Monitoring and recording large time series of data and making them available for studying—are the key roles of environmental monitoring systems. This study produce review of three different measurement monitoring systems (NSUNET, WAHASTRAT and MERIEXWA) with same design, which were placed during different time frame in the Northern Serbia (Vojvodina Province). Each of three monitoring systems has different demands and requirements which were addressed accordingly in their design. Power supply conditions for two systems are primary cells and solar panels, while NSUNET has constant power supply only during nighttime. Data is transmitted in MERIEXWA using binary protocol, WAHASTRAT using http, while NSUNET sends data over ftp. Same topology is used in all systems—each node sends data directly to the central location (in case of NSUNET two locations are provided for backup purposes). NSUNET system sends data using specific structure and stores them as plain text files. It also has different approach for time synchronization and monitoring issues. The main result of this study is to present how to create system that provides good quality and unchanged data from monitoring sensor to the end user while maintaining whole data structure transmission costs low. Furthermore, data collected from NSUNET were used in order to assess the influence of urbanization on regional climate modification, which leads to the creation of urban climate. Propositions for new system development combining best from all three systems are discussed.
Mohd, F.O. and Shazali, K. (2012) Wireless Sensor Network Applications: A Study in Environment Monitoring System. Procedia Engineering, 41, 1204-1210. https://doi.org/10.1016/j.proeng.2012.07.302
Paller, G., Szármes, P. and élö, G. (2015) Power Consumption Considerations of GSM-Connected Sensors in the AgroDat.hu Sensor Network. Sensors & Transducers, 189, 52-60.
Kulkarni, K.A. and Zambare, M.S. (2018) The Impact Study of Houseplants in Purification of Environment Using Wireless Sensor Network. Wireless Sensor Network, 10, 59-69. https://doi.org/10.4236/wsn.2018.103003
Mile, A., Okeyo, G. and Kibe, A. (2018) Hybrid IEEE 802.15.6 Wireless Body Area Networks Interference Mitigation Model for High Mobility Interference Scenarios. Wireless Engineering and Technology, 9, 34-48. https://doi.org/10.4236/wet.2018.92004
Sharma, D., Verma, S. and Sharma K. (2013) Network Topologies in Wireless Sensor Networks: A Review. International Journal of Electronics & Communication Technology, 4, 93-97.
Lutakamale, A.S. and Kaijage, S. (2017) Wildfire Monitoring and Detection System Using Wireless Sensor Network: A Case Study of Tanzania. Wireless Sensor Network, 9, 274-289. https://doi.org/10.4236/wsn.2017.98015
Horton, T., Bolt, M., Prather, C., Manobianco, J. and Adams, M.L. (2018) Airborne Sensor Network for Atmospheric Profiling. Wireless Sensor Network, 10, 93-101. https://doi.org/10.4236/wsn.2018.104005
Delebarre, C., Pujolle, T., Cousin, G., Domon, A., Froux, J. and Jourdan, J. (2018) Wireless Low Cost CO2 Monitoring System Design and Evaluation Using Non Dispersive Infrared Sensor. Wireless Sensor Network, 10, 119-130. https://doi.org/10.4236/wsn.2018.106007
Strobl, R.O. and Robillard, P.D. (2008) Network Design for Water Quality Monitoring of Surface Freshwaters: A Review. Journal of Environmental Management, 87, 639-648.
Gilbert, E.P.K., Kaliaperumal, B. and Rajsingh, E.B. (2012) Research Issues in Wireless Sensor Network Applications: A Survey. International Journal of Information and Electronics Engineering, 2, 702-706.
Al-Subhi, T., Arafeh, B., Alzeidi, N., Day, K. and Touzene, A. (2018) A Void Avoidance Scheme for Grid-Based Multipath Routing in Under-Water Wireless Sensor Networks. Wireless Sensor Network, 10, 131-156. https://doi.org/10.4236/wsn.2018.107008
Chapin, T.P., Todd, A.S. and Zeigler, M.P. (2014) Robust, Low-Cost Data Loggers for Stream Temperature, Flow Intermittency, and Relative Conductivity Monitoring. Water Resources Research, 50, 6542-6548. https://doi.org/10.1002/2013WR015158
Abdullah, M.H., Ghani, S.A.C., Zaulkafilai, Z. and Tajuddin, S.N. (2017) Development Open Source Microcontroller Based Temperature Data Logger. 4th International Conference on Mechanical Engineering Research (ICMER 2017), 1-2 August 2017, 257. http://iopscience.iop.org/article/10.1088/1757-899X/257/1/012015/meta
Ali, A.S., Zanzinger, Z., Debose, D. and Stephens, B. (2016) Open Source Building Science Sensors (OSBSS): A Low-Cost Arduino-Based Platform for Long-Term Indoor Environmental Data Collection. Building and Environment, 100, 114-126. https://doi.org/10.1016/j.buildenv.2016.02.010
Payero, J.O., Nafchi, A.M., Davis, R. and Khalilian, A. (2017) An Arduino-Based Wireless Sensor Network for Soil Moisture Monitoring Using Decagon EC-5 Sensors. Open Journal of Soil Science, 7, Article ID: 79962.
Lwin, K., Hashimoto, M. and Murayama, Y. (2014) Real-Time Geospatial Data Collection and Visualization with Smartphone. Journal of Geographic Information System, 6, Article ID: 44566.
Kottek, M., Grieser, J., Beck, C., Rudolf, B. and Rubel, F. (2006) World Map of the Köppen-Geiger Climate Classification Updated. Meteorologische Zeitschrift, 15, 259-263. https://doi.org/10.1127/0941-2948/2006/0130
Jovanović, M., Pavić, D., Mesaroŝ, M., Stankov, U., Pantelić, M., Armenski, T., Dolinaj, D., Popov, S., Ćosić, Ð., Popović, L.J., Frank, A. and Crnojević, V. (2013) Water Shortage and Drought Monitoring in Baĉka Region (Vojvodina, North Serbia)—Setting-Up Measurement Stations Network. Geographica Pannonica, 17, 114-124. https://doi.org/10.5937/GeoPan1304114J
Ŝećerov, I., Savić, S., Miloŝević, D., Marković, V. and Bajŝanski, I. (2015) Development of an Automated Urban Climate Monitoring System in Novi Sad (Serbia). Geographica Pannonica, 19, 174-183. https://doi.org/10.5937/GeoPan1504174S
Gál, N. and Farsang, A. (2013) Weather Extremities and Soil Processes: Impact of Excess Water on Soil Structure in the Southern Great Hungarian Plain. In: Loczy, D., Ed., Geomorphological Impacts of Extreme Weather, Springer, Berlin, 313-325. https://doi.org/10.1007/978-94-007-6301-2_20
Brkić, M., Obradović,Ð., Dudarin, Z., Károly, B. and Zivanov, M. (2013) Measurement and Monitoring System for Level of Groundwater. Key Engineering Materials, 543, 243-246. https://doi.org/10.4028/www.scientific.net/KEM.543.243
Brkić, M., Dogan, V., Obradović, Ð. and Zivanov, M. (2012) Hardware Realization of Measurement and Monitoring System for Level of Groundwater. Symposium Industrial Electronics INDEL, Banja Luka, 1-3 November 2012, 124-127. http://www.indel.etfbl.net/2014/resources/Proceedings_2012/INDEL_2012_Proceedings.rar
Reina, D.G., Toral, S.L., Barrero, F., Bessis, N. and Asimakopoulou, E. (2013) The Role of Ad Hoc Networks in the Internet of Things: A Case Scenario for Smart Environments. In: Bessis, N., Xhafa, F., Varvarigou, D., Hill, R. and Li, M., Eds., Internet of Things and Inter-Cooperative Computational Technologies for Collective Intelligence, Springer, Berlin, 89-113. https://doi.org/10.1007/978-3-642-34952-2_4
Qiu, L., Liu, Z., Pereira, G.C.C.F. and Seo, H. (2017) Implementing RSA for Sensor nodes in Smart Cities. Personal and Ubiquitous Computing, 21, 807-813. https://doi.org/10.1007/s00779-017-1044-y
Stewart, I.D. and Oke, T.R. (2012) Local Climate Zones for Urban Temperature Studies. Bulletin of the American Meteorological Society, 93, 1879-1900. https://doi.org/10.1175/BAMS-D-11-00019.1
Kumari, S., Khan, M.K. and Atiquzzaman, M. (2015) User Authentication Schemes for Wireless Sensor Networks: A Review. Ad Hoc Networks, 27, 159-194. https://doi.org/10.1016/j.adhoc.2014.11.018
Hart, J.K. and Martine, K. (2006) Environmental Sensor Networks: A Revolution in the Earth System Science? Earth-Science Reviews, 78, 177-191. https://doi.org/10.1016/j.earscirev.2006.05.001
Carlos-Mancilla, M., López-Mellado, E. and Siller, M. (2016) Wireless Sensor Networks Formation: Approaches and Techniques. Journal of Sensors, 2016, Article ID: 2081902.
Lisbona, D. and Snee, T. (2011) A Review of Hazards Associated with Primary Lithium and Lithium-Ion Batteries. Process Safety and Environmental Protection, 89, 434-442. https://doi.org/10.1016/j.psep.2011.06.022
Tashtoush, Y., Al-Maolegi, M. and Arkok, B. (2014) The Correlation among Software Complexity Metrics with Case Study. International Journal of Advanced Computer Research, 4, 414-419.
Schmidt, K.J., Poppendieck, H.H. and Jensen, K. (2014) Effects of Urban Structure on Plant Species Richness in a Large European City. Urban Ecosystems, 17, 427-444. https://doi.org/10.1007/s11252-013-0319-y
Ĉepelová, N., Kalusová, V. and Lososová, Z. (2017) Effects of Settlement Size, Urban Heat Island and Habitat Type on Urban Plant Biodiversity. Landscape and Urban Planning, 159, 15-22. https://doi.org/10.1016/j.landurbplan.2016.11.004
Kovats, R.S. and Hajat, S. (2008) Heat Stress and Public Health: A Critical Review. Annual Review of Public Health, 29, 41-55. https://doi.org/10.1146/annurev.publhealth.29.020907.090843
Tan, J., Zheng, Y., Tang, X., Guo, C., Li, L., Song, G., Zhen, X., Yuan, D., Kalkstein, A.J., Li, F. and Chen, H. (2010) The Urban Heat Island and Its Impact on Heat Waves and Human Health in Shanghai. International Journal of Biometeorology, 54, 75-84. https://doi.org/10.1007/s00484-009-0256-x
Gabriel, K.M. and Endlicher, W.R. (2011) Urban and Rural Mortality Rates during Heat Waves in Berlin and Brandenburg, Germany. Environmental Pollution, 159, 2044-2050. https://doi.org/10.1016/j.envpol.2011.01.016
Savić, S., Marković, V.,Ŝećerov, I., Pavić, D., Arsenović, D., Miloŝević, D., Dolinaj, D., Nagy, I. and Pantelić, M. (2018) Heat Wave Risk Assessment and Mapping in Urban Areas: Case Study for a Midsized Central European City, Novi Sad (Serbia). Natural Hazards, 91, 891-911. https://doi.org/10.1007/s11069-017-3160-4
Grimmond, C.S.B., Roth, M., Oke, T.R., Au, Y.C., Best, M., Betts, R., Carmichael, G., Cleugh, H., Dabberdt, W., Emmanuel, R., Freitas, E., Fortuniak, K., Hanna, S., Klein, L.S., Liu, C.H., Nickson, A., Pearlmutter, D., Sailor, D. and Voogt, J. (2010) Climate and More Sustainable Cities: Climate Information for Improved Planning and Management of Cities (Producers/Capabilities Perspective). Procedia Environmental Sciences, 1, 247-274. https://doi.org/10.1016/j.proenv.2010.09.016
Huang, Q. and Lu, Y. (2018) Urban Heat Island Research from 1991 to 2015: A Bibliometric Analysis. Theoretical and Applied Climatology, 131, 1055-1068. https://doi.org/10.1007/s00704-016-2025-1