Signal Processing - September 2017 - 139

[35] Microsoft Indoor Localization Competition. (2015). [Online]. Available: https://
www.microsoft.com/en-us/research/event/microsoft-indoor-localization-competitionipsn-2015/
[36] Microsoft Indoor Localization Competition. (2016). [Online]. Available: https://
www.microsoft.com/en-us/research/event/microsoft-indoor-localization-competitionipsn-2016/
[37] Microsoft Indoor Localization Competition. (2017). [Online]. Available: https://
www.microsoft.com/en-us/research/event/microsoft-indoor-localization-competitionipsn-2017/
[38] A. Savvides, C.-C. Han, and M. B. Strivastava. (2001). Dynamic fine-grained
localization in ad-hoc networks of sensors. Proc. 7th Annual Int. Conf. Mobile
Computing and Networking (MobiCom '01). [Online]. pp. 166-179. Available:
http://doi.acm.org/10.1145/381677.381693
[39] V. Guimarães, L. Castro, S. Carneiro, M. Monteiro, T. Rocha, M. Barandas, J.
Machado, M. Vasconcelos, H. Gamboa, and D. Elias. (2016, Oct. 4-7). A motion
tracking solution for indoor localization using smartphones. Proc. Int. Conf. Indoor
Positioning and Indoor Navigation (IPIN 2016), Alcala de Henares, Spain. [Online].
pp. 1-8. Available: http://dx.doi.org/10.1109/IPIN.2016.7743680
[40] Decawave. [Online]. Available: http://www.decawave.com
[41] F. Hammer, M. Pichler, H. Fenzl, A. Gebhard, and C. Hesch. (2015). An
acoustic position estimation prototype system for underground mining safety. Appl.
Acoust. [Online]. 92, pp. 61- 74. Available: http://www.sciencedirect.com/science/
article/pii/S0003682X14003168
[42] G. Pirkl and P. Lukowicz. (2012, Sept. 5-8). Robust, low cost indoor positioning using magnetic resonant coupling. Proc. 2012 Association for Computing
Machinery Conf. Ubiquitous Computing./Int. Conf. on Ubiquitous Computing
(Ubicomp-2012), Pittsburgh, PA. [Online]. pp. 431-440. Available: http://doi.acm
.org/10.1145/2370216.2370281
[43] A. Ashok, C. Xu, M. Gruteser, Y. Z. Richard Howard, N. Mandayam, W.
Yuan, and K. Dana. (2014). InfraRad: A radio-optical beaconing approach for
accurate indoor localization. Microsoft Indoor Localization Competition, Tech.
Rep. [Online]. Available: http://research.microsoft.com /en-US/events/
ipsn 2014i ndoorloca l izat i nocompet it ion /wi n lab_ ipsn14 _ compet it ion _
submission.pdf
[44] Y. Dobrev, C. Reustle, T. Pavlenko, F. Cordes, and M. Vossiek, "Mobile
robot 6d pose estimation using a wireless localization network," in Proc. 2016
IEEE MTT-S Int. Conf. Microwaves for Intelligent Mobility (ICMIM), 2016,
pp. 1-4.
[45] C. Sánchez, P. Taddei, S. Ceriani, E. Wolfart, and V. Sequeria, "Localization
and tracking in known large environments using portable real-time 3d sensors,"
Comput. Vis. Image Understanding (Special Issue on Assistive Computer Vision
and Robotics), vol. 149, pp. 197- 208, 2016.
[46] (2016). Leica Pegasus: Backpack wearable mobile mapping solution. [Online].
Available: http://leica-geosystems.com/products/mobile-sensor-platforms/captureplatforms/leica-pegasus-backpack

doorlocalizatinocompetition/competition_abstract_abrudan_xiao_markham_
trigoni.pdf
[56] V. Sark and E. Grass. (2014). Software defined radio for time of flight based
ranging and localization, Microsoft Indoor Localization Competition, Tech. Rep.
[Online]. Available: http://research.microsoft.com/en-US/events/ipsn2014
indoorlocalizatinocompetition/2014_ ipsn_ sark.pdf
[57] T. Schmid and D. Lee. (2014). High resolution indoor RF ranging. Microsoft
Indoor Localization Competition, Tech. Rep. [Online]. Available: http://research
.microsoft.com/en-US/events/ipsn2014indoorlocalizatinocompetition/greina_tec_
localization_ entry.pdf
[58] Z. Jiang, W. Xi, X.-Y. Li, J. Zhao, and J. Han. (2014). HiLoc: A TDoAfingerprint hybrid indoor localization system. Microsoft Indoor Localization
Competition, Tech. Rep. [Online]. Available: http://research.microsoft.com/en-US/
events/ipsn2014indoorlocalizatinocompetition/ipsn.pdf
[59] L. Selavo, I. Drikis, and A. Mednis. (2014). Localization using digitally steerable antennas. Microsoft Indoor Localization Competition, Tech. Rep. [Online].
Available: http://research.microsoft.com/en-US/events/ipsn2014indoorlocalizati
nocompetition/ipsn2014-selavo.pdf
[60] H. Zou, X. Lu, H. Jiang, and L. Xie. (2015). A fast and precise indoor localization algorithm based on an online sequential extreme learning machine.
Sensors. [Online]. 15(1), pp. 1804-1824. Available: http://dx.doi.org/10.3390/
s150101804
[61] A. S. Ferraz, A. G. Alvino, L. Q. L. Martins, and P. A. Bello. (2014). Ubee.
in: An indoor location solution for mobile devices. Microsoft Indoor Localization
Competition, Tech. Rep. [Online]. Available: http://research.microsoft.com/
en-US/events/ipsn2014indoorlocalizatinocompetition /ubee_ location _
ipsn2014.pdf
[62] L. Li, C. Zhao, G. Shen, and F. Zhao. (2014). Indoor localization with multimodalities. Microsoft Indoor Localization Competition, Tech. Rep. [Online].
Available: http://research.microsoft.com/en-US/events/ipsn2014indoorlocalizati
nocompetition/ipsn_ contest.pdf
[63] A. Marcaletti, M. Rea, D. Giustiniano, and V. Lenders, "WINS: Tracking of
mobile devices with WiFi time-of-flight," Microsoft Indoor Localization
Competition, Tech. Rep., 2014.
[64] A. Ghose, C. Bhaumik, N. Ahmed, A. Agrawal, V. Chandel, A. Kumar, and
A. Pal. (2014). UnsupLoc: A system for infrastructure friendly unsupervised indoor
localization. Microsoft Indoor Localization Competition, Tech. Rep. [Online].
Available: http://research.microsoft.com/en-US/events/ipsn2014indoorlocalizati
nocompetition/indoorlocalizationsystem.doc
[65] B. Kempke, P. Pannuto, and P. Dutta. (2015, Jan.). Harmonia: Wideband
spreading for accurate indoor RF localization. SIGMOBILE Mob. Comput.
Commun. Rev, [Online]. 18(3), pp. 19-25. Available: http://doi.acm.org/
10.1145/2721896.2721901
[66] Quantitec Intranav. [Online]. Available: https://intranav.com

[47] Y.-S. Kuo, P. Pannuto, K.-J. Hsiao, and P. Dutta. (2014). Luxapose: Indoor
positioning with mobile phones and visible light. Proc. 20th Annu. Int. Conf.
Mobile Computing and Networking (MobiCom '14). [Online]. pp. 447-458.
Available: http://doi.acm.org/10.1145/2639108.2639109

[67] G. Simon, G. Vakulya, G. Zachar, and F. Klein. (2015). LED-light based indoor
localization system. Microsoft Indoor Localization Competition, Tech. Rep.
[Online]. Available: https://www.microsoft.com/en-us/research/wp-content/
uploads/2014/10/ipsn_ simon.pdf

[48] J. Kämäräinen, M. Eskola, J. Vare, and T. Lehikoinen. (2016). UWB localization complemented by impulse radar. Microsoft Indoor Localization Competition,
Tech. Rep. [Online]. Available: https://www.microsoft.com/en-us/research/
wp-content/uploads/2015/10/kamarainen.pdf

[68] K. Klipp, J. Willaredt, H. Rose, and I. Radusch. (2015). Low cost high precision indoor localization system fusing inertia and magnetic field sensor data with
radio beacons. Microsoft Indoor Localization Competition, Tech. Rep. [Online].
Available: https://www.microsoft.com/en-us/research/wp-content/uploads/2014/10/
ipsn_ konstantin.pdf

[49] Time Domain. [Online]. Available: http://www.timedomain.com.
[50] J. Hoppe, S. Sester, J. Bordoy, F. Hoflinger, and J. Wendeberg. (2016).
Acoustic self-calibrating system for indoor smartphone tracking. Microsoft Indoor
Localization Competition, Tech. Rep. [Online]. Available: https://www.microsoft
.com/en-us/research/wp-content/uploads/2015/10/hoppe.pdf
[51] R. Reimann, A. Bestmann, and M. Ernst. (2013). Locating technology for AAL
applications with direction finding and distance measurement by narrow bandwidth
phase analysis. Evaluating AAL systems through competitive benchmarking.
[Online]. pp. 52-62. Available: http://dx.doi.org/10.1007/978-3-642-37419-7_ 5
[52] S. Adler, S. Schmitt, Y. Yang, Y. Zhao, and M. Kyas. (2014). FubLoc: Accurate
range-based indoor localization and tracking. Microsoft Indoor Localization
Competition, Tech. Rep. [Online]. Available: http://research.microsoft.com/en-US/
events/ipsn2014indoorlocalizatinocompetition/ipsn_contest.pdf
[53] M. Nikodem, S. Bialoskorski, T. Jankowski, D. Legizynski, and S. Szymczak.
(2014). Indoor localization based on low-power chirp transceivers. Microsoft Indoor
Localization Competition, Tech. Rep. [Online]. Available: http://research.micro
soft.com/en-US/events/ipsn2014indoorlocalizatinocompetition/nikodem_ indoor_
localization_ competition.pdf
[54] V. Dentamaro, D. Colucci, and P. Ambrosini. Nextome: Indoor positioning and
navigation system. [Online]. Available: http://www.nextome.org/index.php
[55] T. E. Abrudan, Z. Xiao, A. Markham, and N. Trigoni. (2014). IMU-aided
magneto-inductive localization. Microsoft Indoor Localization Competition, Tech.
Rep. [Online]. Available: http://research.microsoft.com/en-US/events/ipsn2014in

[69] Z. Chen, Q. Zhu, H. Jiang, H. Zou, Y. C. Soh, L. Xie, R. Jia, and C. Spanos.
(2015). An iBeacon assisted indoor localization and tracking system. Microsoft
Indoor Localization Competition, Tech. Rep. [Online]. Available: https://www
. m i c r o s of t .c o m /e n - u s / r e s e a r c h / w p - c o n t e n t / u p lo a d s / 2 014 /10 / i p s n _
zhenghua.pdf
[70] G. von Zengen, Y. Schroder, and L. Wolf. (2015). InPhase: A low cost indoor
localization system for IoT devices. Microsoft Indoor Localization Competition,
Tech. Rep. [Online]. Available: https://www.microsoft.com/en-us/research/
wp-content/uploads/2014/10/ipsn_ zengen.pdf
[71] A. Symington, J. Medvesek, P. Martin, M. Srivastava, and S. Hailes. (2015).
Real-time indoor localization using magnetic, time of flight, and signal strength
inference maps. Microsoft Indoor Localization Competition, Tech. Rep. [Online].
Ava i la ble: ht t p s: //w w w.m ic r o s of t .c om /e n - u s / r e s e a r ch /w p - c o nt e nt /
uploads/2014/10/ipsn_ symington.pdf
[72] M. Maróti, P. Völgyesi, S. Dóra, B. Kusý, A. Nádas, A. Lédeczi, G. Balogh,
and K. Molnár. (2005). "Radio interferometric geolocation," in Proc. 3rd Int. Conf.
Embedded Networked Sensor Systems (SenSys '05), 2005, pp. 1-12.
[73] L.-M. Lin, J.-W. Qiu, Y.-L. Chen, S.-W. Yang, Y.-C. Tseng, and P. Chou.
(2015). Collaborative localization using inter-device particle filter data fusion.
Microsoft Indoor Localization Competition, Tech. Rep. [Online]. Available:
https://www.microsoft.com /en-us/research/wp-content/uploads/2014/10/
ipsn_lin.pdf

IEEE SIGNAL PROCESSING MAGAZINE

|

September 2017

|

139


http://https:// http://www.microsoft.com/en-us/research/event/microsoft-indoor-localization-competi http://https:// http://www.microsoft.com/en-us/research/event/microsoft-indoor-localization-competi http://research.microsoft.com/en-US/events/ipsn2014 http://https:// http://www.microsoft.com/en-us/research/event/microsoft-indoor-localization-competi http://research http://www.microsoft.com/en-US/events/ipsn2014indoorlocalizatinocompetition/greina_tec_ http://doi.acm.org/10.1145/381677.381693 http://research.microsoft.com/en-US/ http://research.microsoft.com/en-US/events/ipsn2014indoorlocalizati http://dx.doi.org/10.1109/IPIN.2016.7743680 http://www.decawave.com http://dx.doi.org/10.3390/ http://www.sciencedirect.com/science/ http://research.microsoft.com/ http://www.doi.acm http://research.microsoft.com/en-US/events/ipsn2014indoorlocalizati http://research.microsoft.com/en-US/events/ http://research.microsoft.com/en-US/events/ipsn2014indoorlocalizati http://doi.acm.org/ http://www.leica-geosystems.com/products/mobile-sensor-platforms/capture https://www.intranav.com https://www.microsoft.com/en-us/research/wp-content/ http://doi.acm.org/10.1145/2639108.2639109 https://www.microsoft.com/en-us/research/ https://www.microsoft.com/en-us/research/wp-content/uploads/2014/10/ http://www.timedomain.com https://www.microsoft https://www http://dx.doi.org/10.1007/978-3-642-37419-7_ https://www.microsoft.com/en-us/research/ http://research.microsoft.com/en-US/ http://www.research.micro http://www.soft.com/en-US/events/ipsn2014indoorlocalizatinocompetition/nikodem_ http://www.nextome.org/index.php https://www.microsoft.com/en-us/research/wp-content/uploads/2014/10/ http://research.microsoft.com/en-US/events/ipsn2014in

Table of Contents for the Digital Edition of Signal Processing - September 2017

Signal Processing - September 2017 - Cover1
Signal Processing - September 2017 - Cover2
Signal Processing - September 2017 - 1
Signal Processing - September 2017 - 2
Signal Processing - September 2017 - 3
Signal Processing - September 2017 - 4
Signal Processing - September 2017 - 5
Signal Processing - September 2017 - 6
Signal Processing - September 2017 - 7
Signal Processing - September 2017 - 8
Signal Processing - September 2017 - 9
Signal Processing - September 2017 - 10
Signal Processing - September 2017 - 11
Signal Processing - September 2017 - 12
Signal Processing - September 2017 - 13
Signal Processing - September 2017 - 14
Signal Processing - September 2017 - 15
Signal Processing - September 2017 - 16
Signal Processing - September 2017 - 17
Signal Processing - September 2017 - 18
Signal Processing - September 2017 - 19
Signal Processing - September 2017 - 20
Signal Processing - September 2017 - 21
Signal Processing - September 2017 - 22
Signal Processing - September 2017 - 23
Signal Processing - September 2017 - 24
Signal Processing - September 2017 - 25
Signal Processing - September 2017 - 26
Signal Processing - September 2017 - 27
Signal Processing - September 2017 - 28
Signal Processing - September 2017 - 29
Signal Processing - September 2017 - 30
Signal Processing - September 2017 - 31
Signal Processing - September 2017 - 32
Signal Processing - September 2017 - 33
Signal Processing - September 2017 - 34
Signal Processing - September 2017 - 35
Signal Processing - September 2017 - 36
Signal Processing - September 2017 - 37
Signal Processing - September 2017 - 38
Signal Processing - September 2017 - 39
Signal Processing - September 2017 - 40
Signal Processing - September 2017 - 41
Signal Processing - September 2017 - 42
Signal Processing - September 2017 - 43
Signal Processing - September 2017 - 44
Signal Processing - September 2017 - 45
Signal Processing - September 2017 - 46
Signal Processing - September 2017 - 47
Signal Processing - September 2017 - 48
Signal Processing - September 2017 - 49
Signal Processing - September 2017 - 50
Signal Processing - September 2017 - 51
Signal Processing - September 2017 - 52
Signal Processing - September 2017 - 53
Signal Processing - September 2017 - 54
Signal Processing - September 2017 - 55
Signal Processing - September 2017 - 56
Signal Processing - September 2017 - 57
Signal Processing - September 2017 - 58
Signal Processing - September 2017 - 59
Signal Processing - September 2017 - 60
Signal Processing - September 2017 - 61
Signal Processing - September 2017 - 62
Signal Processing - September 2017 - 63
Signal Processing - September 2017 - 64
Signal Processing - September 2017 - 65
Signal Processing - September 2017 - 66
Signal Processing - September 2017 - 67
Signal Processing - September 2017 - 68
Signal Processing - September 2017 - 69
Signal Processing - September 2017 - 70
Signal Processing - September 2017 - 71
Signal Processing - September 2017 - 72
Signal Processing - September 2017 - 73
Signal Processing - September 2017 - 74
Signal Processing - September 2017 - 75
Signal Processing - September 2017 - 76
Signal Processing - September 2017 - 77
Signal Processing - September 2017 - 78
Signal Processing - September 2017 - 79
Signal Processing - September 2017 - 80
Signal Processing - September 2017 - 81
Signal Processing - September 2017 - 82
Signal Processing - September 2017 - 83
Signal Processing - September 2017 - 84
Signal Processing - September 2017 - 85
Signal Processing - September 2017 - 86
Signal Processing - September 2017 - 87
Signal Processing - September 2017 - 88
Signal Processing - September 2017 - 89
Signal Processing - September 2017 - 90
Signal Processing - September 2017 - 91
Signal Processing - September 2017 - 92
Signal Processing - September 2017 - 93
Signal Processing - September 2017 - 94
Signal Processing - September 2017 - 95
Signal Processing - September 2017 - 96
Signal Processing - September 2017 - 97
Signal Processing - September 2017 - 98
Signal Processing - September 2017 - 99
Signal Processing - September 2017 - 100
Signal Processing - September 2017 - 101
Signal Processing - September 2017 - 102
Signal Processing - September 2017 - 103
Signal Processing - September 2017 - 104
Signal Processing - September 2017 - 105
Signal Processing - September 2017 - 106
Signal Processing - September 2017 - 107
Signal Processing - September 2017 - 108
Signal Processing - September 2017 - 109
Signal Processing - September 2017 - 110
Signal Processing - September 2017 - 111
Signal Processing - September 2017 - 112
Signal Processing - September 2017 - 113
Signal Processing - September 2017 - 114
Signal Processing - September 2017 - 115
Signal Processing - September 2017 - 116
Signal Processing - September 2017 - 117
Signal Processing - September 2017 - 118
Signal Processing - September 2017 - 119
Signal Processing - September 2017 - 120
Signal Processing - September 2017 - 121
Signal Processing - September 2017 - 122
Signal Processing - September 2017 - 123
Signal Processing - September 2017 - 124
Signal Processing - September 2017 - 125
Signal Processing - September 2017 - 126
Signal Processing - September 2017 - 127
Signal Processing - September 2017 - 128
Signal Processing - September 2017 - 129
Signal Processing - September 2017 - 130
Signal Processing - September 2017 - 131
Signal Processing - September 2017 - 132
Signal Processing - September 2017 - 133
Signal Processing - September 2017 - 134
Signal Processing - September 2017 - 135
Signal Processing - September 2017 - 136
Signal Processing - September 2017 - 137
Signal Processing - September 2017 - 138
Signal Processing - September 2017 - 139
Signal Processing - September 2017 - 140
Signal Processing - September 2017 - 141
Signal Processing - September 2017 - 142
Signal Processing - September 2017 - 143
Signal Processing - September 2017 - 144
Signal Processing - September 2017 - 145
Signal Processing - September 2017 - 146
Signal Processing - September 2017 - 147
Signal Processing - September 2017 - 148
Signal Processing - September 2017 - 149
Signal Processing - September 2017 - 150
Signal Processing - September 2017 - 151
Signal Processing - September 2017 - 152
Signal Processing - September 2017 - 153
Signal Processing - September 2017 - 154
Signal Processing - September 2017 - 155
Signal Processing - September 2017 - 156
Signal Processing - September 2017 - 157
Signal Processing - September 2017 - 158
Signal Processing - September 2017 - 159
Signal Processing - September 2017 - 160
Signal Processing - September 2017 - 161
Signal Processing - September 2017 - 162
Signal Processing - September 2017 - 163
Signal Processing - September 2017 - 164
Signal Processing - September 2017 - 165
Signal Processing - September 2017 - 166
Signal Processing - September 2017 - 167
Signal Processing - September 2017 - 168
Signal Processing - September 2017 - 169
Signal Processing - September 2017 - 170
Signal Processing - September 2017 - 171
Signal Processing - September 2017 - 172
Signal Processing - September 2017 - 173
Signal Processing - September 2017 - 174
Signal Processing - September 2017 - 175
Signal Processing - September 2017 - 176
Signal Processing - September 2017 - 177
Signal Processing - September 2017 - 178
Signal Processing - September 2017 - 179
Signal Processing - September 2017 - 180
Signal Processing - September 2017 - 181
Signal Processing - September 2017 - 182
Signal Processing - September 2017 - 183
Signal Processing - September 2017 - 184
Signal Processing - September 2017 - 185
Signal Processing - September 2017 - 186
Signal Processing - September 2017 - 187
Signal Processing - September 2017 - 188
Signal Processing - September 2017 - 189
Signal Processing - September 2017 - 190
Signal Processing - September 2017 - 191
Signal Processing - September 2017 - 192
Signal Processing - September 2017 - 193
Signal Processing - September 2017 - 194
Signal Processing - September 2017 - 195
Signal Processing - September 2017 - 196
Signal Processing - September 2017 - Cover3
Signal Processing - September 2017 - Cover4
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_201809
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_201807
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_201805
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_201803
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_201801
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_1117
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0917
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0717
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0517
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0317
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0117
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_1116
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0916
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0716
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0516
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0316
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0116
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_1115
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0915
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0715
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0515
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0315
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0115
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_1114
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0914
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0714
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0514
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0314
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0114
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_1113
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0913
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0713
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0513
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0313
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0113
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_1112
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0912
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0712
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0512
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0312
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0112
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_1111
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0911
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0711
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0511
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0311
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0111
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_1110
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0910
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0710
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0510
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0310
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0110
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_1109
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0909
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0709
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0509
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0309
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0109
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_1108
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0908
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0708
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0508
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0308
https://www.nxtbook.com/nxtbooks/ieee/signalprocessing_0108
https://www.nxtbookmedia.com