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Extreme production conditions of photovoltaic power plant operated in distribution grid

Abstract

Photovoltaic power plants are sources of electrical energy that are very dependent on weather conditions. This paper interests in description of stochastic production of power in photovoltaic power plants and subsequently its impact on the distribution power grid. Stochastic production of power from these sources is considerable and hardly predictable. The aim of this survey is to assess the influence of photovoltaic power plants operation on the daily load diagram with regard to output change difference of active power at the relevant substation. Evaluation is based on real-time synchronous data measuring both on-site photovoltaic power plant operation and on-site electric power line output from the substation. This measurement is used for suggestion of a general calculation methodology for the assessment of the difference of active power at a particular node of the grid under various power changes from the photovoltaic power plant. Statistical methods have been employed to process a methodology in order establish extreme conditions of production power for photovoltaic power plant.

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Extreme production conditions of photovoltaic power plant operated in distribution grid

Author: Smoček, Martin
Publisher: Vysoká škola báňská - Technická univerzita Ostrava
Year: 2014
Source: https://dspace.vsb.cz/bitstreams/5212db99-bd31-4b2d-a156-834ebc8f8638/download
POWER ENGINEERING AND ELECTRICAL ENGINEERING VOLUME: 12 |NUMBER: 3 |2014 |SEPTEMBER
Ex eme P oduc ion Condi ions o Pho o ol aic
Powe Plan Ope a ed in Dis ibu ion G id
Ma in SMOCEK, Zdenek HRADILEK
Depa men o Elec ical Powe Enginee ing, Facul y o Elec ical Enginee ing and Compu e Science,
VSB-Technical Uni e si y o Os a a, 17.lis opadu 15/2172, 708 33 Os a a-Po uba, Czech Republic
ma in.smo[email p o ec ed], [email p o ec ed]
Abs ac . Pho o ol aic powe plan s a e sou ces o
elec ical ene gy ha a e e y dependen on wea he
condi ions. This pape in e es s in desc ip ion o
s ochas ic p oduc ion o powe in pho o ol aic powe
plan s and subsequen ly i s impac on he dis ibu ion
powe g id. S ochas ic p oduc ion o powe om hese
sou ces is conside able and ha dly p edic able. The aim
o his su ey is o assess he in luence o pho o ol aic
powe plan s ope a ion on he daily load diag am wi h
ega d o ou pu change di e ence o ac i e powe a
he ele an subs a ion. E alua ion is based on eal-
ime synch onous da a measu ing bo h on-si e pho o-
ol aic powe plan ope a ion and on-si e elec ic powe
line ou pu om he subs a ion. This measu emen is
used o sugges ion o a gene al calcula ion me hodol-
ogy o he assessmen o he di e ence o ac i e powe
a a pa icula node o he g id unde a ious powe
changes om he pho o ol aic powe plan . S a is i-
cal me hods ha e been employed o p ocess a me hodol-
ogy in o de es ablish ex eme condi ions o p oduc ion
powe o pho o ol aic powe plan .
Keywo ds
Calcula ion me hodology, pho o ol aic powe
plan , eal measu emen , s a is ical me hods,
s ochas ic e ec .
1. In oduc ion
Dependence ope a ion o bo h pho o ol aic powe and
wind powe plan is conside able on me eo ological con-
di ions [3], [4]. This pape con ains a desc ip ion o he
assessmen ocused on he issues o calcula ion me hod-
ology. Mos s udies deal wi h he p edic ion o powe
as [6], bu he pu pose o his me hodology is o de-
e mine di e ences in ac i e powe induced by ope a-
ion o pho o ol aic powe plan s (PVP). The su ey
is based on ac ual long- e m moni o ing o a speci ic
powe plan . The da a a ailable has been ob ained by
measu emen a he PVP ope a ion si e as well as he
poin o elec ic powe ou pu om subs a ion plan ,
whe e he PVP is connec ed. Bo h measu emen s we e
conduc ed on synch onised basis.
The e alua ion o PVP p oduc ion is conduc ed by
means o se e al indi idual asks ha can be spli in o
wo s ages. The i s s age de e mines me hodology
o se -up o ex eme h esholds o p oduc ion gene -
a ed by he PVP and he second s age conce ns ana-
lysis o he impac o hese ex eme h eshold alues
on he magni ude o ac i e powe lows a he place
o measu emen wi hin subs a ion plan . The eached
esul s om he analysis o PVP a e use o es ablish
a me hodical calcula ion model o conside he impac
o s ochas ic p oduc ion o ac i e powe in he PVP
on he dis ibu ion g id a a ious nominal alues o
peak powe wi hin a ious ime in e als h oughou
he yea .
The ope a o s o such g ids conside he s ochas ic
na u e o he powe supplied undesi able. Such con-
di ions esul in highe demand o ese e capaci y in
e ms o Ancilla y Se ices o ensu e he equi ed bal-
ance be ween immedia e p oduc ion and consump ion
o elec ic powe . Po en ial changes o powe low ep-
esen jus ano he nega i e consequence. Tha a ec s
he p ope unc ioning o means o g id p o ec ion.
The e a e also p oblems wi h keeping he equi ed s a-
ble ope a ing g id pa ame e s. This calcula ion model
is es ablished wi h espec o he po en ial impac on
p ese ing he magni ude o capaci y Ancilla y Se -
ices [5].
2. A ea o a Measu ed G id
The da a was ob ained by measu emen bo h a PVP
ope a ion and on he ele an powe line ou pu o he
subs a ion plan , whe e his PVP is connec ed [1].
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2.1. Da abase o Measu ed Da a
1) Pho o ol aic Powe Plan
The peak ou pu o his PVP is 1.1 MWp. The mea-
su emen was conduc ed on he low ol age side on
a con inuous basis o one yea . Accu a ely ha was
om 30.6.2010 ill 29.6.2011. The da a was eco ded
wi h ime s ep se a one-minu e inc emen s.
2) Ou pu Subs a ion Plan
The measu emen a he powe line ou pu was con-
duc ed on he high ol age end and an wi hin a ious
ime pe iods om 26.7.2010 ill 23.6.2011. Same as o
PVP, he measu emen was pe o med a one-minu e
inc emen s. The measu emen p ocess p oduced many
ope a ing alues and pa ame e s. This su ey deals
wi h he analysis o he ac i e powe Po e ime pa h
. Pe cen age e alua ion and mu ual compa ison o
da a measu ed on PVP and a he subs a ion poin
ha e been illus a ed in Fig. 1. Columns in cha s ep-
esen indi idual mon hs. The las column shows an
a e age o all mon hs moni o ed. In o al, he e a e
98 % o he da a om PVE and 64 % o he da a om
he subs a ion, whe e:
•p - pe cen a ailabilily,
•x-axis - indi idual mon hs,
•su - a e age sum o indi idual mon hs.
Fig. 1: Pe cen age compa ison o da a measu ed [1].
2.2. Ne wo k Topology
The ne wo k opology has a loop sys em, ye i is ope-
a ed in he adial sys em. When his measu emen
was conduc ed, he PVP was he only elec ic powe
sou ce wi h signi ican ou pu on a gi en powe line,
whe e:
•PVP - pho o ol aic powe plan ,
•SS - sec ion swi ch (disconnec ed),
•110/22 kV - subs a ion plan 110/22 kV.
Fig. 2: Measu e g id opology [1].
The i s measu emen was pe o med a he ou going
eede om he subs a ion 110/22 kV using he side o
lowe ol age le el o 22 kV. The second measu emen
was done a he connec ion poin o he pho o ol aic
plan o he g id a he ol age le el o 0.4 kV. Bo h
measu emen s we e conduc ed in a synch onous man-
ne . Poin s o measu emen a e lagged ed in Fig. 2.
3. Ancilla y Se ices
The T ansmission G id Code (GC), pa II, as amended
by e ision 14 duly app o ed by he Ene gy Regula-
o y O ice on 1.1.2014 in Czech Republic, de ines he
ma e s ele an o he u ilisa ion o GC wi h espec
o Ancilla y Se ices. The documen con ains me ho-
dology o de e mina ion o summa y con ol backups
o SS o he powe g id in Czech Republic. One o
he p e equisi es o de e mina ion o summa y con-
ol backups o SS is he so-called de ia ion ODOZE( ).
This is a pa ame e o es ablish he inc emen o bal-
ancing de ia ion caused by p oduc ion om newly in-
s alled enewable esou ces o elec ic powe . As s a ed
he e (1), his inc emen is de ined by he sum o he
inc ease gene a ed by ope a ion o wind ODV E( )and
pho o ol aic ODF V E( )powe plan s. The de ia ion
ODOZE( )is hen used o de e mine olumes o SS e-
qui ed o he subsequen pe iod, based on exis ing in-
o ma ion om p epa a ions o he ope a ion, e.g.:
ODOZE( )=ODV E( )+ODF V E( ).(1)
This s a emen , desc ibed equa ion (1), implies ha
he e ec o ins alled capaci y o pho o ol aic powe
plan s has a ce ain impac on he calcula ion o SS.
Aim o his su ey is o assess i and how much he PVP
p oduc ion has in luence o o al calcula ion o SS wi h
espec o indi idual mon hs. The simila app oach o
e alua ion is also desc ibed in [7].
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4. Ex eme Condi ions
The consis ency and comp ehensibili y o his a icle
a e suppo ed by he esul s om own su ey o de-
ine a me hodology o de e mina ion o ex eme p o-
duc ion condi ions o pho o ol aic powe plan . These
ma e s we e p esen ed in de ail a he con e ence [2].
Essen ial esul s will be desc ibed.
4.1. Pho o ol aic Powe Plan
Figu e 3 shows h ee cu es as a sample o analyzed
da a in his pape . Indi idual cu es co espond as
ollows:
•p oducend powe om PVP (g een),
•powe lowing h ough he subs a ion (blue),
•loads (black).
Fig. 3: Sample o examined da a.
The powe di e ence o PVP has a nega i e impac on
immedia e powe balance be ween p oduc ion and con-
sump ion wi hin he powe g id. Fo his eason, he
analysis o ex eme h esholds is necessa y. Based on
ac o s desc ibed in [2], one-minu e ou pu se ies was
con e ed in o i e-minu e inc emen s. De o ma ion o
he da a in o ma ion wi h espec o u he p ocess-
ing and e alua ion a ge is negligible. As an example,
u he s eps desc ibed in his a icle analyse da a in
Ap il 2011.
Figu e 4 shows ex eme a eas o PVP p oduc ion
( he g een cu e om Fig. 3. The h esholds o hese
ex eme condi ions a e de ined by wo eg ession poly-
nomial Eq. (2) and Eq. (3), which o m he op and
bo om en elope cu es o s ochas ic changes in he
p oduced powe . The equa ions a e as ollows:
PF V Emax =−5700,51 + 63525,7·T ime
−246642 ·T ime2+ 400745 ·T ime3(2)
−279206 ·T ime4+ 66861,7·T ime5,
PF V Emin = 4554,05 −68932,4·T ime
+414328 ·T ime2−1,25591 ·106·T ime3(3)
+2,0145 ·106·T ime4−1,62904 ·106·T ime5
+523013 ·T ime6.
De e mina ion o hese ex eme condi ions was con-
duc ed based on s a is ical me hods ha u ilize he el-
e an equency ca ego ies using he so-called S u ges
ule. This is a ule o op imal de e mina ion o e-
quency ca ego ies. Nex s ep is o e alua e daily load
Fig. 4: Ex eme condi ions o PVP.
diag am. Co ela ion ields o daily load diag am ( he
black cu e om Fig. 3) can be subjec o eg ession
analysis applied o enable de e mina ion o di e en ial
powe h esholds o loads. I is desc ibed in Fig. 5. Ex-
eme h eshold condi ions, Eq. (4) and Eq. (5), ha e
been de e mined using 95 % p edic ion le els. Fo mo e
in o ma ion on his issue e e o [2]. The equa ions a e
as ollows:
Fig. 5: Ex eme condi ions o daily diag am.
P e ious analyses ha e p oduced he ex eme di e -
ence o ou pu gene a ed by PVP and de e mina ion o
h esholds o daily load diag am. Ex eme condi ions
ha migh occu a he subs a ion plan ou le co e-
spond wi h he sum o ex eme condi ions bo h PVP
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POBDmax(M W ) = 2,13445 + 0,000174187 ·T ime −4,6908 ·10−8·T ime2+ 4,32657 ·10−12 ·T ime3
−1,78877 ·10−16 ·T ime4+ 3,85326 ·10−21 ·T ime5−4,49778 ·10−26 ·T ime6(4)
+2,69318 ·10−31 ·T ime7−6,46948 ·10−37 ·T ime8,
POBDmin(M W )=1,45615 + 0.000176551 ·T ime −4,72509 ·10−8·T ime2+ 4,35116 ·10−12 ·T ime3
−1,79852 ·10−16 ·T ime4+ 3,87564 ·10−21 ·T ime5−4,52732 ·10−26 ·T ime6(5)
+2,71398 ·10−31 ·T ime7−6,52996 ·10−37 ·T ime8.
and he daily load diag am. They ha e been de ined
as ollows:
1) Maximum Ex eme Condi ions:
ma ching he maximum ex eme condi ion ha may
occu . I is equal o he di e ence be ween he max-
imum ex eme o DLD (uppe p edic ion le el 95 %)
and he minimum ex eme o PVP:
PROZ(max)=POBD(max)−PF V E(min)(MW ).(6)
2) Minimum Ex eme Condi ions:
ma ching he minimum ex eme condi ions ha may
occu . I is equal o he di e ence be ween he min-
imum ex eme o DLD (lowe p edic ion le el 95 %)
and he maximum ex eme o PVP:
PROZ(min)=POBD(min)−PF V E(max)(MW ).(7)
These cu es Eq. (6) and Eq. (7) a e po ayed in
Fig. 6. They demons a e he maximum ex eme con-
di ions ha may occu o a ele an ou le o he g id
a he ou going eede om he subs a ion. In o de o
Fig. 6: Subs a ion ou le ex eme condi ions.
con ol o de eloped me hodology, he measu ed da a
o lowing powe a he poin o he subs a ion ( he blue
cu e om Fig. 3) a e plo ed in calcula ed compe en
h esholds o cu es desc ibing he minimum and max-
imum ex eme powe (desc ibed in Fig. 5) which could
occu a he ou le om he subs a ion plan . This
si ua ion shows Fig. 7. All he da a and e alua ion
me hodology we e conside ed wi h he eliabili y le el
o 95 %. This pa icula case conce ns 95.54 % o alues
si ua ed wi hin he de ined ou pu ex eme condi ions.
This ac jus i ies he co ec ness o he p ocess.
Fig. 7: Con ol o adjus men o powe ou pu di e ence esh-
olds.
5. Sugges ed Me hodical
Models
5.1. Assessmen Me hodology
The p ocess o assessmen me hodology is desc ibed by
he block diag am in Fig. 8. The diag am is di ided
in o h ee e ical and h ee ho izon al sec ions. Ve -
ical columns a e sepa a ed by a dashed ec o , and
ho izon al lines a e highligh ed by blue backg ound.
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1) Ve ical Sec ions
The i s column ep esen s measu ed da a undamen-
al o he es ablishmen o his me hodology.
The second column p o ides a desc ip ion o sug-
ges ed calcula ion me hodology. The i s s ep equi ed
p ocessing o da a, o he so-called Pos -P ocessing
(block P.-P ocess.). The nex s ep was o enume a e
ex eme condi ions o powe ou pu o pho o ol aic
powe plan s (block Ex . PVP), ex eme condi ions
o he daily load diag am (Ex . DLD) and ex eme
condi ions a he ou going eede om he subs a ion
(Ex . SUB). De e mina ion o Ex . SUB i s ly e-
qui ed ob aining he da a wi hou impac o p oduc-
ion om he PVP. This da a ep esen s so-called he
ow da a (only loads) o daily load diag am (block
DLD). The ow da a was de e mined by sub ac ion o
he immedia e ou pu da a du ing ope a ion o PVP
om he immedia e ou pu da a measu ed a he sub-
s a ion. This sub ac ion is subjec o accu a e syn-
ch onising (block Synch.) o bo h se s o da a mea-
su ed. Subsequen ly, ex eme condi ions o DLD we e
e alua ed. Sui able sum o Ex . DLD and Ex . PVP
can help wi h assessmen o ex eme condi ions occu -
ing a he subs a ion (block SUM Ex .).
The las column con ains di e ences o ac i e powe
o he PVP (block P di . P P) and he da a measu ed
a ou going eede om he subs a ion (block P di .
SUB and P di . DLD).
2) Ho izon al Sec ions
As p e iously men ioned, he diag am is also di ided
in o h ee ho izon al lines.
The i s line comp ises blocks linked by means o
ed a ows. These desc ibe he s eps o assessmen o
powe di e ences on he PVP i sel only. This indica-
o does no include he impac o daily load diag am.
This assessmen is hen used o de e mine he model
si ua ions o indi idual mon hs wi h u he po en ial
o lexible al e a ions acco ding o he panel ype al-
eady known and i s nominal peak powe . This s ep is
he mos impo an and di icul o all e alua ion.
The las ho izon al line con ains blocks linked wi h
g een a ows. The da a measu ed a subs a ion in-
cludes he impac o PVP ope a ion oo. De e mina-
ion o he di e ence o ac i e powe in his manne
is co ec , al hough dedica ed only. I canno be ap-
plied o ano he model si ua ion in a b oade sense,
being limi ed o hese speci ic da a measu ed a his
pa icula subs a ion and he ele an PVP.
These issues do no also deal wi h a case, when he
di e ence o ac i e powe would change wi h he con-
s uc ion o a new PVP wi hin he pa icula loca ion.
The second line p o es i sel as an op imal solu ion,
and i is linked o blocks using blue a ows. We need
o ealize ha ex eme condi ions o powe a he sub-
s a ion occu due o ex eme condi ions on bo h he
PVP as well as a daily load diag am. As men ioned
p e iously, he da a measu ed a ou going eede om
he subs a ion mus be educed by sub ac ing he da a
pe aining o powe p oduced by he PVP. This s age
al eady enables o de e mine he ex eme condi ions
o daily load diag am as well as PVP o any ypes o
panels wi h a ying peak powe igu es.
Model si ua ions o ex eme condi ions o PVP may
also be use ul o a ious model o simula ion p ocesses,
whe e he change o load diag am is al eady an ici-
pa ed.
5.2. Calcula ion Model
The sugges ed assessmen me hodology can be used
o se up a calcula ion model. The calcula ion model
con ains blocks linked wi h ed a ows.
The main ad an age o he e y assessmen o ex-
eme s a es o PVP and DLD has been desc ibed
abo e. This idea has been also ans e ed in o he cal-
cula ion model. Ano he i e u able ad an age b ough
by analysis o such sepa a ed da a is a mo e accu a e
ma hema ical desc ip ion. I has o be ealized ha
he DLD and PVP p oduc ion cu es di e g ea ly in
na u e ha is also one o he easons, why examin-
ing ei he ex eme sepa a ely is mo e con enien be-
o e calcula ion o model si ua ion o ex eme condi-
ions o PVP (block PVP) equi es knowledge o he
panel ype and hei nominal peak powe igu es. Fu -
he equi emen s o be me include he p econdi ion
assuming s a ic posi ion o he panel in o de o maxi-
mize p o i (inclina ion a app ox. 38◦wi h espec o
he ho izon al plane and sou hwa ds o ien a ion). The
ed a ow in Fig. 8 ep esen s he in eg a ion o model
ex eme condi ions o PVP in o he calcula ion p ocess
and he poin o assessmen . The poin o assessmen
(block 110/22), which is o be used o assessmen o
he powe di e ence, mus be iden i ied wi h he na-
u e o powe load - he daily load diag am. These load
cu es a e usually moni o ed by dis ibu o s a ce ain
i al poin s. Da a o igina ing om a ious model o
simula ion p ocesses can be also used.
5.3. Annual Ex eme Condi ions o
PVP
Maximum ex eme condi ions o p oduc ion a e de-
sc ibed in Fig. 9 and Fig. 10. Figu e 9 co e s mon hs
wi hin he pe iod om Decembe ill June, i.e. he
pe iods o win e and summe sols ice. One can no-
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Fig. 8: Block diag am o assessmen me hodology.
ice ha he dispe sion o p oduc ion ime is ex ended
p opo ionally o he inc easing du a ion o sunshine
wi hin pa icula mon hs, and he ampli ude is ising
wi h inc easing in ensi y o sola adia ion. The maxi-
mum occu s in May a he ha du ing he summe sol-
s ice, as migh be expec ed. This case he e o e leads
o he es ablishmen o an op imal a io be ween he
in ensi y o sola adia ion and a e age empe a u e
du ing he pa icula mon h (p e ious mon hs indica e
lack o sola adia ion and he subsequen mon hs b ing
highe ambien empe a u e wi h a nega i e impac on
panel e iciency). Figu e 10 shows maximum cu es
Fig. 9: Ex eme condi ions o PVP, Decembe o June.
om July ill Decembe , i.e. be ween he summe and
win e sols ice.
Fig. 10: Ex eme condi ions o PVP, July o Decembe .
6. Conclusion
B ie ly speaking, his measu emen is used o sugges-
ion o a gene al calcula ion me hodology o assess-
men o di e ence o ac i e powe a a pa icula node
o he g id unde a ious ic ional changes o powe
om he pho o ol aic powe plan o he whole sola
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a m, o e en in case o expec ed changes o p edic ions
in he daily load diag am. Compa ing maximum ex-
emes o each mon h indica es signi ican di e ences.
I is clea ha di e en pe iods du ing he yea ha e
in luence o he assessmen o Ancilla y Se ices. Nex
S eps o his s udy will ocus on he applica ion o his
me hodology on a ull da abase and e alua ion he e-
la ionship o each mon h o Ancilla y Se ices.
Acknowledgmen
This wo k was suppo ed by he Minis y o Educa-
ion, You h and Spo s o he Czech Republic (No.
SP2014/187) and by he p ojec ENET (Resea ch and
De elopmen o Inno a ions Ope a ional P og ammes
No. CZ.1.05/2.1.00/03.0069).
Re e ences
[1] VSB-TU Os a a, Depa men o Elec ical Powe
Enginee ing. "Da a sou ce". VSB-TU Os a a
2013: unpublished.
[2] SMOCEK, M. and Z. HRADILEK. Me hodology
o E alua ion Ex eme Powe Condi ions o Pho-
o ol aic Powe Plan s. In: 14 h In e na ional Sci-
en i ic Con e ence on Elec ic Powe Enginee ing,
EPE 2013. Kou y nad Desnou: VSB-Technical
Uni e si y Os a a, 2013, pp. 20–23. ISBN 978-
80-248-2988-3.
[3] HRADILEK, Z. and T. SUMBERA. Simula o
o Powe Fo ecas ing Gained om Wind Powe
Plan s. P zeglad Elek o echniczny. 2010, ol. 86,
no. 8, pp. 196–199. ISSN 0033-2097.
[4] HRADILEK, Z. and T. SUMBERA. Reliabili y
and P edic ions o Powe Supplied by Wind Powe
Plan s. In: In e na ional Con e ence on Renew-
able Ene gies and Powe Quali y. Las Palmas de
G an Cana ia: Uni e si y o La Co una, 2011,
pp. 254–259. ISBN 978-84-614-7527-8.
[5] PIOTROWSKI, P. Analiza s a ys y-
czna danych do p ognozowania ul a-
k o ko e minowego p odukcji ene gii elek ycznej
w sys emach o owol aicznych. P zeglad Elek-
o echniczny. 2014, ol. 90, no. 4, pp. 1–4. ISSN
0033-2097.
[6] JIE, S., L. WEI-JEN, L. YONGQIAN, Y. YONG-
PING and P. WANG. Fo ecas ing powe ou pu
o pho o ol aic sys em based on wea he classi i-
ca ion and suppo ec o machine. In: Indus y
Applica ions Socie y Annual Mee ing (IAS). O -
lando: IEEE, 2011, pp. 1–6. ISBN 978-1-4244-
9498-9. DOI: 10.1109/IAS.2011.6074294.
[7] YONA, A., T. SENJYU, A. SABER, T. FUN-
ABASHI, H. SEKINE and K. CHUL-HWAN.
Applica ion o neu al ne wo k o 24-hou ahead
gene a ing powe o ecas ing o PV sys em.
In: Powe and Ene gy Socie y Gene al Mee -
ing - Con e sion and Deli e y o Elec i-
cal Ene gy in he 21s Cen u y. Pi sbu gh:
IEEE 2008, pp. 1–6. ISBN 978-1-4244-1905-0.
DOI: 10.1109/PES.2008.4596295.
Abou Au ho s
Ma in SMOCEK was bo n in H anice. In 2011
he g adua ed VSB-Technical Uni e si y o Os a a,
Facul y o Elec ical Enginee ing and Compu e Sci-
ence, elec ical powe enginee ing. Today he is Ph.D.
s uden in he Depa men o Elec ical Powe Engi-
nee ing, VSB-Technical Uni e si y o Os a a and he
applies himsel o he issue o pho o ol aic powe plan .
Zdenek HRADILEK was bo n in B no. A e
g adua ion o college educa ion a Facul y o Elec ical
Enginee ing and Compu e Science B no Uni e si y
o Technology in 1962 he wo ked as a echnician in
company Sou he n Mo a ian powe plan s in B no,
han he wo ked as a majo powe -supply di ec o in
Hea -supply Os a a and om 1966 un il now he is a
he VSB-Technical Uni e si y Os a a. His scien i ic
p epa a ion g adua ed by his candida e disse a ion
de ending a he B no Uni e si y o Technology in
1972. He de ended his doc o al hesis a he Czech
Technical Uni e si y in P ague in 1988 and was
appoin ed as p o esso .
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