Factorial Design Analysis for Localization Algorithms
Localization is a fundamental problem in Wireless Sensor Networks, as it provides useful information regarding the detection of an event. There are different localization algorithms applied in single-hop or multi-hop networks; in both cases their performance depends on several factors involved in th...
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| Published in | Applied sciences Vol. 8; no. 12; p. 2654 |
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| Main Authors | , , , , |
| Format | Journal Article |
| Language | English |
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MDPI AG
01.12.2018
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| Online Access | Get full text |
| ISSN | 2076-3417 2076-3417 |
| DOI | 10.3390/app8122654 |
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| Abstract | Localization is a fundamental problem in Wireless Sensor Networks, as it provides useful information regarding the detection of an event. There are different localization algorithms applied in single-hop or multi-hop networks; in both cases their performance depends on several factors involved in the evaluation scenario such as node density, the number of reference nodes and the log-normal shadowing propagation model, determined by the path-loss exponent ( η ) and the noise level ( σ d B ) which impact on the accuracy and precision performance metrics of localization techniques. In this paper, we present a statistical analysis based on the 2 k factorial methodology to determine the key factors affecting the performance metrics of localization techniques in a single-hop network to concentrate on such parameters, thus reducing the amount of simulation time required. For this proposal, MATLAB simulations are carried out in different scenarios, i.e., extreme values are used for each of the factors of interest and the impact of the interaction among them in the performance metrics is observed. The simulation results show that the path-loss exponent ( η ) and noise level ( σ d B ) factors have the greatest impact on the accuracy and precision metrics evaluated in this study. Based on this statistical analysis, we recommend estimating the propagation model as close to reality as possible to consider it in the design of new localization techniques and thus improve their accuracy and precision metrics. |
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| AbstractList | Localization is a fundamental problem in Wireless Sensor Networks, as it provides useful information regarding the detection of an event. There are different localization algorithms applied in single-hop or multi-hop networks; in both cases their performance depends on several factors involved in the evaluation scenario such as node density, the number of reference nodes and the log-normal shadowing propagation model, determined by the path-loss exponent ( η ) and the noise level ( σ d B ) which impact on the accuracy and precision performance metrics of localization techniques. In this paper, we present a statistical analysis based on the 2 k factorial methodology to determine the key factors affecting the performance metrics of localization techniques in a single-hop network to concentrate on such parameters, thus reducing the amount of simulation time required. For this proposal, MATLAB simulations are carried out in different scenarios, i.e., extreme values are used for each of the factors of interest and the impact of the interaction among them in the performance metrics is observed. The simulation results show that the path-loss exponent ( η ) and noise level ( σ d B ) factors have the greatest impact on the accuracy and precision metrics evaluated in this study. Based on this statistical analysis, we recommend estimating the propagation model as close to reality as possible to consider it in the design of new localization techniques and thus improve their accuracy and precision metrics. In this scenario, the log-normal shadowing propagation model is used to calculate the RSSI between the NOI and the four RNs. Since this scenario is represented in a small area, the MSE is evaluated as a function of the noise σdB∈{0.5,1,2,…,10}, because the number of RNs is always constant and node density is assumed to be unitary, i.e., one NOI on the 10 m × 10 m grid. [...]using the sign table method the results are analyzed and the variation is assigned, depending on the combination of the different factors. [...]5 RNs were used as the lower critical level and 20 RNs as the upper critical level, since higher numbers of RNs have not been observed to increase the impact of this factor on localization. [...]it can be concluded that the complete factorial method shows the magnitude of a study factor’s impact on a performance variable of the localization algorithms. |
| Author | Cortez-Gonzalez, Joaquin Mass-Sanchez, Joaquin Gonzalez-Sanchez, Ana Ruiz-Ibarra, Erica Espinoza-Ruiz, Adolfo |
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| SubjectTerms | 2k factorial Algorithms Business metrics Crime prevention Design of experiments Environmental monitoring Localization MSE Performance evaluation Proposals Sensors Taxonomy Underwater exploration Wireless networks WSN |
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