A Remote
Wireless System for Water Quality Online Monitoring in Intensive Fish
Culture.
By Xiuna Zhu, Daoliang Li, Jianqin Wang, Daokun
Ma, Feifei Li (2010)
|
||
Parameter
|
Hardware
|
Location used
|
a)
Temperature
b)
Dissolved oxygen
c)
pH Water
d)
Electrical conductivity
|
a)
Remote Monitoring platform
b)
PICNIC2.0 (TriState, Japan) as the
core-processing chip
c)
CDMA module (InRouter210C, China)
for data transformation and transmission
d)
Temperature Sensor
e)
Dissolved oxygen Sensor
f)
pH Sensor
g)
Electrical conductivity Sensor
|
Fish
pond
|
Design and
Deployment of Aqua Monitoring System Using Wireless Sensor Networks and
IAR-Kick.
By Chandanapalli S. B., Sreenivasa R. E.,
and Rajya L. D., (2014)
|
||
Parameter
|
Hardware
|
Location used
|
a)
Temperature outside and inside of
the water
b)
pH
c)
Humidity
|
a)
ZigBee Wireless Sensor Node
b)
GSM
c)
AT89C52 microcontroller
d)
Temperature sensors
e)
pH sensor
f)
Humidity Sensor
|
Fish
pond
|
Wireless Sensor
Network-Based Solution for Environmental Monitoring: Water Quality Assessment
Case Study.
By Octavian Postolache, José Dias
Pereira, Pedro Silva Girão, (2014)
|
||
Parameter
|
Hardware
|
Location Used
|
a) Conductivity
b) Temperature
c) Turbidity
|
a) ZigBee
Wireless Sensor Node
b) Conductivity
Sensor
c) Temperature
Sensor
d) Turbidity
Sensor
|
Fish Pond
|
Friday, December 8, 2017
WEEK 9: Literature Review
This is the summary
of the journals I’ve read and reviewed which I summarized it in a table. The table
consists of the parameters investigated, the technology used as in the hardware
and software implemented and also the place where the parameters is
investigated.
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