<?xml version="1.0" encoding="UTF-8"?><?xml-stylesheet type="text/xsl" href="static/style.xsl"?><OAI-PMH xmlns="http://www.openarchives.org/OAI/2.0/" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="http://www.openarchives.org/OAI/2.0/ http://www.openarchives.org/OAI/2.0/OAI-PMH.xsd"><responseDate>2026-09-20T19:41:47Z</responseDate><request verb="GetRecord" identifier="oai:dspace.mit.edu:1721.1/68949" metadataPrefix="dim">https://dspace.mit.edu/server/oai/request</request><GetRecord><record><header><identifier>oai:dspace.mit.edu:1721.1/68949</identifier><datestamp>2022-01-13T07:54:36Z</datestamp><setSpec>com_1721.1_7582</setSpec><setSpec>com_1721.1_7581</setSpec><setSpec>col_1721.1_131023</setSpec></header><metadata><dim:dim xmlns:dim="http://www.dspace.org/xmlns/dspace/dim" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns:doc="http://www.lyncode.com/xoai" xsi:schemaLocation="http://www.dspace.org/xmlns/dspace/dim http://www.dspace.org/schema/dim.xsd">
   <dim:field mdschema="dc" element="contributor" qualifier="advisor" lang="en_US">Kent Larson.</dim:field>
   <dim:field mdschema="dc" element="contributor" qualifier="author" lang="en_US">Lonergan, Ronan (Ronan Patrick)</dim:field>
   <dim:field mdschema="dc" element="contributor" qualifier="other" lang="en_US">Massachusetts Institute of Technology. Dept. of Mechanical Engineering.</dim:field>
   <dim:field mdschema="dc" element="contributor" qualifier="department">Massachusetts Institute of Technology. Department of Mechanical Engineering</dim:field>
   <dim:field mdschema="dc" element="date" qualifier="accessioned">2012-01-30T17:05:22Z</dim:field>
   <dim:field mdschema="dc" element="date" qualifier="available">2012-01-30T17:05:22Z</dim:field>
   <dim:field mdschema="dc" element="date" qualifier="copyright" lang="en_US">2011</dim:field>
   <dim:field mdschema="dc" element="date" qualifier="issued" lang="en_US">2011</dim:field>
   <dim:field mdschema="dc" element="identifier" qualifier="uri">http://hdl.handle.net/1721.1/68949</dim:field>
   <dim:field mdschema="dc" element="identifier" qualifier="oclc" lang="en_US">773821146</dim:field>
   <dim:field mdschema="dc" element="description" lang="en_US">Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2011.</dim:field>
   <dim:field mdschema="dc" element="description" lang="en_US">Cataloged from PDF version of thesis.</dim:field>
   <dim:field mdschema="dc" element="description" lang="en_US">Includes bibliographical references (p. 161-162).</dim:field>
   <dim:field mdschema="dc" element="description" qualifier="abstract" lang="en_US">This project outlines a design for a fac̦ade product that can potentially be used to simplify both the construction and operation of an apartment in an urban setting. Additionally, this fagade module has been conceptualized as a way to improve energy performance, making it the energy hub of the home, and housing the majority of the heating, ventilation, and air-conditioning equipment. The design makes use of activity recognition to aid with this energy performance improvement, and adapts the conditions in the living spaces to real-time activities being carried out in the home. Energy analyses, in conjunction with real-life modeling and deployment tests, were used to verify the concept. In addition, a graphical user interface was built, allowing the home occupant to adjust the system settings of the automated energy-management technologies, as well as enabling the system to give feedback to the user on how certain decisions affect the performance of the home.</dim:field>
   <dim:field mdschema="dc" element="description" qualifier="statementofresponsibility" lang="en_US">by Ronan Lonergan.</dim:field>
   <dim:field mdschema="dc" element="description" qualifier="degree" lang="en_US">S.M.</dim:field>
   <dim:field mdschema="dc" element="format" qualifier="extent" lang="en_US">162 p.</dim:field>
   <dim:field mdschema="dc" element="language" qualifier="iso" lang="en_US">eng</dim:field>
   <dim:field mdschema="dc" element="publisher" lang="en_US">Massachusetts Institute of Technology</dim:field>
   <dim:field mdschema="dc" element="rights" lang="en_US">M.I.T. theses are protected by 
copyright. They may be viewed from this source for any purpose, but 
reproduction or distribution in any format is prohibited without written 
permission. See provided URL for inquiries about permission.</dim:field>
   <dim:field mdschema="dc" element="rights" qualifier="uri" lang="en_US">http://dspace.mit.edu/handle/1721.1/7582</dim:field>
   <dim:field mdschema="dc" element="subject" lang="en_US">Mechanical Engineering.</dim:field>
   <dim:field mdschema="dc" element="title" lang="en_US">The robotic fac̦ade : a design solution for energy conservation in the CityHome of the future</dim:field>
   <dim:field mdschema="dc" element="title" qualifier="alternative" lang="en_US">Design solution for energy conservation in the CityHome of the future</dim:field>
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   	&lt;Title>The robotic fac̦ade : a design solution for energy conservation in the CityHome of the future&lt;/Title>
   	&lt;Subtitle>Design solution for energy conservation in the CityHome of the future&lt;/Subtitle>
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   	&lt;PublicationDate>2011&lt;/PublicationDate>
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        	&lt;DisplayName>Lonergan, Ronan (Ronan Patrick)&lt;/DisplayName>
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            &lt;DisplayName>Massachusetts Institute of Technology&lt;/DisplayName>
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    &lt;License>http://dspace.mit.edu/handle/1721.1/7582&lt;/License>
    &lt;Keyword>Mechanical Engineering.&lt;/Keyword>
   	&lt;Abstract>This project outlines a design for a fac̦ade product that can potentially be used to simplify both the construction and operation of an apartment in an urban setting. Additionally, this fagade module has been conceptualized as a way to improve energy performance, making it the energy hub of the home, and housing the majority of the heating, ventilation, and air-conditioning equipment. The design makes use of activity recognition to aid with this energy performance improvement, and adapts the conditions in the living spaces to real-time activities being carried out in the home. Energy analyses, in conjunction with real-life modeling and deployment tests, were used to verify the concept. In addition, a graphical user interface was built, allowing the home occupant to adjust the system settings of the automated energy-management technologies, as well as enabling the system to give feedback to the user on how certain decisions affect the performance of the home.&lt;/Abstract>
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