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	<front>
		<journal-meta>
			<journal-id journal-id-type="publisher-id">INFORMATICA</journal-id>
			<journal-title-group>
				<journal-title>Informatica</journal-title>
			</journal-title-group>
			<issn pub-type="epub">0868-4952</issn>
			<issn pub-type="ppub">0868-4952</issn>
			<publisher>
				<publisher-name>VU</publisher-name>
			</publisher>
		</journal-meta>
		<article-meta>
			<article-id pub-id-type="publisher-id">INFO1107</article-id>
			<article-id pub-id-type="doi">10.15388/Informatica.2016.103</article-id>
			<article-categories>
				<subj-group subj-group-type="heading">
					<subject>Research Article</subject>
				</subj-group>
			</article-categories>
			<title-group>
				<article-title>Robust Optimization for Strategic Energy Planning</article-title>
			</title-group>
			<contrib-group>
				<contrib contrib-type="Author">
					<name>
						<surname>Moret</surname>
						<given-names>Stefano</given-names>
					</name>
					<email xlink:href="mailto:stefano.moret@epfl.ch">stefano.moret@epfl.ch</email>
					<xref ref-type="aff" rid="j_INFORMATICA_aff_000"/>
					<xref ref-type="corresp" rid="cor1">*</xref>
				</contrib>
				<contrib contrib-type="Author">
					<name>
						<surname>Bierlaire</surname>
						<given-names>Michel</given-names>
					</name>
					<xref ref-type="aff" rid="j_INFORMATICA_aff_001"/>
				</contrib>
				<contrib contrib-type="Author">
					<name>
						<surname>Maréchal</surname>
						<given-names>François</given-names>
					</name>
					<xref ref-type="aff" rid="j_INFORMATICA_aff_000"/>
				</contrib>
				<aff id="j_INFORMATICA_aff_000">Industrial Process and Energy Systems Engineering Group (IPESE)</aff>
				<aff id="j_INFORMATICA_aff_001">Transport and Mobility Laboratory, École Polytechnique Fédérale de Lausanne, 1015 Lausanne, Switzerland</aff>
			</contrib-group>
			<author-notes>
				<corresp id="cor1">
					<label>*</label>Corresponding author.</corresp>
			</author-notes>
			<pub-date pub-type="epub">
				<day>01</day>
				<month>01</month>
				<year>2016</year>
			</pub-date>
			<volume>27</volume>
			<issue>3</issue>
			<fpage>625</fpage>
			<lpage>648</lpage>
			<history>
				<date date-type="received">
					<day>01</day>
					<month>11</month>
					<year>2014</year>
				</date>
				<date date-type="accepted">
					<day>01</day>
					<month>11</month>
					<year>2015</year>
				</date>
			</history>
			<permissions>
				<copyright-statement>Vilnius University</copyright-statement>
				<copyright-year>2016</copyright-year>
			</permissions>
			<abstract>
				<p>Long-term planning for energy systems is often based on deterministic economic optimization and forecasts of fuel prices. When fuel price evolution is underestimated, the consequence is a low penetration of renewables and more efficient technologies in favour of fossil alternatives. This work aims at overcoming this issue by assessing the impact of uncertainty on energy planning decisions.</p>
				<p>A characterization of uncertainty in energy systems decision-making is performed. Robust optimization is then applied to a Mixed-Integer Linear Programming problem, representing the typical trade-offs in energy planning. It is shown that in the uncertain domain investing in more efficient and cleaner technologies can be economically optimal.</p>
			</abstract>
			<kwd-group>
				<label>Keywords</label>
				<kwd>energy planning</kwd>
				<kwd>robust optimization</kwd>
				<kwd>uncertainty characterization</kwd>
				<kwd>Mixed-Integer Linear Programming</kwd>
			</kwd-group>
		</article-meta>
	</front>
</article>
