química , Energia Solar , Tecnologia sem Fio , Agricultura , Algoritmos , Modelos Teóricos , Água/análise
7.
PLoS One ; 11(12): e0167662, 2016.
Artigo em Inglês | MEDLINE | ID: mdl-27936056

RESUMO

Temperature, solar radiation and water are major important variables in ecosystem models which are measurable via wireless sensor networks (WSN). Effective data analysis is necessary to extract significant spatial and temporal information. In this work, information regarding the long term variation of seasonal field environment conditions is explored using Hilbert-Huang transform (HHT) based analysis on the wireless sensor network data collection. The data collection network, consisting of 36 wireless nodes, covers an area of 100 square kilometres in Yanqing, the northwest of Beijing CBD, in China and data collection involves environmental parameter observations taken over a period of three months in 2011. The analysis used the empirical mode decomposition (EMD/EEMD) to break a time sequence of data down to a finite set of intrinsic mode functions (IMFs). Both spatial and temporal properties of data explored by HHT analysis are demonstrated. Our research shows potential for better understanding the spatial-temporal relationships among environmental parameters using WSN and HHT.


Assuntos
Meio Ambiente , Análise Espaço-Temporal , Tecnologia sem Fio , Algoritmos , Pequim , Ecossistema , Modelos Teóricos , Estações do Ano , Processamento de Sinais Assistido por Computador , Energia Solar , Temperatura
8.
Sensors (Basel) ; 15(2): 4072-96, 2015 Feb 11.
Artigo em Inglês | MEDLINE | ID: mdl-25679312

RESUMO

Measuring gases for environmental monitoring is a demanding task that requires long periods of observation and large numbers of sensors. Wireless Sensor Networks (WSNs) and Unmanned Aerial Vehicles (UAVs) currently represent the best alternative to monitor large, remote, and difficult access areas, as these technologies have the possibility of carrying specialized gas sensing systems. This paper presents the development and integration of a WSN and an UAV powered by solar energy in order to enhance their functionality and broader their applications. A gas sensing system implementing nanostructured metal oxide (MOX) and non-dispersive infrared sensors was developed to measure concentrations of CH4 and CO2. Laboratory, bench and field testing results demonstrate the capability of UAV to capture, analyze and geo-locate a gas sample during flight operations. The field testing integrated ground sensor nodes and the UAV to measure CO2 concentration at ground and low aerial altitudes, simultaneously. Data collected during the mission was transmitted in real time to a central node for analysis and 3D mapping of the target gas. The results highlights the accomplishment of the first flight mission of a solar powered UAV equipped with a CO2 sensing system integrated with a WSN. The system provides an effective 3D monitoring and can be used in a wide range of environmental applications such as agriculture, bushfires, mining studies, zoology and botanical studies using a ubiquitous low cost technology.


Assuntos
Efeito Estufa , Energia Solar , Tecnologia sem Fio , Humanos , Tecnologia de Sensoriamento Remoto , Astronave
9.
Artigo em Inglês | MEDLINE | ID: mdl-25570295

RESUMO

Demonstration of remote navigation with instrumented insects, such as the Madagascar Hissing Cockroach, Gromphadorhina portentosa, has enabled the concept of biobotic agents for search and rescue missions and environmental monitoring applications. The biobots can form the nodes of a mobile sensor network to be established, for example, in unknown and dynamic environments after natural disasters to pinpoint surviving victims. We demonstrate here, for the first time, the concept of an invisible fence for insect biobots with an ultimate goal of keeping insect biobots within a certain distance of each other or a base station to ensure a reliable wireless network. For extended mission durations, this fenceless boundary would also be used to guide insects towards light sources for autonomous solar charging of their on-board batteries.


Assuntos
Robótica , Energia Solar , Tecnologia sem Fio
10.
IEEE Trans Biomed Circuits Syst ; 6(4): 336-43, 2012 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-23853178

RESUMO

An energy-autonomous, photovoltaic (PV)-driven and MRI-compatible CMOS implantable sensor is presented. On-chip P+/N-well diode arrays are used as CMOS-compatible PV cells to harvest µW's of power from the light that penetrates into the tissue. In this 2.5 mm × 2.5 mm sub-µW integrated system, the in-vivo physiological signals are first measured by using a subthreshold ring oscillator-based sensor, the acquired data is then modulated into a frequency-shift keying (FSK) signal, and finally transmitted neuromorphically to the skin surface by using a pair of polarized electrodes.


Assuntos
Próteses e Implantes , Pele/patologia , Materiais Biocompatíveis , Engenharia Biomédica , Computadores , Fontes de Energia Elétrica , Eletrodos , Eletrônica , Desenho de Equipamento , Humanos , Luz , Oscilometria , Processamento de Sinais Assistido por Computador , Energia Solar , Tecnologia sem Fio
11.
Sensors (Basel) ; 11(1): 329-40, 2011.
Artigo em Inglês | MEDLINE | ID: mdl-22346580

RESUMO

The design of a fully autonomous and wireless actuator node ("wEcoValve mote") based on the IEEE 802.15.4 standard is presented. The system allows remote control (open/close) of a 3-lead magnetic latch solenoid, commonly used in drip irrigation systems in applications such as agricultural areas, greenhouses, gardens, etc. The very low power consumption of the system in conjunction with the low power consumption of the valve, only when switching positions, allows the system to be solar powered, thus eliminating the need of wires and facilitating its deployment. By using supercapacitors recharged from a specifically designed solar power module, the need to replace batteries is also eliminated and the system is completely autonomous and maintenance free. The "wEcoValve mote" firmware is based on a synchronous protocol that allows a bidirectional communication with a latency optimized for real-time work, with a synchronization time between nodes of 4 s, thus achieving a power consumption average of 2.9 mW.


Assuntos
Energia Solar , Transistores Eletrônicos , Agricultura , Software , Tecnologia sem Fio
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