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Erschienen in: Telecommunication Systems 4/2019

03.06.2019

Nature inspired quantile estimates of the Nakagami distribution

verfasst von: Hilary I. Okagbue, Muminu O. Adamu, Timothy A. Anake, Ashiribo S. Wusu

Erschienen in: Telecommunication Systems | Ausgabe 4/2019

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Abstract

Nakagami-m distribution is utilized heavily in modelling multipath interferences in wireless networks. However, the closed form of the quantile function of the distribution is not available. The unavailability of the closed form is a result of the intractable nature of the cumulative distribution function (CDF). Hence, the inversion method cannot be used to recover the quantile function (QF) from the CDF of Nakagami-m distribution. Approximation is often the only choice available and numerical optimization method is one of the new forms of quantile approximation. This work proposed a new quantile model which is used to fit the machine values of QF of some selected parameters of the distribution. Differential evolution was used to minimize the error that resulted from the curve fitting. The resulting model is an appreciably improvement over some existing ones found in literature, using the root mean square error as the performance metric. In addition, the precision of the model increases as the shape parameter of the distribution decreases and the model was able to capture the extreme tails of the distribution better than the other previous published results. Thereafter, the usefulness of the model was seen in random number generation and Monte Carlo simulation. Anderson–Darling test showed that the simulated random variables are not from the normal distribution, despite the huge sample size. Different aspects of wireless communications will benefit from the applications of this work.

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Literatur
1.
Zurück zum Zitat Parzen, E. (2004). Quantile probability and statistical data modeling. Statistical Science, 19(4), 652–662. Parzen, E. (2004). Quantile probability and statistical data modeling. Statistical Science, 19(4), 652–662.
2.
Zurück zum Zitat Gilchrist, W. G. (2007). Modeling and fitting quantile distributions and regressions. American Journal of Mathematical and Management Sciences, 27(3–4), 401–439. Gilchrist, W. G. (2007). Modeling and fitting quantile distributions and regressions. American Journal of Mathematical and Management Sciences, 27(3–4), 401–439.
3.
Zurück zum Zitat Kong, L., & Mizera, I. (2012). Quantile tomography: Using quantiles with multivariate data. Statistica Sinica, 22(4), 1589–1610. Kong, L., & Mizera, I. (2012). Quantile tomography: Using quantiles with multivariate data. Statistica Sinica, 22(4), 1589–1610.
4.
Zurück zum Zitat Koza, J. R. (1992). Genetic programming: On the programming of computers by means of natural evolution. Cambridge: MIT Press. Koza, J. R. (1992). Genetic programming: On the programming of computers by means of natural evolution. Cambridge: MIT Press.
5.
Zurück zum Zitat Onwubolu, G. C., & Babu, B. V. (2014). New optimization techniques in engineering. Berlin: Springer. ISBN 978-3-540-20167-0. Onwubolu, G. C., & Babu, B. V. (2014). New optimization techniques in engineering. Berlin: Springer. ISBN 978-3-540-20167-0.
6.
Zurück zum Zitat Fogel, D. B. (1995). Evolutionary computation: Toward a new philosophy of machine intelligence. Piscataway, NJ: IEEE Press. Fogel, D. B. (1995). Evolutionary computation: Toward a new philosophy of machine intelligence. Piscataway, NJ: IEEE Press.
7.
Zurück zum Zitat Okagbue, H. I., Adamu, M. O., & Anake, T. A. (2018). Ordinary differential equations of probability functions of convoluted distributions. International Journal of Advanced and Applied Sciences, 5(10), 46–52. Okagbue, H. I., Adamu, M. O., & Anake, T. A. (2018). Ordinary differential equations of probability functions of convoluted distributions. International Journal of Advanced and Applied Sciences, 5(10), 46–52.
10.
Zurück zum Zitat Nair, N. U., & Sankaran, P. G. (2009). Quantile based reliability analysis. Communications in Statistics Theory and Methods, 38, 222–232. Nair, N. U., & Sankaran, P. G. (2009). Quantile based reliability analysis. Communications in Statistics Theory and Methods, 38, 222–232.
11.
Zurück zum Zitat Diaz Ochoa, J. G. (2018). Elastic multi-scale mechanisms: Computation and biological evolution. Journal of Molecular Evolution, 86(1), 47–57. Diaz Ochoa, J. G. (2018). Elastic multi-scale mechanisms: Computation and biological evolution. Journal of Molecular Evolution, 86(1), 47–57.
12.
Zurück zum Zitat Queiroz, W. J. L., Almeida, D. B. T., Madeiro, F., Cardoso, J. V. M., Pereira, D. F. L., & Alencar, M. S. (2018). New closed-form expressions for SNR estimates of Nakagami fading channels by the method of moments. Telecommunication Systems, 69(3), 321–333. Queiroz, W. J. L., Almeida, D. B. T., Madeiro, F., Cardoso, J. V. M., Pereira, D. F. L., & Alencar, M. S. (2018). New closed-form expressions for SNR estimates of Nakagami fading channels by the method of moments. Telecommunication Systems, 69(3), 321–333.
13.
Zurück zum Zitat Hasan, M. I., & Kumar, S. (2017). Spectral efficiency of dual diversity selection combining schemes under correlated Nakagami-0.5 fading with unequal average received SNR. Telecommunication Systems, 64(1), 3–16. Hasan, M. I., & Kumar, S. (2017). Spectral efficiency of dual diversity selection combining schemes under correlated Nakagami-0.5 fading with unequal average received SNR. Telecommunication Systems, 64(1), 3–16.
14.
Zurück zum Zitat Tuan, V. P., & Kong, H. Y. (2018). Exploiting cooperative relays to enhance the performance of energy-harvesting systems over Nakagami-m fading channels. Telecommunication Systems, 69(4), 477–487. Tuan, V. P., & Kong, H. Y. (2018). Exploiting cooperative relays to enhance the performance of energy-harvesting systems over Nakagami-m fading channels. Telecommunication Systems, 69(4), 477–487.
15.
Zurück zum Zitat Nguyen-Huu, P., & Ho-Van, K. (2018). Bidirectional relaying with energy harvesting capable relay: outage analysis for Nakagami-m fading. Telecommunication Systems, 69(3), 335–347. Nguyen-Huu, P., & Ho-Van, K. (2018). Bidirectional relaying with energy harvesting capable relay: outage analysis for Nakagami-m fading. Telecommunication Systems, 69(3), 335–347.
16.
Zurück zum Zitat Queiroz, W. J. L., Madeiro, F., Lopes, W. T. A., & Alencar, M. S. (2018). On the performance of M-QAM for Nakagami channels subject to gated noise. Telecommunication Systems, 68(1), 1–10. Queiroz, W. J. L., Madeiro, F., Lopes, W. T. A., & Alencar, M. S. (2018). On the performance of M-QAM for Nakagami channels subject to gated noise. Telecommunication Systems, 68(1), 1–10.
17.
Zurück zum Zitat Badarneh, O. S., Almehmadi, F. S., & Aldalgamouni, T. (2018). On the application of the sum of generalized Gaussian random variables: Maximal ratio combining. Telecommunication Systems, 67(3), 415–422. Badarneh, O. S., Almehmadi, F. S., & Aldalgamouni, T. (2018). On the application of the sum of generalized Gaussian random variables: Maximal ratio combining. Telecommunication Systems, 67(3), 415–422.
18.
Zurück zum Zitat Ben Halima, N., & Boujemâa, H. (2019). Round robin, distributed and centralized relay selection for cognitive radio networks in the presence of Nakagami fading channels. Telecommunication Systems, 70(3), 405–415. Ben Halima, N., & Boujemâa, H. (2019). Round robin, distributed and centralized relay selection for cognitive radio networks in the presence of Nakagami fading channels. Telecommunication Systems, 70(3), 405–415.
19.
Zurück zum Zitat El-Bahaie, E. H., & Al-Hussaini, E. K. (2017). Novel results for the performance of single and double stages cognitive radio systems through Nakagami-m fading and log-normal shadowing. Telecommunication Systems, 65(4), 729–737. El-Bahaie, E. H., & Al-Hussaini, E. K. (2017). Novel results for the performance of single and double stages cognitive radio systems through Nakagami-m fading and log-normal shadowing. Telecommunication Systems, 65(4), 729–737.
20.
Zurück zum Zitat Dominic, S., & Jacob, L. (2018). Learning algorithms for joint resource block and power allocation in underlay D2D networks. Telecommunication Systems, 69(3), 285–301. Dominic, S., & Jacob, L. (2018). Learning algorithms for joint resource block and power allocation in underlay D2D networks. Telecommunication Systems, 69(3), 285–301.
21.
Zurück zum Zitat El-Khamy, S., Moussa, K., & El-Sherif, A. (2017). A smart multi-user massive MIMO system for next G Wireless communications using evolutionary optimized antenna selection. Telecommunication Systems, 65(2), 309–317. El-Khamy, S., Moussa, K., & El-Sherif, A. (2017). A smart multi-user massive MIMO system for next G Wireless communications using evolutionary optimized antenna selection. Telecommunication Systems, 65(2), 309–317.
23.
Zurück zum Zitat Namitha, A. S., & Sameer, S. M. (2016). A combined technique for carrier frequency offset estimation and peak-to-average power ratio reduction in OFDM systems using null subcarriers and Cuckoo search algorithm. Telecommunication Systems, 63(2), 275–285. Namitha, A. S., & Sameer, S. M. (2016). A combined technique for carrier frequency offset estimation and peak-to-average power ratio reduction in OFDM systems using null subcarriers and Cuckoo search algorithm. Telecommunication Systems, 63(2), 275–285.
24.
Zurück zum Zitat Singh, S., & Sharma, R. M. (2018). HSCA: A novel harmony search based efficient clustering in heterogeneous WSNs. Telecommunication Systems, 67(4), 651–667. Singh, S., & Sharma, R. M. (2018). HSCA: A novel harmony search based efficient clustering in heterogeneous WSNs. Telecommunication Systems, 67(4), 651–667.
25.
Zurück zum Zitat Sharma, G., & Kumar, A. (2018). Improved DV-Hop localization algorithm using teaching learning based optimization for wireless sensor networks. Telecommunication Systems, 67(2), 163–178. Sharma, G., & Kumar, A. (2018). Improved DV-Hop localization algorithm using teaching learning based optimization for wireless sensor networks. Telecommunication Systems, 67(2), 163–178.
26.
Zurück zum Zitat Singh, P., Khosla, A., Kumar, A., & Khosla, M. (2018). Computational intelligence based localization of moving target nodes using single anchor node in wireless sensor networks. Telecommunication Systems, 69(3), 397–411. Singh, P., Khosla, A., Kumar, A., & Khosla, M. (2018). Computational intelligence based localization of moving target nodes using single anchor node in wireless sensor networks. Telecommunication Systems, 69(3), 397–411.
27.
Zurück zum Zitat Orakzai, F. A., Iqbal, M., Naeem, M., & Ahmad, A. (2018). Energy efficient joint radio resource management in D2D assisted cellular communication. Telecommunication Systems, 69(4), 505–517. Orakzai, F. A., Iqbal, M., Naeem, M., & Ahmad, A. (2018). Energy efficient joint radio resource management in D2D assisted cellular communication. Telecommunication Systems, 69(4), 505–517.
28.
Zurück zum Zitat Jha, S. K., & Eyong, E. M. (2018). An energy optimization in wireless sensor networks by using genetic algorithm. Telecommunication Systems, 67(1), 113–121. Jha, S. K., & Eyong, E. M. (2018). An energy optimization in wireless sensor networks by using genetic algorithm. Telecommunication Systems, 67(1), 113–121.
29.
Zurück zum Zitat Mandloi, M., Hussain, M. A., & Bhatia, V. (2017). Adaptive multiple stage K-best successive interference cancellation algorithm for MIMO detection. Telecommunication Systems, 66(1), 1–16. Mandloi, M., Hussain, M. A., & Bhatia, V. (2017). Adaptive multiple stage K-best successive interference cancellation algorithm for MIMO detection. Telecommunication Systems, 66(1), 1–16.
30.
Zurück zum Zitat Cao, B., Zhao, J., Yang, P., Lv, Z., Liu, X., Kang, X., et al. (2018). Distributed parallel cooperative coevolutionary multi-objective large-scale immune algorithm for deployment of wireless sensor networks. Future Generation Computer Systems, 82, 256–267. Cao, B., Zhao, J., Yang, P., Lv, Z., Liu, X., Kang, X., et al. (2018). Distributed parallel cooperative coevolutionary multi-objective large-scale immune algorithm for deployment of wireless sensor networks. Future Generation Computer Systems, 82, 256–267.
31.
Zurück zum Zitat Huang, L., Liu, J., & Guo, L. (2018). A hybrid mutation artificial bee colony algorithm for spectrum sharing. International Journal of High Performance Computing and Networking, 12(3), 299–306. Huang, L., Liu, J., & Guo, L. (2018). A hybrid mutation artificial bee colony algorithm for spectrum sharing. International Journal of High Performance Computing and Networking, 12(3), 299–306.
32.
Zurück zum Zitat Sharma, G., & Kumar, A. (2018). Fuzzy logic based 3D localization in wireless sensor networks using invasive weed and bacterial foraging optimization. Telecommunication Systems, 67(2), 149–162. Sharma, G., & Kumar, A. (2018). Fuzzy logic based 3D localization in wireless sensor networks using invasive weed and bacterial foraging optimization. Telecommunication Systems, 67(2), 149–162.
33.
Zurück zum Zitat Hung, H.-L. (2017). Application firefly algorithm for peak-to-average power ratio reduction in OFDM systems. Telecommunication Systems, 65(1), 1–8. Hung, H.-L. (2017). Application firefly algorithm for peak-to-average power ratio reduction in OFDM systems. Telecommunication Systems, 65(1), 1–8.
34.
Zurück zum Zitat Pan, J.-S., Meng, Z., Chu, S.-C., & Xu, H.-R. (2017). Monkey King Evolution: An enhanced ebb-tide-fish algorithm for global optimization and its application in vehicle navigation under wireless sensor network environment. Telecommunication Systems, 65(3), 351–364. Pan, J.-S., Meng, Z., Chu, S.-C., & Xu, H.-R. (2017). Monkey King Evolution: An enhanced ebb-tide-fish algorithm for global optimization and its application in vehicle navigation under wireless sensor network environment. Telecommunication Systems, 65(3), 351–364.
35.
Zurück zum Zitat Meng, Z., Pan, J.-S., & Alelaiwi, A. (2016). A new meta-heuristic ebb-tide-fish-inspired algorithm for traffic navigation. Telecommunication Systems, 62(2), 403–415. Meng, Z., Pan, J.-S., & Alelaiwi, A. (2016). A new meta-heuristic ebb-tide-fish-inspired algorithm for traffic navigation. Telecommunication Systems, 62(2), 403–415.
36.
Zurück zum Zitat Goudos, S. K., Deruyck, M., Plets, D., Martens, L., & Joseph, W. (2017). Optimization of power consumption in 4G LTE networks using a novel barebones self-adaptive differential evolution algorithm. Telecommunication Systems, 66(1), 109–120. Goudos, S. K., Deruyck, M., Plets, D., Martens, L., & Joseph, W. (2017). Optimization of power consumption in 4G LTE networks using a novel barebones self-adaptive differential evolution algorithm. Telecommunication Systems, 66(1), 109–120.
37.
Zurück zum Zitat Liu, H. (2019). SINR-based multi-channel power schedule under DoS attacks: A Stackelberg game approach with incomplete information. Automatica, 100, 274–280. Liu, H. (2019). SINR-based multi-channel power schedule under DoS attacks: A Stackelberg game approach with incomplete information. Automatica, 100, 274–280.
38.
Zurück zum Zitat Qin, M. & Zhu, R. (2018). A Monte Carlo localization method based on differential evolution optimization applied into economic forecasting in mobile wireless sensor networks. Eurasip Journal on Wireless Communications and Networking, 2018(1), Article number 32. Qin, M. & Zhu, R. (2018). A Monte Carlo localization method based on differential evolution optimization applied into economic forecasting in mobile wireless sensor networks. Eurasip Journal on Wireless Communications and Networking, 2018(1), Article number 32.
39.
Zurück zum Zitat Potthuri, S., Shankar, T., & Rajesh, A. (2018). Lifetime improvement in wireless sensor networks using hybrid differential evolution and simulated annealing (DESA). Ain Shams Engineering Journal, 9(4), 655–663. Potthuri, S., Shankar, T., & Rajesh, A. (2018). Lifetime improvement in wireless sensor networks using hybrid differential evolution and simulated annealing (DESA). Ain Shams Engineering Journal, 9(4), 655–663.
40.
Zurück zum Zitat Cao, B., Kang, X., Zhao, J., Yang, P., Lv, Z. & Liu, X. (2018). Differential evolution-based 3-D directional wireless sensor network deployment optimization. IEEE Internet of Things Journal, 5(5), 3594–3605. Cao, B., Kang, X., Zhao, J., Yang, P., Lv, Z. & Liu, X. (2018). Differential evolution-based 3-D directional wireless sensor network deployment optimization. IEEE Internet of Things Journal, 5(5), 3594–3605.
41.
Zurück zum Zitat Céspedes-Mota, A., Castañón, G., Martínez-Herrera, A. F., Cárdenas-Barrón, L. E., & Sarmiento, A. M. (2018). Differential evolution algorithm applied to wireless sensor distribution on different geometric shapes with area and energy optimization. Journal of Network and Computer Applications, 119, 14–23. Céspedes-Mota, A., Castañón, G., Martínez-Herrera, A. F., Cárdenas-Barrón, L. E., & Sarmiento, A. M. (2018). Differential evolution algorithm applied to wireless sensor distribution on different geometric shapes with area and energy optimization. Journal of Network and Computer Applications, 119, 14–23.
42.
Zurück zum Zitat Xu, Z., Gu, R., Huang, T., Xiang, H., Zhang, X., Qi, L. & Xu, X. (2018). An IoT-oriented offloading method with privacy preservation for cloudlet-enabled wireless metropolitan area networks. Sensors, 18(9), Article number 3030. Xu, Z., Gu, R., Huang, T., Xiang, H., Zhang, X., Qi, L. & Xu, X. (2018). An IoT-oriented offloading method with privacy preservation for cloudlet-enabled wireless metropolitan area networks. Sensors, 18(9), Article number 3030.
43.
Zurück zum Zitat Qin, N.-N., & Chen, J.-L. (2018). An area coverage algorithm for wireless sensor networks based on differential evolution. International Journal of Distributed Sensor Networks, 14(8), 833–835. Qin, N.-N., & Chen, J.-L. (2018). An area coverage algorithm for wireless sensor networks based on differential evolution. International Journal of Distributed Sensor Networks, 14(8), 833–835.
45.
Zurück zum Zitat Cui, L., Xu, C., Li, G., Ming, Z., Feng, Y., & Lu, N. (2018). A high accurate localization algorithm with DV-Hop and differential evolution for wireless sensor network. Applied Soft Computing Journal, 68, 39–52. Cui, L., Xu, C., Li, G., Ming, Z., Feng, Y., & Lu, N. (2018). A high accurate localization algorithm with DV-Hop and differential evolution for wireless sensor network. Applied Soft Computing Journal, 68, 39–52.
47.
Zurück zum Zitat Ayinde, B. O., & Hashim, H. A. (2018). Energy-efficient deployment of relay nodes in wireless sensor networks using evolutionary techniques. International Journal of Wireless Information Networks, 25(2), 157–172. Ayinde, B. O., & Hashim, H. A. (2018). Energy-efficient deployment of relay nodes in wireless sensor networks using evolutionary techniques. International Journal of Wireless Information Networks, 25(2), 157–172.
49.
Zurück zum Zitat Céspedes-Mota, A., Castañón, G., Martínez-Herrera, A.F. & Cárdenas-Barrón, L.E. (2018). Multiobjective optimization for a wireless ad hoc sensor distribution on shaped-bounded areas. Mathematical Problems in Engineering, 2018, Article number 7873984. Céspedes-Mota, A., Castañón, G., Martínez-Herrera, A.F. & Cárdenas-Barrón, L.E. (2018). Multiobjective optimization for a wireless ad hoc sensor distribution on shaped-bounded areas. Mathematical Problems in Engineering, 2018, Article number 7873984.
50.
Zurück zum Zitat Chiu, C.-C., Lai, G.-D., & Cheng, Y.-T. (2018). Self-adaptive dynamic differential evolution applied to BER reduction with beamforming techniques for ultra wideband MU-MIMO systems. Progress In Electromagnetics Research C, 87, 187–197. Chiu, C.-C., Lai, G.-D., & Cheng, Y.-T. (2018). Self-adaptive dynamic differential evolution applied to BER reduction with beamforming techniques for ultra wideband MU-MIMO systems. Progress In Electromagnetics Research C, 87, 187–197.
51.
Zurück zum Zitat Hao, X., Wang, L., Liu, J., Xie, L., & Zhang, W. (2018). Resource allocation optimization algorithm based on double populations differential evolution in WSN. Tongxin Xuebao/Journal on Communications, 39(4), 68–75. Hao, X., Wang, L., Liu, J., Xie, L., & Zhang, W. (2018). Resource allocation optimization algorithm based on double populations differential evolution in WSN. Tongxin Xuebao/Journal on Communications, 39(4), 68–75.
52.
Zurück zum Zitat Zheng, S., Gao, S., Yin, Y., Luo, Q., Yang, X., Hu, W., Ren, X. & Qin, F. (2018). A broadband dual circularly polarized conical four-arm sinuous antenna. IEEE Transactions on Antennas and Propagation, 66(1), 71–80. Zheng, S., Gao, S., Yin, Y., Luo, Q., Yang, X., Hu, W., Ren, X. & Qin, F. (2018). A broadband dual circularly polarized conical four-arm sinuous antenna. IEEE Transactions on Antennas and Propagation, 66(1), 71–80.
53.
Zurück zum Zitat Beaulieu, N. C., & Cheng, C. (2005). Efficient Nakagami-m fading channel simulation. IEEE Transactions on Vehicular Technology, 54(2), 413–424. Beaulieu, N. C., & Cheng, C. (2005). Efficient Nakagami-m fading channel simulation. IEEE Transactions on Vehicular Technology, 54(2), 413–424.
54.
Zurück zum Zitat Bilim, M., & Develi, I. (2015). A new Nakagami-m inverse CDF approximation based on the use of genetic algorithm. Wireless Personal Communications, 83(3), 2279–2287. Bilim, M., & Develi, I. (2015). A new Nakagami-m inverse CDF approximation based on the use of genetic algorithm. Wireless Personal Communications, 83(3), 2279–2287.
55.
Zurück zum Zitat Kabalci, Y. (2016). On the Nakagami-m inverse cumulative distribution function: Closed-form expression and its optimization by backtracking search optimization algorithm. Wireless Personal Communications, 91(1), 1–8. Kabalci, Y. (2016). On the Nakagami-m inverse cumulative distribution function: Closed-form expression and its optimization by backtracking search optimization algorithm. Wireless Personal Communications, 91(1), 1–8.
56.
Zurück zum Zitat Kabalci, Y. (2018). An improved approximation for the Nakagami-m inverse CDF using artificial bee colony optimization. Wireless Networks, 24(2), 663–669. Kabalci, Y. (2018). An improved approximation for the Nakagami-m inverse CDF using artificial bee colony optimization. Wireless Networks, 24(2), 663–669.
57.
Zurück zum Zitat Storn, R., & Price, K. (1997). Differential evolution—A simple and efficient heuristic for global optimization over continuous spaces. Journal of Global Optimization, 11, 341–359. Storn, R., & Price, K. (1997). Differential evolution—A simple and efficient heuristic for global optimization over continuous spaces. Journal of Global Optimization, 11, 341–359.
58.
Zurück zum Zitat Storn, R. (1996). On the usage of differential evolution for function optimization. In Biennial conference of the North American fuzzy information processing society (NAFIPS) (pp. 519–523). Storn, R. (1996). On the usage of differential evolution for function optimization. In Biennial conference of the North American fuzzy information processing society (NAFIPS) (pp. 519–523).
59.
Zurück zum Zitat Sankaran, M. (1963). Approximations to the non-central chi-square distribution. Biometrika, 50(1/2), 199–204. Sankaran, M. (1963). Approximations to the non-central chi-square distribution. Biometrika, 50(1/2), 199–204.
Metadaten
Titel
Nature inspired quantile estimates of the Nakagami distribution
verfasst von
Hilary I. Okagbue
Muminu O. Adamu
Timothy A. Anake
Ashiribo S. Wusu
Publikationsdatum
03.06.2019
Verlag
Springer US
Erschienen in
Telecommunication Systems / Ausgabe 4/2019
Print ISSN: 1018-4864
Elektronische ISSN: 1572-9451
DOI
https://doi.org/10.1007/s11235-019-00584-6

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