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<span id="sec-references"></span><h1>References<a class="headerlink" href="#references" title="Permalink to this headline"></a></h1>
<p id="id1"><dl class="citation">
<dt class="label" id="id244"><span class="brackets">1</span></dt>
<dd><p>Seiscomp on github. URL: <a class="reference external" href="https://github.com/SeisComP">https://github.com/SeisComP</a>.</p>
</dd>
<dt class="label" id="id80"><span class="brackets">2</span></dt>
<dd><p>Affero General Public License. GNU. URL: <a class="reference external" href="https://www.gnu.org/licenses/agpl-3.0.html">https://www.gnu.org/licenses/agpl-3.0.html</a>.</p>
</dd>
<dt class="label" id="id82"><span class="brackets">3</span></dt>
<dd><p>CAPS. gempa module. URL: <a class="reference external" href="https://docs.gempa.de/caps/current/index.html">https://docs.gempa.de/caps/current/index.html</a>.</p>
</dd>
<dt class="label" id="id94"><span class="brackets">4</span></dt>
<dd><p>EIDA. European Integrated Data Archive, Orfeus. URL: <a class="reference external" href="https://www.orfeus-eu.org/data/eida/">https://www.orfeus-eu.org/data/eida/</a>.</p>
</dd>
<dt class="label" id="id102"><span class="brackets">5</span></dt>
<dd><p>FDSN Web Service Specifications. International Federation of Digital Seismograph Networks. URL: <a class="reference external" href="http://www.fdsn.org/webservices/FDSN-WS-Specifications-1.2.pdf">http://www.fdsn.org/webservices/FDSN-WS-Specifications-1.2.pdf</a>.</p>
</dd>
<dt class="label" id="id103"><span class="brackets">6</span></dt>
<dd><p>FDSN data centers. International Federation of Digital Seismograph Networks. URL: <a class="reference external" href="https://www.fdsn.org/webservices/datacenters/">https://www.fdsn.org/webservices/datacenters/</a>.</p>
</dd>
<dt class="label" id="id106"><span class="brackets">7</span></dt>
<dd><p>FDSNWS scripts. SeisComP. URL: <a class="reference external" href="https://www.seiscomp.de/seiscomp3/doc/applications/fdsnws_scripts.html">https://www.seiscomp.de/seiscomp3/doc/applications/fdsnws_scripts.html</a>.</p>
</dd>
<dt class="label" id="id101"><span class="brackets">8</span></dt>
<dd><p>FDSNWS. International Federation of Digital Seismograph Networks. URL: <a class="reference external" href="http://www.fdsn.org/webservices/">http://www.fdsn.org/webservices/</a>.</p>
</dd>
<dt class="label" id="id114"><span class="brackets">9</span></dt>
<dd><p>GEOFON. GFZ German Resarch Center for Geosciences. URL: <a class="reference external" href="https://geofon.gfz-potsdam.de/">https://geofon.gfz-potsdam.de/</a>.</p>
</dd>
<dt class="label" id="id117"><span class="brackets">10</span></dt>
<dd><p>GITEWS. German-Indonesian Tsunami Early Warning System for the Indian Ocean. URL: <a class="reference external" href="https://www.gitews.org/en/homepage/">https://www.gitews.org/en/homepage/</a>.</p>
</dd>
<dt class="label" id="id133"><span class="brackets">11</span></dt>
<dd><p>IPGP. URL: <a class="reference external" href="http://www.ipgp.fr">http://www.ipgp.fr</a>.</p>
</dd>
<dt class="label" id="id130"><span class="brackets">12</span></dt>
<dd><p>IRIS DMC. FDSNWS availability Web Service Documentation. URL: <a class="reference external" href="https://service.iris.edu/fdsnws/availability/1/">https://service.iris.edu/fdsnws/availability/1/</a>.</p>
</dd>
<dt class="label" id="id129"><span class="brackets">13</span></dt>
<dd><p>IRIS. Incorporated Research Institutions for Seismology. URL: <a class="reference external" href="https://www.iris.edu">https://www.iris.edu</a>.</p>
</dd>
<dt class="label" id="id131"><span class="brackets">14</span></dt>
<dd><p>ISC. International Seismological Centre. URL: <a class="reference external" href="http://www.isc.ac.uk/">http://www.isc.ac.uk/</a>.</p>
</dd>
<dt class="label" id="id138"><span class="brackets">15</span></dt>
<dd><p>Libslink. SeedLink client library written in C. URL: <a class="reference external" href="https://ds.iris.edu/ds/nodes/dmc/software/downloads/libslink/">https://ds.iris.edu/ds/nodes/dmc/software/downloads/libslink/</a>.</p>
</dd>
<dt class="label" id="id162"><span class="brackets">16</span></dt>
<dd><p>Natural Resources Canada (NRCAN), Earthquakes Canada. URL: <a class="reference external" href="https://earthquakescanada.nrcan.gc.ca/index-en.php">https://earthquakescanada.nrcan.gc.ca/index-en.php</a>.</p>
</dd>
<dt class="label" id="id168"><span class="brackets">17</span></dt>
<dd><p>OVSM, Interreg Caraibes. URL: <a class="reference external" href="https://www.interreg-caraibes.com">https://www.interreg-caraibes.com</a>.</p>
</dd>
<dt class="label" id="id167"><span class="brackets">18</span></dt>
<dd><p>Orfeus. Observatories &amp; Research Facilities for European Seismology. URL: <a class="reference external" href="https://www.orfeus-eu.org/">https://www.orfeus-eu.org/</a>.</p>
</dd>
<dt class="label" id="id115"><span class="brackets">19</span></dt>
<dd><p>Public download site of gempa. URL: <a class="reference external" href="https://data.gempa.de/packages/Public/seiscomp/">https://data.gempa.de/packages/Public/seiscomp/</a>.</p>
</dd>
<dt class="label" id="id173"><span class="brackets">20</span></dt>
<dd><p>Publishsubscribe pattern. Wikipedia. URL: <a class="reference external" href="https://en.wikipedia.org/wiki/Publish%E2%80%93subscribe_pattern">https://en.wikipedia.org/wiki/Publish%E2%80%93subscribe_pattern</a>.</p>
</dd>
<dt class="label" id="id254"><span class="brackets">21</span></dt>
<dd><p>SMP. Station Management Portal by gempa GmbH. URL: <a class="reference external" href="https://smp.gempa.de/">https://smp.gempa.de/</a>.</p>
</dd>
<dt class="label" id="id264"><span class="brackets">22</span></dt>
<dd><p>SeisComP UML diagram. GEOFON. URL: <a class="reference external" href="https://geofon.gfz-potsdam.de/_uml_new/">https://geofon.gfz-potsdam.de/_uml_new/</a>.</p>
</dd>
<dt class="label" id="id242"><span class="brackets">23</span></dt>
<dd><p>SeisComP forum. GFZ. URL: <a class="reference external" href="https://forum.seiscomp.de/">https://forum.seiscomp.de/</a>.</p>
</dd>
<dt class="label" id="id270"><span class="brackets">24</span></dt>
<dd><p>WebDC3. Documentation. URL: <a class="reference external" href="https://webdc3.readthedocs.io/">https://webdc3.readthedocs.io/</a>.</p>
</dd>
<dt class="label" id="id85"><span class="brackets">25</span></dt>
<dd><p>capstool. gempa plugin. URL: <a class="reference external" href="https://docs.gempa.de/caps/current/apps/capstool.html">https://docs.gempa.de/caps/current/apps/capstool.html</a>.</p>
</dd>
<dt class="label" id="id113"><span class="brackets">26</span></dt>
<dd><p>gempa GmbH. The SeisComP development and maintenance company. URL: <a class="reference external" href="https://www.gempa.de/">https://www.gempa.de/</a>.</p>
</dd>
<dt class="label" id="id132"><span class="brackets">27</span></dt>
<dd><p>iLoc SeisCode. IRIS. URL: <a class="reference external" href="https://seiscode.iris.washington.edu/projects/iloc">https://seiscode.iris.washington.edu/projects/iloc</a>.</p>
</dd>
<dt class="label" id="id239"><span class="brackets">28</span></dt>
<dd><p>seedlink. Real-time waveform server. URL: <a class="reference external" href="https://docs.gempa.de/seiscomp/current/apps/seedlink.html">https://docs.gempa.de/seiscomp/current/apps/seedlink.html</a>.</p>
</dd>
<dt class="label" id="id238"><span class="brackets">29</span></dt>
<dd><p>SEED Reference Manual. USGS, 2012. URL: <a class="reference external" href="http://www.fdsn.org/pdf/SEEDManual_V2.4.pdf">http://www.fdsn.org/pdf/SEEDManual_V2.4.pdf</a>.</p>
</dd>
<dt class="label" id="id9"><span class="brackets">30</span></dt>
<dd><p>M.K. Bolton, D.A. Storchak, and J. Harris. Updating default depth in the isc bulletin. <em>Phys. Earth Planet. Int.</em>, 1:27 45, 2006. <a class="reference external" href="https://doi.org/10.1016/j.pepi.2006.03.004">doi:10.1016/j.pepi.2006.03.004</a>.</p>
</dd>
<dt class="label" id="id12"><span class="brackets">31</span></dt>
<dd><p>I. Bondár and K.L. McLaughlin. A new ground truth data set for seismic studies. <em>Seismol. Res. Lett.</em>, 3:465 472, 2009. <a class="reference external" href="https://doi.org/10.1785/gssrl.80.3.465">doi:10.1785/gssrl.80.3.465</a>.</p>
</dd>
<dt class="label" id="id13"><span class="brackets">32</span></dt>
<dd><p>I. Bondár and K.L. McLaughlin. Seismic location bias and uncertainty in the presence of correlated and non-gaussian travel-time errors. <em>Bull. Seismol. Soc. Am.</em>, 1:172 193, 2009. <a class="reference external" href="https://doi.org/10.1785/0120080922">doi:10.1785/0120080922</a>.</p>
</dd>
<dt class="label" id="id16"><span class="brackets">33</span></dt>
<dd><p>I. Bondár, P. Mónus, C. Czanik, M. Kiszely, Z. Gráczer, Z. Wéber, and the AlpArrayWorking Group. Relocation of Seismicity in the Pannonian Basin Using a Global 3D Velocity Model. <em>Seismol. Res. Lett.</em>, 6:2284 2293, 2018. <a class="reference external" href="https://doi.org/10.1785/0220180143">doi:10.1785/0220180143</a>.</p>
</dd>
<dt class="label" id="id14"><span class="brackets">34</span></dt>
<dd><p>I. Bondár and D. Storchak. Improved location procedures at the International Seismological Centre. <em>Geophys. J. Int.</em>, 3:1220 1244, 2011. <a class="reference external" href="https://doi.org/10.1111/j.1365-246X.2011.05107.x">doi:10.1111/j.1365-246X.2011.05107.x</a>.</p>
</dd>
<dt class="label" id="id18"><span class="brackets">35</span></dt>
<dd><p>P. Bormann and J. Saul. The new iaspei standard broadband magnitude mb. <em>Seismol. Res. Lett.</em>, 5:698 705, 2008. <a class="reference external" href="https://doi.org/10.1785/gssrl.79.5.698">doi:10.1785/gssrl.79.5.698</a>.</p>
</dd>
<dt class="label" id="id19"><span class="brackets">36</span></dt>
<dd><p>P. Bormann and J. Saul. A Fast, Non-saturating Magnitude Estimator for Great Earthquakes. <em>Seismol. Res. Lett.</em>, 80(5):808 816, 2009. <a class="reference external" href="https://doi.org/10.1785/gssrl.80.5.808">doi:10.1785/gssrl.80.5.808</a>.</p>
</dd>
<dt class="label" id="id17"><span class="brackets">37</span></dt>
<dd><p>P. Bormann and K. Wylegalla. Quick estimator of the size of great earthquakes. <em>EOS</em>, 86(46):464, 2005.</p>
</dd>
<dt class="label" id="id20"><span class="brackets">38</span></dt>
<dd><p>S.R. Bratt and T.C. Bache. Locating events with a sparse network of regional arrays. <em>Bull. Seismol. Soc. Am.</em>, 78(2):780 798, 1988. URL: <a class="reference external" href="https://pubs.geoscienceworld.org/ssa/bssa/article-pdf/78/2/780/5334120/bssa0780020780.pdf">https://pubs.geoscienceworld.org/ssa/bssa/article-pdf/78/2/780/5334120/bssa0780020780.pdf</a>, <a class="reference external" href="https://doi.org/10.1785/BSSA0780020780">doi:10.1785/BSSA0780020780</a>.</p>
</dd>
<dt class="label" id="id21"><span class="brackets">39</span></dt>
<dd><p>S.R. Bratt and W. Nagy. The LocSAT Program. <em>Science Applications International Corporation (SAIC), San Diego</em>, 1991.</p>
</dd>
<dt class="label" id="id36"><span class="brackets">40</span></dt>
<dd><p>B. Gutenberg and C.F. Richter. Magnitude and Energy of Earthquakes. <em>Annals of Geophysics</em>, 9(1):1 15, 1956. URL: <a class="reference external" href="https://resolver.caltech.edu/CaltechAUTHORS:20140130-105324849">https://resolver.caltech.edu/CaltechAUTHORS:20140130-105324849</a>, <a class="reference external" href="https://doi.org/10.4401/ag-5590">doi:10.4401/ag-5590</a>.</p>
</dd>
<dt class="label" id="id38"><span class="brackets">41</span></dt>
<dd><p>S. Hiemer and D. Roessler. Monitoring the West Bohemian earthquake swarm in 2008/2009 by a temporary small-aperture seismic array. <em>J. Seismol.</em>, 16:169182, 2012. <a class="reference external" href="https://doi.org/10.1007/s10950-011-9256-5">doi:10.1007/s10950-011-9256-5</a>.</p>
</dd>
<dt class="label" id="id39"><span class="brackets">42</span></dt>
<dd><p>L.K. Hutton and D.M. Boore. The ML scale in southern California. <em>Bull. Seismol. Soc. Am,</em>, 77(6):20742094, 1987. <a class="reference external" href="https://doi.org/10.5194/nhess-10-2611-2010">doi:10.5194/nhess-10-2611-2010</a>.</p>
</dd>
<dt class="label" id="id40"><span class="brackets">43</span></dt>
<dd><p>IASPEI. Summary of magnitude working group recommendations on standard procedures for determining earthquake magnitudes from digital data. <em>IASPEI Website</em>, 2013. URL: <a class="reference external" href="http://www.iaspei.org/commissions/commission-on-seismological-observation-and-interpretation/Summary_WG_recommendations_20130327.pdf">http://www.iaspei.org/commissions/commission-on-seismological-observation-and-interpretation/Summary_WG_recommendations_20130327.pdf</a>.</p>
</dd>
<dt class="label" id="id41"><span class="brackets">44</span></dt>
<dd><p>T.H. Jordan and K.A. Sverdrup. Teleseismic location techniques and their application to earthquake clusters in the south-central pacific. <em>Bull. Seismol. Soc. Am.</em>, 4:1105 1130, 1981. <a class="reference external" href="https://doi.org/10.1785/BSSA0710041105">doi:10.1785/BSSA0710041105</a>.</p>
</dd>
<dt class="label" id="id42"><span class="brackets">45</span></dt>
<dd><p>A. Jurkevics. Polarization analysis of three-component array data. <em>Bull. Seismol. Soc. Am.</em>, 78(5):17251743, 1988. <a class="reference external" href="https://doi.org/10.1785/BSSA0710041105">doi:10.1785/BSSA0710041105</a>.</p>
</dd>
<dt class="label" id="id44"><span class="brackets">46</span></dt>
<dd><p>A. Katsumata. Comparison of Magnitudes Estimated by the Japan Meteorological Agency with Moment Magnitudes for Intermediate and Deep Earthquakes. <em>Bull. Seism. Soc.</em>, 86(3):832 842, 1996.</p>
</dd>
<dt class="label" id="id47"><span class="brackets">47</span></dt>
<dd><p>F.W. Klein. Users guide to HYPOINVERSE-2000, a Fortran program to solve for earthquake locations and magnitudes. <em>US Geological Survey</em>, 2002-171:, 2002. URL: <a class="reference external" href="https://www.usgs.gov/node/279394">https://www.usgs.gov/node/279394</a>, <a class="reference external" href="https://doi.org/10.3133/ofr02171">doi:10.3133/ofr02171</a>.</p>
</dd>
<dt class="label" id="id51"><span class="brackets">48</span></dt>
<dd><p>W.H. Lee and J.C. Lahr. Hypo71 (revised): a computer program for determining local earthquake hypocentral parameters, magnitude, and first motion pattern of local earthquakes. <em>US Geol. Survey Open-file Report 75-311</em>, 1975. URL: <a class="reference external" href="https://pubs.er.usgs.gov/publication/ofr75311">https://pubs.er.usgs.gov/publication/ofr75311</a>, <a class="reference external" href="https://doi.org/10.3133/ofr75311">doi:10.3133/ofr75311</a>.</p>
</dd>
<dt class="label" id="id160"><span class="brackets">49</span></dt>
<dd><p>A. Lomax. The NonLinLoc Software Guide. Manual. URL: <a class="reference external" href="http://alomax.free.fr/nlloc/">http://alomax.free.fr/nlloc/</a>.</p>
</dd>
<dt class="label" id="id55"><span class="brackets">50</span></dt>
<dd><p>O.W. Nuttli. Seismic wave attenuation and magnitude relations for eastern north america. <em>J. Geophys. Res.</em>, 5:876 885, 1973. <a class="reference external" href="https://doi.org/10.1029/JB078i005p00876">doi:10.1029/JB078i005p00876</a>.</p>
</dd>
<dt class="label" id="id56"><span class="brackets">51</span></dt>
<dd><p>C. Paige and M. Saunders. Lsqr: an algorithm for sparse linear equations and sparse least squares. <em>ACM Transactions on Mathematical Software</em>, 1:43 71, 1982. <a class="reference external" href="https://doi.org/10.1145/355984.355989">doi:10.1145/355984.355989</a>.</p>
</dd>
<dt class="label" id="id57"><span class="brackets">52</span></dt>
<dd><p>G.L. Pavlis, F. Vernon, D. Harvey, and D. Quinlan. Lsqr: an algorithm for sparse linear equations and sparse least squares. <em>ACM Transactions on Mathematical Software</em>, 1:43 71, 1982. <a class="reference external" href="https://doi.org/10.1145/355984.355989">doi:10.1145/355984.355989</a>.</p>
</dd>
<dt class="label" id="id59"><span class="brackets">53</span></dt>
<dd><p>C.F. Richter. An instrumental earthquake magnitude scale. <em>Bull. Seismol. Soc. Am.</em>, 1:1 32, 1935. <a class="reference external" href="https://doi.org/10.1785/BSSA0250010001">doi:10.1785/BSSA0250010001</a>.</p>
</dd>
<dt class="label" id="id60"><span class="brackets">54</span></dt>
<dd><p>J. Ristau, D. Harte, and J. Salichon. A Revised Local Magnitude (ML) Scale for New Zealand Earthquakes. <em>Bull. Seismol. Soc. Am.</em>, 106(2):, 2016. <a class="reference external" href="https://doi.org/10.1785/0120150293">doi:10.1785/0120150293</a>.</p>
</dd>
<dt class="label" id="id67"><span class="brackets">55</span></dt>
<dd><p>M. Sambridge. Geophysical inversion with a neighbourhood algorithm. I. Searching the parameter space. <em>Geophys. J. Int.</em>, 2:479 494, 1999. <a class="reference external" href="https://doi.org/10.1046/j.1365-246X.1999.00876.x">doi:10.1046/j.1365-246X.1999.00876.x</a>.</p>
</dd>
<dt class="label" id="id68"><span class="brackets">56</span></dt>
<dd><p>M. Sambridge and B.L.N. Kennett. Seismic event location: non-linear inversion using a neighbourhood algorithm. <em>Pure and Applied Geophysics</em>, 151(1):241 257, 2001. <a class="reference external" href="https://doi.org/10.1007/PL00001158">doi:10.1007/PL00001158</a>.</p>
</dd>
<dt class="label" id="id72"><span class="brackets">57</span></dt>
<dd><p>S. Stange. ML determination for local and regional events using a sparse network in Southwestern Germany. <em>J. Seismol.</em>, 10:247 257, 2006. <a class="reference external" href="https://doi.org/10.1007/s10950-006-9010-6">doi:10.1007/s10950-006-9010-6</a>.</p>
</dd>
<dt class="label" id="id73"><span class="brackets">58</span></dt>
<dd><p>S. Tsuboi, K. Abe, K. Takano, and Y. Yamanaka. Rapid determination of Mw from broadband P waveforms. <em>Bull. Seismol. Soc. Am.</em>, 1995. <a class="reference external" href="https://doi.org/10.1785/BSSA0850020606">doi:10.1785/BSSA0850020606</a>.</p>
</dd>
<dt class="label" id="id76"><span class="brackets">59</span></dt>
<dd><p>P.M. Whitmore, S. Tsuboi, B. Hirshorn, and T.J. Sokolowski. Magnitude dependent correction for Mwp. <em>Science of Tsunami Hazards</em>, 20(4):, 2002.</p>
</dd>
<dt class="label" id="id77"><span class="brackets">60</span></dt>
<dd><p>J.B. Young, B.W. Presgrave, H. Aichele, D.A. Wiens, and E.A. Flinn. The Flinn-Engdahl Regionalisation Scheme: The 1995 revision. <em>Phys. Earth Planet. Int.</em>, 96:223 297, 1996. <a class="reference external" href="https://doi.org/10.1016/0031-9201(96)03141-X">doi:10.1016/0031-9201(96)03141-X</a>.</p>
</dd>
<dt class="label" id="id243"><span class="brackets">61</span></dt>
<dd><p>Helmholtz-Centre Potsdam - GFZ German Research Centre for Geosciences and gempa GmbH. The SeisComP seismological software package. GFZ Data Services. 2008. URL: <a class="reference external" href="https://www.seiscomp.de">https://www.seiscomp.de</a>, <a class="reference external" href="https://doi.org/10.5880/GFZ.2.4.2020.003">doi:10.5880/GFZ.2.4.2020.003</a>.</p>
</dd>
</dl>
</p>
<p>Potentially uncited but relevant sources of information include:</p>
<div class="section" id="iloc">
<h2><a class="reference internal" href="../apps/global_iloc.html#global-iloc"><span class="std std-ref">iLoc</span></a><a class="headerlink" href="#iloc" title="Permalink to this headline"></a></h2>
<ol class="arabic simple">
<li><p>Bondár, I., K. McLaughlin and H. Israelsson, Improved event location uncertainty
estimates, Science Applications International Corp., Final Report,
AFRL-RV-HA-TR-2008-1074, 2008.</p></li>
<li><p>Bondár, I. and K. McLaughlin, Seismic location bias and uncertainty in the presence
of correlated and non-Gaussian travel-time errors, Bull. Seism. Soc. Am., 99,
172-193, doi:10.1785/0120080922, 2009.</p></li>
<li><p>Bondár, I., E.R. Engdahl, A. Villasenor, J.Harris and D. Storchak, ISC-GEM:
Global instrumental earthquake catalogue (1900-2009), II. Location and seismicity
patterns, Phys. Earth. Planet. Int., doi: 10.1016/j.pepi.2014.06.002, 239, 2-13, 2015.</p></li>
<li><p>Buland, R. and C.H. Chapman, 1983. The computation of seismic travel times,
Bull. Seism. Soc. Am., 73, 1271-1302.</p></li>
<li><p>Dziewonski, A.M. and F. Gilbert, 1976, The effect of small, aspherical perturbations
on travel times and a re-examination of the correction for ellipticity,
Geophys., J. R. Astr. Soc., 44, 7-17.</p></li>
<li><p>Engdahl, E.R., R. van der Hilst, and R. Buland, 1998. Global teleseismic earthquake
relocation with improved travel times and procedures for depth determination,
Bull. Seism. Soc. Am., 88, 722-743.</p></li>
<li><p>Kennett, B. and Engdahl, E.R., 1991. Travel times for global earthquake location
and phase identification, Geophys. J. Int., 105, 429465.</p></li>
<li><p>Kennett, B.L.N., E.R. Engdahl, and R. Buland, 1995. Constraints on seismic velocities
in the Earth from traveltimes, Geophys. J. Int., 122, 108-124.</p></li>
<li><p>Kennett, B.L.N. and O. Gudmundsson, 1996, Ellipticity corrections for seismic
phases, Geophys. J. Int., 127, 40-48.</p></li>
<li><p>Myers, S.C, M.L. Begnaud, S. Ballard, M.E. Pasyanos, W.S. Phillips, A.L. Ramirez,
M.S. Antolik, K.D. Hutchenson, J. Dwyer, C. A. Rowe, and G. S. Wagner, 2010,
A crust and upper mantle model of Eurasia and North Africa for Pn travel time
calculation, Bull. Seism. Soc. Am., 100, 640-656.</p></li>
<li><p>Weber, B., Bondár, I., Roessler, D., Becker, J., SeisComP3 iLoc Integration
Applied to Array Processing, SnT conference, Abstract: T3.5-P54, Vienna/Austria,
2019,
<a class="reference external" href="https://events.ctbto.org/sites/default/files/2020-05/20190614-2019%20Book%20Of%20Abstracts%20Web%20Version%20with%20front%20cover%20-%20edited.pdf">abstract: T3.5-P54</a></p></li>
</ol>
</div>
<div class="section" id="fixedhypocenter">
<h2><a class="reference internal" href="../apps/global_fixedhypocenter.html#global-fixedhypocenter"><span class="std std-ref">FixedHypocenter</span></a><a class="headerlink" href="#fixedhypocenter" title="Permalink to this headline"></a></h2>
<ol class="arabic simple">
<li><p>R. Le Bras, J. Wuster (2002). IDC Processing of Seismic, Hydroacoustic,
and Infrasonic Data [IDC5.2.1Rev1]. Angewandte Wissenschaft, Software und
Technologie GmbH.</p></li>
<li><p>J.F. Evernden (1969). Precision of epicenters obtained by small numbers of
world-wide stations. Bull. Seism. Soc. Am., 59(3), 1365-1398.</p></li>
<li><p>E.A. Flinn (1965). Confidence regions and error determinations for seismic
event location. Rev. Geophys., 3(1), 157-185.</p></li>
</ol>
</div>
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