[PDF] Spatio-temporal Description of Air Quality with Mobile and



Previous PDF Next PDF







Du 09 novembre 2013 au 16 février 2014 - Carrefourfr

Bracelet Marquise à breloques 29€99 avec 10 vignettes Prix sans vignette 100€ Contemporain mais intemporel, ce bracelet à breloques LIORA scintille à travers la lumière se reflètant dans ces cristaux SWAROVSKI® ELEMENTS marquise et taille briolette Ce bijou est complété par une élégante fermeture à gousset Bracelet taille



Spatio-temporal Description of Air Quality with Mobile and

Bracelet Hardware Platform Bracelet is the flexible, portable, modular hardware platform developed by the Computer Science department for pervasive sensing applications Different modules, including procesors, radio modules, GPS modules, sensors, interface boards, external memory modules can be mixed and matched, tailored for the application



The Swizzle - SWUSY

wrist in the form of a blue USY bracelet) I wish everyone the very best Sent with lots of ahavah from the land of the Red Sox (they’re in the Series), Liora Zhrebker SWUSY REC VP 2012-2013 From Brandeis, With Love



Raffle List 29 One Haute Summer $1285 The Joy of Being a VIP

• Teri Jon Dress ($500) - Liora Mishan • Photo Shoot ($750) - Morris Antebe Photography • Bracelet and Earings ($322) - Eliest 39 Toast of the (Five) Town $1530 • Wine Tasting for 10 People ($500) - Royal Wines • Dara Ettinger Earing's and Necklace ($780) - Shulamis Felig • Mom's Pastries Gift Card ($50) - Mom's Pastries



F Mile Delymer Clay Newsletter May, June

fzriday liora bulilfet dinner and to set up the activitig areas anal gour ewn worl< space, then meet early on §aturela5 morning to have brealcltast anel atan tiia clay tant There will aa hands on aatne, areas, demos, aaa almiai alaaa eaeeeiallij tor beginners A rattle and door prizes are planned and, hopetullg, goodie bags lplease volunteer

[PDF] bijoux liora carrefour

[PDF] bague liora

[PDF] liora swarovski

[PDF] liora montre

[PDF] liora swarovski elements

[PDF] carré d'or bijouterie site officiel

[PDF] catalogue ak bijoux maroc 2017

[PDF] raynal aix

[PDF] bijouterie morin ploufragan

[PDF] mauboussin

[PDF] les boucles d'oreilles dans la bible

[PDF] ellen g white et les bijoux

[PDF] le maquillage dans la bible

[PDF] piercing oreille bible

[PDF] bijoux henriot pas cher

TEMPLATE DESIGN © 2008

www.PosterPresentations.com Spatio-temporal Description of Air Quality with Mobile and Static Arrays of MOS Sensors Serge Guillas (Statistical Science), Russell Binions & Daren Caruana (Chemistry) Liora Malki-Epshtein (CEGE), Venus Shum (Computer Science)

About this Group

A variety of air pollutants have known harmful effects on human health and the environment. The London Air Quality Network is made of 160 continuous monitoring sites. However, in urban settings, the concentrations of these pollutants can vary dramatically. Hence, some streets layouts with corresponding trace may lead to unsustainable local levels of concentrations. We have teamed up researchers from statistical science, chemistry and computer science departments to develop new science in pollution monitoring and modeling with pervasive sensing technologies. The areas we work on include:- •!State of Art Gas Sensors - we evaluate the performance and limitation of commonly used electrochemical gas sensors for pervasive applications •!Metal Oxide Sensors (MOS) - we research into the latest advance in MOS technology and the suitability of the sensors for portable applications •!Wireless Sensor Network (WSN) - we research into the hardware and software aspects of the technology •!Pollution modeling - we investigate new technique for pollution modeling using fine-grain, mobile sensor data provided by WSN

Bracelet Hardware Platform

Bracelet is the flexible, portable, modular hardware platform developed by the Computer Science department for pervasive sensing applications. Different modules, including procesors, radio modules, GPS modules, sensors, interface boards, external memory modules can be mixed and matched, tailored for the application. Bracelet v1 (Figure 4) uses SPI communication bus between the modules. Bracelet v2 (Figure 5) uses I2C buses and allows for more modules to be attached to the platform.

Figure 4

Calibration

The gas sensors with their sensor modules must be calibrated (Figure 6) individually before deployment. Ideally, they should be calibrated against environmental factors including temperature and humidity.

Implementation and Data Analysis Future Work Contact information

A small lab trial with 5 sensor nodes (2 with CO sensors) and 1 base station (sink). The sensor nodes take readings at regular interval and send the information back to the base station wirelessly. The base station display the information to the user. (Figure 7) We have demonstrate the use of portable gas sensor units for pervasive pollution monitoring application. In the near future, •! Deploy 20 sensor units in a street-canyon environment in London to collect fine-grain temporal-spatial data. •! Research and develop the use of MOS sensor in pervasive monitoring. •! Use the data collected to develop new technique for pollution modeling. •! Investigate other similar application domains for the techniques developed. Statistical Science Department Serge Guillas [serge@stats.ucl.ac.uk] Chemistry Department Russell Binions [uccarbi@ucl.ac.uk] Daren Caruana [d.j.caruana@ucl.ac.uk]

Processor

board

Wireless

board

USB-serial interface

(for programming only) Power board

Bracelet strip (mounted on fibre glass for

development purpose)

USB GPS

Figure 5

Sensor Module

Several commercial Carbon Monoxide (CO) electrochemical sensors (Figure 1) were evaluated to see if they are suitable to detect the range of street-level pollution level. The calibration looks at their sensitivity (Figure 2) towards the gas and the response time (Figure 3). The bigger sensors tends to have better sensitivity and quicker response time.

-50510152025 0 500
1000
1500
2000
2500
3000
3500

CO concentration (ppm)

ADC reading (4096 = 3.3V)

RCO100F: y=103.9828x + 387.8499 mV

3CO1ET1500: y=74.4762x + 327.0358 mV

COAX: y=48.4801x + 252.2829 mV

COBX: y=63.6403x + 231.9754 mV

CO-D4: y=23.5547x + 223.3620 mV

."+-,$/"+0

1",2-+$

2"#

3'45,-##-6$

#7*+0-+8)$"8,

9#'&"+-6$

)0"4/-,$',$ 2"#$ )0"4/-, 0''6 !8;8*2$

Metal Oxide Sensors

Figure 1

5101520

20 40
quotesdbs_dbs3.pdfusesText_6