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Analysis of the products of the Copernicus ground motion service

Abstract

Radar interferometry has progressed very much in the last two decades. It is now a powerful remote sensing techniques to monitor ground motion. The technique has undergone an important development in terms of processing and data analysis algorithms. This has been accompanied by an important increase of the Synthetic Aperture Radar (SAR) data acquisition capability by spaceborne sensors. A step forward was the launch of the Copernicus Sentinel-1 constellation. This has made the development of A-DInSAR (Advanced Differential Interferometric SAR) ground deformation services technically feasible. The paper is focused on the most important ground motion initiative ever conceived: the European Ground Motion Service (EGMS). This service is part of the Copernicus Land Monitoring Service managed by the European Environment Agency. EGMS involves the ground deformation monitoring at European scale. The service will deliver the first product in May 2022. In this paper we describe some preliminary examples of deformation products coming from the EGMS.

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Analysis of the products of the Copernicus ground motion service

Author: Crosetto, Michele,Solari, Lorenzo,Barra, Anna,Monserrat, Oriol,Cuevas-González, Maria,Palamá, Riccardo,Wassie, Yismaw Abera,Shahbazi, Saeedeh,Mirmazloumi, Seyed Mohammad,Crippa, Bruno,Mróz, Marek
Year: 2022
DOI: 10.5194/isprs-archives-XLIII-B3-2022-257-2022
Source: https://upcommons.upc.edu/bitstream/2117/385864/1/isprs-archives-XLIII-B3-2022-257-2022.pdf
ANALYSIS OF THE PRODUCTS OF THE
COPERNICUS GROUND MOTION SERVICE
M. C ose o 1, *, L. Sola i 1, A. Ba a 1, O. Monse a 1, M. Cue as-González, R. Palamà 1,
Y. Wassie 1, S. Shahbazi 1, S.M. Mi mazloumi 1, B. C ippa 2, M. M óz 3
1 Cen e Tecnològic de Telecomunicacions de Ca alunya (CTTC/CERCA), Geoma ics Di ision, A . Gauss, 7,
E-08860 Cas ellde els (Ba celona), Spain, mc ose o@c c.ca , lsola i@c c.ca , aba a@c c.ca , omonse a @c c.ca ,
mcue as@c c.ca , palama@c c.ca , ywassie@c c.ca , sshahbazi@c c.ca , sm.mi mazloumi@c c.ca
2 Dep . o Geophysics, Uni e si y o Milan, Via Cicogna a 7, I-20129 Milan, I aly - b uno.c [email protected]
9 Ins i u e o Geodesy and Ci il Enginee ing, Uni e si y o Wa mia and Mazu y in Olsz yn, 10-719 Olsz yn, Poland -
ma ek.m [email protected]
KEY WORDS: SAR, Pe sis en Sca e e In e e ome y, Cope nicus, Eu opean G ound Mo ion Se ice
ABSTRACT:
Rada in e e ome y has p og essed e y much in he las wo decades. I is now a powe ul emo e sensing echniques o moni o
g ound mo ion. The echnique has unde gone an impo an de elopmen in e ms o p ocessing and da a analysis algo i hms. This
has been accompanied by an impo an inc ease o he Syn he ic Ape u e Rada (SAR) da a acquisi ion capabili y by spacebo ne
senso s. A s ep o wa d was he launch o he Cope nicus Sen inel-1 cons ella ion. This has made he de elopmen o A-DInSAR
(Ad anced Di e en ial In e e ome ic SAR) g ound de o ma ion se ices echnically easible. The pape is ocused on he mos
impo an g ound mo ion ini ia i e e e concei ed: he Eu opean G ound Mo ion Se ice (EGMS). This se ice is pa o he
Cope nicus Land Moni o ing Se ice managed by he Eu opean En i onmen Agency. EGMS in ol es he g ound de o ma ion
moni o ing a Eu opean scale. The se ice will deli e he i s p oduc in May 2022. In his pape we desc ibe some p elimina y
examples o de o ma ion p oduc s coming om he EGMS.
* Co esponding au ho
1. INTRODUCTION
This pape is ocused on ada in e e ome y, a powe ul ac i e
emo e sensing echnique o moni o g ound mo ion. In
pa icula , i conside s Ad anced Di e en ial In e e ome ic
Syn he ic Ape u e Rada (A-DInSAR), which includes a class
o ad anced echniques based on s acks o in e e ome ic SAR
images. A-DInSAR has unde gone an impo an de elopmen in
e ms o p ocessing and da a analysis. This has been
accompanied by an impo an inc ease o he SAR da a
acquisi ion capabili y by spacebo ne senso s. This in pa icula
conce ns he Sen inel-1 cons ella ion. No e ha a he ime o
w i ing his pape , only one Sen inel-1 senso is a ailable: he
o he one is cu en ly ou o se ice. Ano he impo an aspec is
he inc ease in he compu a ional capabili ies, which is key o
pe o m A-DInSAR analyses o e wide a eas. The e o e, he
wide-a ea A-DInSAR de o ma ion moni o ing is echnically
easible. Fo a gene al e iew o A-DInSAR, see C ose o e al.
(2016). A desc ip ion o he i s A-DInSAR echnique is
p o ided in Fe e i e al. (2000; 2001).
In Eu ope, a na ional and egional le el, he wide-a ea A-
DInSAR de o ma ion moni o ing has been al eady
demons a ed in se e al cases. The i s G ound Mo ion Se ice
(GMS) co e ed I aly using da a om he senso s ERS-1/2,
En isa and CosmoSkyMed, see Cos an ini e al. (2017). This
was ollowed by No way in 2018, wi h a GMS based on
Sen inel-1 da a, see NGU (2022).
Ge many launched i s GMS a he end o 2019, see Kalia e al.
(2020). In I aly, h ee egions ha e al eady implemen ed a GMS
ocused on he ea ly de ec ion o ab up mo ion changes, see
Raspini e al. (2018); Sola i e al. (2019); and Del Solda o e al.
(2019). O he I alian egions will ollow soon, see Come ci and
Vi o i (2019). GMSs a e ope a ional in Denma k and The
Ne he lands as well. O he coun ies a e discussing he need o
such se ices.
This pape is ocused on de o ma ion moni o ing a Eu opean
scale, and in pa icula he de elopmen o a new se ice ha is
pa o he Cope nicus Land Moni o ing Se ice: he Eu opean
G ound Mo ion Se ice (EGMS). In o ma ion on he EGMS
can be ound in C ose o e al. (2020) and EGMS (2022).
The EGMS is pa o Cope nicus, he Eu opean Union's Ea h
obse a ion p og amme (h ps://www.cope nicus.eu/en), and is
implemen ed by he Eu opean En i onmen Agency (EEA). The
key cha ac e is ics o he se ice we e de ined by he EGMS
Task Fo ce and a e desc ibed in he EGMS Whi e Pape (EGMS
Task Fo ce, 2017). In 2019, a speci ic wo king g oup was
commissioned by EEA o de ail he EGMS echnical
speci ica ions (La sen e al., 2020). The EGMS p oduc ion is
ongoing, and i is ca ied ou by he conso ium “ORIGINAL -
OpeRa Ional G ound mo ion INsa Alliance” composed o ou
Eu opean companies, e-GEOS, TRE-Al ami a, NORCE, GAF,
and i e subcon ac o s. The p ocessing is spli be ween he
di e en companies ha ope a e hei own p ocessing chains.
The o e laps be ween adjacen scenes will be used o ensu e
seamless ha moniza ion be ween p oduc ion chains.
The EGMS aims o p o ide consis en , upda ed, s anda dized,
ha monized ac oss na ional bo de s and eliable in o ma ion
ega ding g ound mo ion phenomena o na u al and
an h opogenic o igins, o e Eu ope. The g ound mo ion will be
es ima ed using A-DInSAR echniques and ull esolu ion
Sen inel-1 SAR da a. The se ice will use all he a ailable
acquisi ions, om bo h ascending and descending passes.
3
The In e na ional A chi es o he Pho og amme y, Remo e Sensing and Spa ial In o ma ion Sciences, Volume XLIII-B3-2022
XXIV ISPRS Cong ess (2022 edi ion), 6–11 June 2022, Nice, F ance
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257
The Se ice will co e he 30 Cope nicus Pa icipa ing S a es,
see Figu e 1. The EGMS p oduc ion will include a baseline
p oduc , which will be based on a chi e da a, co e ing he
pe iod om 2015 up o he end o 2020. This will be ollowed
by upda es, deli e ed e e y 12 mon hs.
The p ocessing will in ol e abou 750 Sen inel-1 SAR scenes.
The baseline p oduc will make use o abou 260 SAR scenes
o each p ocessed s ack. The numbe o SAR scenes will be
educed o he egions sys ema ically a ec ed by seasonal
snow co e . In ac , he p ocessing will be limi ed o he snow-
ee scenes.
The Se ice will include h ee ypes o p oduc s. The ela ion
be ween hese p oduc s is illus a ed in Figu e 1.
The simples p oduc is he so-called Basic P oduc . I is de i ed
by p ocessing independen ly he SAR ames, whe e each ame
has an independen e e ence o he de o ma ion
measu emen s. The e o e, i will be deli e ed by ames o he
o iginal 750 scenes. This p oduc will be gene a ed using he
Sen inel-1 image y p ocessed a ull esolu ion. The Basic
P oduc will include he de o ma ion eloci y and de o ma ion
ime se ies measu ed in he Line-O -Sigh (LOS) di ec ion. This
p oduc is simila o he A-DInSAR p oduc s ha a e usually
gene a ed by he di e en A-DInSAR echniques. I will be
sui able o s udy local de o ma ion phenomena.
The second p oduc is he so-called Calib a ed P oduc . Wi h
espec o he p e ious one, i ep esen s a mo e elabo a ed
p oduc . In ac , in EGMS Calib a ed, he A-DInSAR esul s o
EGMS Basic a e mosaicked and used wi h da a coming om
an ex ensi e ne wo k o global na iga ion sa elli e sys em
(GNSS) s a ions. In his p oduc he de o ma ion measu emen s
will s ill be in he LOS di ec ion. This p oduc is mo e complex
because i elies on wo ypes o in o ma ion: A-DInSAR and
GNSS. In pa icula , he p oduc ion will ha e o manage an
inhomogeneous densi y o a ailable GNSS s a ions o e
Eu ope. A 50-km GNSS eloci y model is used o calib a ion
pu pose.
The hi d p oduc is he so-called O ho P oduc . This p oduc is
u he elabo a ed s a ing om he p e ious Calib a ed P oduc .
In his p oduc he wo LOS (mono-dimensional) de o ma ion
p oduc s coming om ascending and descending passes a e
used o de i e a 2D in o ma ion. This includes he ho izon al
Eas -Wes componen and he Up-Down e ical componen .
The main disad an age o his p oduc is ha he usion o
ascending and descending da a equi es o wo k a a lowe
spa ial esolu ion. Fo his eason, he O ho P oduc will be
gene a ed o e a 100 by 100 m g id.
Pa icula a en ion will be de o ed o quali y con ol. Se e al
in e nal e i ica ion p ocedu es will be implemen ed du ing he
p oduc ion. Mos o hem in ol e au oma ic p ocedu es. An
ex e nal eam, which is independen o he p oduc ion eam, will
pe o m a comp ehensi e alida ion o he Se ice p oduc s.
Conce ning he dissemina ion, ollowing he Cope nicus da a
policy, he EGMS p oduc s will be ee and open. I will be
dissemina ed using a dedica ed webGIS, which will p o ide
isualiza ion ools, and allow an in e ac i e da a explo a ion and
a p elimina y analysis o he p oduc s o be pe o med. A
download will allow use s o access he de o ma ion maps in
CSV o ma .
The use up ake will be based on he publica ion o guidelines,
and he o ganiza ion o wo kshops and aining sessions. The
Se ice will p esumably ha e a wide ange o use s, including
esea ch cen es and uni e si ies; geological, geophysical,
geode ic and opog aphic su eys; ci il p o ec ion au ho i ies;
public au ho i ies; oad and ailway adminis a ions; wa e
managemen au ho i ies; cul u al he i age ins i u ions; mining
indus y; oil and gas indus y; enginee ing companies; insu ance
indus y; and he ci izens.
Figu e 1: Le – EGMS co e age; he Azo es and Madei a a chipelagos, he Cana y and Balea es islands, he F ench O e seas
Depa men s and Regions a e included. Righ – Simpli ied lowcha o he EGMS p oduc ion.
The In e na ional A chi es o he Pho og amme y, Remo e Sensing and Spa ial In o ma ion Sciences, Volume XLIII-B3-2022
XXIV ISPRS Cong ess (2022 edi ion), 6–11 June 2022, Nice, F ance
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258
2. EGMS RESULTS: LANDSLIDES
This sec ion desc ibes some p elimina y esul s o he EGMS.
The i s one conce n landslides, which a e, oge he wi h
subsidence, a common a ge o EGMS.
The i s esul conce n a landslide in No way. Figu e 2 shows
an example o slope de o ma ion om he Hye jo den in he
Ves land Coun y in No way. This jo d is loca ed app oxima ely
230 km no h o Be gen, he second main ci y o No way. The
jo d is cha ac e ised by s eep slopes, which a e commonly
a ec ed by landslides o a ious ypes and by snow a alanches
(He manns e al., 2021).
The EGMS Basic P oduc , which was de i ed using he
descending SAR passes, cap u es well he de o ma ion
occu ing in he eas e n lank o he jo d. The same canno be
said o he opposi e lank, whe e o esho ening and layo e
occu (Hanssen, 2001). The de o ma ion map was de i ed using
178 Sen inel-1. I is wo h obse ing ha he a ailable da a
s ack includes much mo e images: he images acqui ed du ing
he win e pe iod (app oxima ely om end o Oc obe o ea ly
Ma ch) we e disca ded because he snow co e impedes o
de i e use ul de o ma ion measu emen s.
In Figu e 2, he EGMS da a iden i y he uppe po ion o a la ge
slope de o ma ion on he eas e n lank o he jo d, a an
ele a ion be ween 800-1000 m abo e sea le el. The po en ial
c own a ea o he landslide has an ex ension o abou 2.5 km.
The LOS eloci ies each -30 mm/y in he sou he n po ion o
he mo ing a ea; he a e age eloci y alue is -9 mm/y . LOS
eloci ies a e nega i e indica ing mo ion away om he senso
in he downslope di ec ion. Fu he in es iga ions will include
he use o he EGMS O ho p oduc o es ima e he magni ude
o he ho izon al and e ical componen s o mo ion.
3. EGMS RESULTS: SUBSIDENCE
This sec ion conce n examples o subsidence. Figu e 3
illus a es an example o EGMS Basic p oduc , which co e s
he sou he n pa o he G oningen gas ield ( he Ne he lands).
This is he la ges gas ield in Eu ope. Due o i s high
en i onmen al impac , i is expec ed ha he p oduc ion will
comple ely shu down be ween 2025 and 2028. La ge-scale
subsidence due o he compac ion o he ese oi and inc eased
seismici y a e consequences o he gas ex ac ion.
Figu e 2 – G ound mo ion along he eas e n lank o he
Hye jo den (No way). EGMS Basic P oduc .
Figu e 3 – G ound mo ion ela ed o gas ex ac ion in he
G oningen gas ield ( he Ne he lands). EGMS Basic P oduc .
The a ea was p e iously s udied using A-DInSAR. F om hese
s udies, a e age subsidence a es we e es ima ed o be
app oxima ely be ween -7 and -4 mm/y in he pe iod 1992-
2007 (co e ed by SAR da a om he ERS and En isa senso s),
and -5 mm/y o he pe iod 2015-2017 (using Sen inel-1 da a)
(Gee e al., 2019).
The de o ma ion map p esen ed in Figu e 3 esul s om he
analysis o 295 Sen inel-1 images ha span he pe iod om
Feb ua y 2015 o Decembe 2020. The images we e acqui ed in
descending geome y. The subsidence a es each a maximum
o 25 mm/y in he cen e o he subsidence bowl loca ed in he
sou hwes e n co ne o Figu e 3. Howe e , excluding high local
de o ma ion a es, subsidence is es ima ed a an a e age alue
o 4 mm/y . This is in line wi h he es ima ions published by
Gee e al. (2019).
We desc ibe a second impo an example o subsidence, which
is ela ed o he exploi a ion o geo he mal ese oi s. The
explo a ion and exploi a ion o geo he mal ese oi s o powe
p oduc ion ha e an impo an en i onmen al impac , which
includes ai and wa e pollu ion, induced seismici y, and g ound
subsidence. The la e can be o en de ec ed by using A-
DInSAR.
Figu e 4 shows he EGMS Basic P oduc o e he La de ello
geo he mal ield (Tuscany, I aly). La de ello is he oldes
geo he mal powe plan in he wo ld; he ac i i y s a ed in ea ly
1900s. Nowadays, 34 powe p oduc ion plan s p oduce
app oxima ely 30% o he elec ici y demand o he Tuscany
egion. The geo he mal ese oi eaches empe a u es be ween
200ºC and 350ºC a a dep h be ween 400 and 3500 m and i is
hos ed by ca bona e and me amo phic o ma ions (Be ini e al.,
2005).
The e a e p e ious in es iga ions, which we e based on ERS 1/2
and En isa da a, ha e ealed he p esence o a la ge
subsidence bowl wi h maximum subsidence a es o ~-30
mm/y (Sola i e al., 2018). This is con i med by he EGMS
da a in Figu e 4. The esul s we e de i ed using 295 images
acqui ed in ascending geome y. The esul s allow us o d aw
he con ou o a subsidence a ea, which ex ends o oughly 12
km in he NE-SW di ec ion (La de ello-Lagoni Rossi axis) and
o 10 km in he SE-NW di ec ion (Sasso Pisano-Se azzano
axis). Subsidence a es a e on a e age equal o 8 mm/y wi h a
maximum o 25 mm/y in he cen e o he alley.
The In e na ional A chi es o he Pho og amme y, Remo e Sensing and Spa ial In o ma ion Sciences, Volume XLIII-B3-2022
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259
Figu e 4. G ound mo ion in he La de ello geo he mal ield
(Tuscany, I aly). EGMS Basic P oduc .
We discuss below a hi d example o subsidence. I belongs o
an impo an class o de o ma ion phenomena, whe e he
g ound mo ion is induced by unde g ound o su ace mining.
This is a ype o applica ion whe e he mul i- empo al sa elli e
in e e ome y o A-DInSAR o e s a use ul de o ma ion
measu emen and moni o ing ool.
Figu e 5 p esen s he EMGS Basic P oduc in he su oundings
o he Hambach open pi mine (No h Rhine-Wes phalia,
Ge many). In his si e, he ligni e ex ac ion begun in 1978 and
c ea ed a dep ession o abou 50 km2, and almos 500-m deep.
The mine has an impo an en i onmen al impac , which is
especially ela ed o de o es a ion and des uc ion o
biodi e si y. In addi ion, he mine al e ed he g oundwa e
ci cula ion. In ac , he wa e le el mus be main ained low
enough o gua an ee he exca a ion and ex ac ion ope a ions.
Due o changes in he g oundwa e , subsidence is igge ed in
he su oundings o he mine.
The EGMS esul s shown in Figu e 5 allow us delimi a ing he
ex ension o he subsidence a ea, which has a su ace o
app oxima ely 600 km2. This is clea ly a e y impo an su ace,
which includes u ban and pe i-u ban a eas, and impo an
in as uc u es. Two ci ies, Dü en and Ke pen, ew kilome es
sou h o he mine, a e loca ed in he mo ing a ea. The
de o ma ion map was de i ed using a s ack o 286 Sen inel-1
images co e ing he pe iod 2015-2020. The esul s shown in
Figu e 5 we e de i ed using he descending geome y.
The subsidence a es each 60 o 70 mm/y in he p oximi y o
he mine. The i s 10 km a ound he mine eco d an a e age
subsidence a e o app oxima ely 20 mm/y . Time se ies o he
a ea show a linea de o ma ion wi hou big seasonal a ia ions.
Such impo an de o ma ion a es a e o en associa ed wi h
ho izon al displacemen s. This aspec can be s udied using he
O ho P oduc .
Looking a he Figu e 5, one may no ice ha he measu emen
poin densi y in he mining a ea is s ongly educed. This can be
due o deco ela ion due o he equen su ace changes induced
by he exca a ion o new coal le els. In addi ion, his can be
due o a loss o measu emen poin s due o as and non-linea
de o ma ion. Fo his aspec , e e o C ose o e al. (2020).
Figu e 5. Subsidence in he su oundings o he Hambach mine
(No h Rhine-Wes phalia, Ge many). EGMS Basic P oduc .
4. EGMS RESULTS: INFRASTRUCTURES
The de o ma ion moni o ing o in as uc u es ep esen s an
impo an componen o he EGMS. This Se ice will allow
use s o moni o c i ical in as uc u es like ailways, highways,
e c.
The Figu e 5 p esen s he EGMS Basic P oduc along a po ion
o a majo highway loca ed in sou he n Spain. The A-48
highway (Au o ía de la Cos a de la Luz) connec s Cadiz o
Algeci as in he Andalucía Region. The ocus o Figu e 6 is a
po ion o A-48, which links he own o Chiclana de la F on e a
o he eas wi h San Fe nando o he wes . This a ea is pa o
he Bahía de Cádiz Na u al Pa k, no a om he mou h o he
Guadale e i e . This is a ma sh en i onmen cha ac e ised by
shallow channels and ag icul u al pa cels.
The highway ack is cha ac e ised by high subsidence a es up
o 20 mm/y ; on a e age, he highway ack egis e subsidence
a es in he o de o 12 mm/y . The geological cha ac e is ics o
he a ea play a c i ical ole in con olling he g ound mo ion; in
ac , high LOS eloci ies a e eco ded in he ma sh a ea,
whe eas he ci y o Chiclana de la F on e a, loca ed on sandy
soils, is s able (see he eas e n pa o Figu e 6).
Figu e 6. G ound mo ion along he A-48 highway (Spain).
EGMS Basic P oduc .
The In e na ional A chi es o he Pho og amme y, Remo e Sensing and Spa ial In o ma ion Sciences, Volume XLIII-B3-2022
XXIV ISPRS Cong ess (2022 edi ion), 6–11 June 2022, Nice, F ance
This con ibu ion has been pee - e iewed.
h ps://doi.o g/10.5194/isp s-a chi es-XLIII-B3-2022-257-2022 | © Au ho (s) 2022. CC BY 4.0 License.
260
Figu e 7. De o ma ion eloci y map ha conce ns he g ound mo ion along o e he ai po and po o Ba celona (Spain).
EGMS Basic P oduc .
The las example conce ns wo impo an ypes o
in as uc u es: he ai po and po o Ba celona (Spain). The
de o ma ion o bo h in as uc u es is well sampled. O e he
ai po he e a e a lo o measu emen poin s bo h in he
unways and he e minals. The ai po includes se e al
de o ma ion a eas. Some o hem a e caused by wa e pumping,
while o he s a e due o cons uc ion wo ks.
The po a ea includes he mos impo an de o ma ions. They
conce n eclaimed land and key in as uc u es like he dikes
ha p o ec he po . In he dykes de o ma ion well below -20
mm/y occu .
These esul s a e simila o hose published in p e ious wo ks,
e.g. se De an hé y e al. (2014)
ACKNOWLEDGEMENTS
This wo k is pa o he Spanish G an SARAI, PID2020-
116540RB-C21, which has been unded by he MCIN/AEI/
10.13039/501100011033. The A-DInSAR esul s shown in his
pape belong o he EGMS.
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