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【船舶】海军造船数字化,开创高效开发和生产多样化的新时代

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高层摘要:海军造船数字化,开创高效开发和生产多样化的新时代

世界各国都在寻求价格合理、安全可靠的设计来满足国防需求,对海军舰船的需求也前所未有地高涨。但是,现代化海军舰船的成本和复杂性往往超出大多数国家的国防预算。因此,海军舰船开发商正在积极寻求技术解决方案,以期造船厂能够按时、按预算建造这些关键 资产,并以可接受的总拥有成本 (TOC) 满足操作性能、使用寿命年限和可用性。

集成式产品开发环境 (IPDE) 已成为许多世界一流海军造船厂应对这一艰巨挑战的解决方案。IPDE是一种高度集成和同步的环境,为由众多设计师、工程师以及生产运营部门、采购部门和供应商组成的庞大社区提供了协调一致且高度保真的空间。这种环境让散布各地、 职能各异的多个团队能够放心地同时开展工作,始终确信自己得到的系统和组件要求是正确的,并且处理的是最新的设计和配置更改。另外,生产团队还可以使用每个船舱和系统的三维模型来优化造船厂的原料周转以及装配、系统试运行和海上试航。

海军舰船开发中目前实施的 IPDE 比之前任何环境都更加精密复杂,并且已在最具挑战性的汽车和航空航天环境中得到了验证,使得造船厂在总生产率和海军舰船性能方面取得了前所未有的突破。将来这些优势将会扩展到整个供应链,从而降低这些关键战略资产的总拥有成本。

阅读此摘要,了解海军造船厂是如何将从计算机辅助软件至集成式产品开发环境 (IPDE) 逐步部署至开发和生产中,以应对这一艰巨挑战的解决方案。

Siemens-SW-The-digitalization-of-naval-shipbuilding-EB-56215-C9_zh_CN(HR)-1.jpg

第一代

20 世纪 80 年代:

计算机辅助软件首次亮相

上世纪 80 年代,第一代计算机辅助软件进入了海军舰船开发领域,为设计人员和系统工程师提供海军舰船布置、系统和结构的二维图像。同时,计算机辅助软件工程工具提供了具体的学科工具来自动化重复的分析:流体静力学、流体力学、稳定性、有限元分析等。每个工具集都提高了相应团队的生产力并优化了流程,但是多学科工程和运作协调仍需大量人工采用纸张完成,将设计意图传达给生产团队和供应商的媒介仍是图纸。尽管这提高了设计和工程方面的生产力,但大型、高质量要求的企业仍需通过图纸再三检查生产计划和决策,而在细致入微的整个设计和生产阶段,有太多无法避免的更改需要处理。

另外,有的国家还想打造现代化的海军舰队, 并在本地造船厂进行联合制造,以确保本土公司能够提供完整的生命周期维修和支持,同时使公民有机会为国防做出贡献。这无疑给这种本已苛刻的环境带来了进一步的挑战。


第二代

二十世纪 90 年代:

提供更全面的解决方案

上世纪 90 年代,新一代软件随着更广泛、更全面的解决方案出现在人们面前,首批以商业方式开发的产品开发管理 (PDM) 系统得以实施。首批 PDM系统为更改和配置管理提供了更严谨的自动化解决方案,这正是造船和航空航天业所需要的, 因为新设计的规模和复杂性呈指数级增长,同时设计更改像流水一样无休无止。无需借助软件控制和管理流程即可在大型企业内实现协调和同步的想法已经过时了。

3D 系统逐渐取代了 2D CAD 系统,实现了复杂船舶模型的电子样机 (DMU),以及整个造船厂物料流和装配流程的数字化仿真。现有造船厂工作流和流程的数字仿真对工作效率的提升达到了两位数,对于新建造船厂的提升则更大,因为在造船厂建造之前就可以对流程和工作流进行仿真和优化。

以这一代新软件技术为依托,海军造船项目的成绩有所提高, 但依然存在不足之处, 比如项目落后于计划、预算超支且无法始终满足要求和 / 或性能期望。从其他行业的经验教训中可以明显看出,造船厂要想实现改头换面的转变,下一代造船软件技术将不再只是 一 个信息技术 (IT) 项目,它需要造船厂各领导层的鼎力支持和积极投入。正如一位高管所言, “改变绝非易事, 工程师们最不愿意做的就是为了一些更好的新工具而放弃自己熟悉和喜爱的工具。”

但是为了满足未来的需求和预算, 改变势在必行。令人鼓舞的是,其他行业已通过新一代软件技术、流程改进和团队培训在生产效率方面实现了巨大的突破。

第三代

二十一世纪:另辟蹊径

2001 年,美国国防部启动了有史以来规模最大的计划,为空军、海军和海军陆战队以及全球 30个潜在盟友同时开发下一代先进的超音速多用途飞机,该机型共有三个版本。这项计划由一家国际联盟领导,参与方包含三家主要合作伙伴、众多次要合作伙伴以及由多达 600 家公司组成的全球供应链。在拿到合同之前,领导层认为这项计划需要采用一种完全不同的方法来设计、开发、生产和维持一个最终可能会达到4000 多架飞机的机群。对于此计划而言,安全、高效的全球协同是至高无上的要素。每架飞机编号的自动配置、更改和有效性管理都至关重要。飞机的主要模块将在多个地点组装,而最终的组装和测试将在美国、欧洲和亚洲的场地进行。每架飞机的周期时间将从 15 个月缩短至 5 个月,最终这项计划预计在未来 20 到 30年内每年交付 200 架飞机。最后,该联盟将负责机群的维护,同时遵循基于绩效的严格新物流指标。时至今日,该联盟拥有一套集成式产品开发环境 (IPDE),该环境由位于 9 个国家的 140 个站点组成,共有 30 个项目团队。环境中有 112 个工作流用于管理更改(仅 2009 年就有 24000 个),每周管理和归档 70000 项安全事务,其中记录了全球参与者的所有工作。

这 项 重 大 计 划 的 IPDE 已 成 为 复杂航空航天和造船计划执行国际联合生产时的标准。这项计划的数字化在韩国、欧洲和美国引领了一波数字化造船厂的新浪潮。这些一流的数字化造船厂启用新一代软件技术来提供开放式、可扩展的模块化产品组合,以便快速轻松地改造现有基础设施,提高设计和工程效率。它们还可用于提高原始设备制造商 (OEM) 及其供应链成员的生产、建造和试航效率。新一代软件技术打造出高度集成的企业,这种企业具有更高的协调性和效率,能够制造出更好的海军舰船;例如, 打造在时间、预算和性能方面都恰如所需的舰船,成为海军计划中的神兵利器。

新一代数字化造船厂借助更为多样的劳动力群体显著提升了生产力,各个团队几乎可以同时设计军用和商用舰船,从而提供单 一来源的船级和船体编号知识 / 技术定义。各项流程都进行了数字化仿真,在优化性能的同时消除了代价高昂的错误。 一家造船厂的生产效率提高了 100% 以上。

值得 一 提的是,在 20 世纪,还实施了可提高安全性或服务与支持效率的船队在役配置管理计划。随着船队所有者和运营者寻求降低当前和未来船队的拥有成本,这种趋势的重要性正在加强。

第四代

二十一世纪前十年:PLM 闪亮登场

产品生命周期管理 (PLM) 产品组合专为应对开发先进核动力和常规动力海军舰船的独特挑战而量身定制,它的出现正在改变世界上最先进的造船厂,能够让未来的海军舰队更加经济、可靠。采用这些新产品组合后预计可实现的生产力对于满足当前的预算限制至关重要。此外,每艘新海军舰船的服役都与一艘现役舰船的退役紧密关联,因此不会对舰队的整体备战状况造成不利影响。

只有在这一种情况下,两个项目才会联合开发精度极高、可完全互换的通用导弹发射舱。

最全面的造船 PLM 还具有一系列新的工程软件技术,可以分析和改善海军舰船的声学特征以满足至关重要的隐身要求,同时还要提供复合软件工具来抑制舰船自己生成的机械噪声。

海 军 造 船 IPDE 发 展 的 下 一 步 是将该数字平台扩展到所有合作伙伴、供应链成员和舰队支持团队,以便最大程度提高企业总体生产力并降低总拥有成本。一些领先的造船厂已开始呈现这一发展趋势。

未来

加强企业整合

利用未来的 IPDE 解决方案,造船厂将能更紧密地整合整个企业,并特别关注供应链和使用生命周期管理,二者都是当今的重中之重。战略合作伙伴将通过高度安全的专用网络与国际标准化组织(ISO) 标 准(例 如 JT ™ 数 据 格 式 ) 持续不断地协同并共享数据,以构造出三维多计算机辅助设计 (CAD) 模型。基于云的解决方案将为供应链的其余部分提供从主数据文件访问所需信息和数据的权限,从而成为团队中高效而虚拟的一员。类似地,服务生命周期管理将由主要造船厂或整体服务提供商与供应链成员及舰队支持人员进行协调和管理。此外,还将按类别和船体编号详细记录所有系统和组件的在役生命周期性能(例如平均故障间隔时间、系统可靠性指标和相关数据) ,以便将来的舰队可以从中总结经验,并且无需为将来的海军舰船类别重新设计多个系统。

当今世界上至少有七家主要造船厂进行了重大的数字化转型,在以下每个主要市场中都至少有两家:亚太地区、美洲和欧洲。其中每家造船厂都是特定船舶类别中公认的世界领袖,而且都能制造多种多样的舰船,比如各种商用船舶、军用舰艇以及私人游艇。但是,这些造船厂的领导者意识到,要想保持他们凭借数字化转型获得的领军地位,他们需要持续创新和改进。可以肯定,由于其他造船厂争相效仿七大船厂的举措,在未来十年中实现大规模数字化的船厂数量在全球将增加一倍到两倍。


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可编程数字信号处理器在移动通信中的应用-电子书-391页

可编程数字信号处理器在移动通信中的应用(TheApplicationofProgrammableDSPsinMobileCommunication)摘要:本书聚焦可编程DSP在移动通信中的工程应用,系统阐述2G/3G移动终端与基站的DSP实现方案。全书围绕DSP架构演进、低功耗设计、指令集优化及电源管理展开,详解双模终端架构、软硬件划分、协处理器设计与接触定义。同时覆盖天线阵列处理、MIMO信号提取、软件无线电挑战、多媒体应用、Java虚拟机适配、生物识别与安全机制等关键技术,结合OMAP平台、C55x系列处理器与典型案例,提供从算法、架构到工程实现的完整方法,为移动通信终端的低功耗、高性能DSP开发提供权威参考。TheApplicationofProgrammableDSPsinMobileCommunicationsEditedbyAlanGathererandEdgarAuslanderBothofTexasInstrumentsInc.,USACopyrightq2002byJohnWiley&Sons,LtdBaffinsLane,Chichester,WestSussex,PO191UD,EnglandNational01243779777International(+44)1243779777e-mail(forordersandcustomerserviceenquiries):cs-books@wiley.co.ukVisitourHomePageonhttp://www.wiley.co.ukorhttp://www.wiley.comAllRightsReserved.Nopartofthispublicationmaybereproduced,storedinaretrievalsystem,ortransmitted,inanyformorbyanymeans,electronic,mechanical,photocopying,recording,scanningorotherwise,exceptunderthetermsoftheCopyrightDesignsandPatentsAct1988orunderthetermsofalicenceissuedbytheCopyrightLicensingAgency,90TottenhamCourtRoad,London,W1P9HE,UK,withoutthepermissioninwritingofthePublisher,withtheexceptionofanymaterialsuppliedspeci-ficallyforthepurposeofbeingenteredandexecutedonacomputersystem,forexclusiveusebythepurchaserofthepublication.Neithertheauthor(s)norJohnWiley&SonsLtdacceptanyresponsibilityorliabilityforlossordamageoccasionedtoanypersonorpropertythroughusingthematerial,instructions,methodsorideascontainedherein,oractingorrefrainingfromactingasaresultofsuchuse.Theauthor(s)andPublisherexpresslydisclaimallimpliedwarranties,includingmerchantabilityoffitnessforanyparticularpurpose.Designationsusedbycompaniestodistinguishtheirproductsareoftenclaimedastrademarks.InallinstanceswhereJohnWiley&Sonsisawareofaclaim,theproductnamesappearininitialcapitalorcapitalletters.Readers,however,shouldcontacttheappropriatecompaniesformorecompleteinforma-tionregardingtrademarksandregistration.OtherWileyEditorialOfficesJohnWiley&Sons,Inc.,605ThirdAvenue,NewYork,NY10158-0012,USAWILEY-VCHVerlagGmbHPappelallee3,D-69469Weinheim,GermanyJohnWiley&SonsAustraliaLtd,33ParkRoad,Milton,Queensland4064,AustraliaJohnWiley&Sons(Canada)Ltd,22WorcesterRoadRexdale,Ontario,M9W1L1,CanadaJohnWiley&Sons(Asia)PteLtd,2ClementiLoop#02-01,JinXingDistripark,Singapore129809BritishLibraryCataloguinginPublicationDataAcataloguerecordforthisbookisavailablefromtheBritishLibraryISBN0471486434TypesetinTimesbyDeerparkPublishingServicesLtd,Shannon,Ireland.PrintedandboundinGreatBritainbyT.J.InternationalLtd,Padstow,Cornwall.Thisbookisprintedonacid-freepaperresponsiblymanufacturedfromsustainableforestry,inwhichatleasttwotreesareplantedforeachoneusedforpaperproduction.BiographiesAlanGathererreceivedhisBEngdegreeinElectronicandMicroprocessorEngineeringfromStrathclydeUniversity(Scotland)in1988.HethenmovedtoStanfordUniversityandobtainedMSandPhDdegrees,bothinElectricalEngineeringin1989and1993.HejoinedTexasInstrumentsin1993.Since1993,Dr.Gathererhasworkedondigitalcommunicationsresearchanddevelopmentintheareasofdigitalsubscriberline,cablemodemandwireless.Presentlyheisadistinguishedmemberoftechnicalstaffandmanagerofsystemsdevelop-mentwithinWirelessInfrastructureatTexasInstrumentswhereheleadsateaminvolvedinthedevelopmentoftechnologyforthirdgenerationcellulartelephony.Hepresentlyholds11patentsinthefieldofdigitalcommunications.EdgarAuslanderistheWorldwideStrategicMarketingDirectoratTexasInstrumentsWirelessCommunicationsBusinessUnit,Dallas,Texas,workingforthegeneralmanagerofthebusinessunitandTexasInstruments’seniorvice-president.SomeofthestrategicplanshehaswrittenhaveresultedinTexasInstrumentsacquiringorinvestingincompanies.HefirstworkedatTexasInstrumentsinNice,France,asEuropeanproductmarketingmanagerfortheTMS320digitalsignalprocessorsproductlinein1990.Mr.AuslanderbecameTexasInstruments’WorldwideGSMmarketingmanagerin1993priortohiscurrentposition.HeobtainedhisMEEngandMBAdegreesfromCornellUniversityandColumbiaBusinessSchoolin1988and1990,respectively.WhileatCornell,heheldseveralteachingassistantpositionsinsignalprocessinganddigitalcommunicationscourses.WhileatColumbiaBusi-nessSchool,hewasateachingassistantinstatisticsandworkedattheOfficeofScienceandTechnologyDevelopment,sellingColumbiaTelecommunicationsResearchCenter’spatentsrights.1IntroductionEdgarAuslanderandAlanGathererThisbookisabouttwotechnologiesthathavehad,andwillincreasinglyhave,asignificantimpactonthewaywealllive,learnandplay:personalwirelesscommunicationsandsignalprocessing.Whenitcomestobothmarkets,historyhasshownthatrealityhasoftensurprisedthemostoptimisticforecasters.WedrawontheexperienceofexpertsfromMIT,Berkeley,UCLA,WorcesterPolytechnicInstitute,INRIA,Authentec,Radioscape,GeovectorandTexasInstruments,togiveadescriptionofsomeoftheimportantbuildingblocksandimplementationchoicesthatcombinebothtechnologies,inthepastandinthefuture.Wehighlightdifferentperspectives,especiallyregardingimplementationissues,intheprocessingofspeech,audio,video,futuremultimediaandlocation-basedservicesaswellasmobilecommerceandsecurityaspects.Thebookisroughlydividedintothreesections:†Chaptersdescribingapplicationsandtheirimplementationsonwhatmightbedescribedas‘‘today’s’’technology.Bythis,wemeantheuseofprogrammableDigitalSignalProces-sors(DSPs)andASICsinthemannerinwhichtheyarebeingusedfortoday’sdesigns.Inthesechapters,wehighlighttheapplicationsandtheroleofprogrammableDSPsintheimplementation.†Chaptersthatpresentchallengestothecurrentdesignflow,describingnewwaysofachievingthedesireddegreeofflexibilityinadesignbymeansotherthanprogrammableDSPs.WhetherthesenewapproacheswillunseattheprogrammableDSPfromitsperchremainstobeseen,asthecommercialvalueoftheseapproachesislesscertain.ButtheygiveadetailedoverviewofthedirectionsresearchersaretakingtoleapbeyondtheperformancecurveoftheprogrammableDSPapproach.†Weconcludewithapracticalyetinnovativeapplicationexample,apossibleflavoroftheexcitingnewpersonalcommunicationsservicesenabledbydigitalsignalprocessing.Inthisintroduction,weoverviewtheaspectsofmobilecommunicationsthatmakeitauniquetechnology.Wedescribehowtheapplicationsassociatedwithmobilecommunica-tionshaveevolvedfromthesimplephonecallintoaslewofpersonaltechnologies.Thesetechnologies,andtheirimplementation,aredescribedinmoredetailinthesubsequentchap-ters.1.1It’saPersonalMatterThesocialimpactsandbenefitsofpersonalwirelesscommunicationsarealreadyvisible.Whenphoneswerenotportableandusedtoonlysitonadeskathomeoratwork,peoplewouldcallplaces:workorhome;butwhenphonesbecameportableandaccessibleanywhere,peoplebegantocallpeopleratherthanplaces:today,whenwecallpeopleweevenoftenstartbyasking‘‘Hello,whereareyou?’’.Themobilephonehasbecomeasafetytool:‘‘IwillbringthephonewithmeincaseIneedtocallforanemergency,ifanxiousfamilymemberswanttoreachme,orifIamlost’’.Themobilephonehasbecomeasocialtool,enablingmorefiexiblepersonallifeplanning:‘‘IdonotknowwhereIwillbeat2p.m.andwhereyouwillbe,butIwillcallyouonyourmobileandwewillsync’’.Arecentsurveyhasshownthatwhenpeopleforgettheirmobilephoneathome,avastmajorityiswillingtogobackhometogetit,evenwhenitimpliesa30-minutedrive.Themobilephonehasbecomeapersonalitemyoucarrywithyoulikeyourwallet,yourdrivers’license,yourkeys,orevenwear,likeawatch,apen,orglasses:itmadeittothelistofthefewitemsthatyoucarrywithyou.Ifyouareateenager,agamingdeviceoranMP3playeralsomadetheirroominyourpocket,andifyouareabusyexecutiveapersonalorganizerismaybemorelikelytohavethisprivilege.Figure1.1illustratestheintegrationofnewfeaturestrend;conversely,thewirelesscommunicationtechnologywillbepervasiveindifferentend-equipmentsandcreatenewmarketsforwirelessmodulesembeddedincarsforexample.Tosome,theuseofamobilephoneinpublicplacesisanannoyance.Peerpressure‘‘dictates’’youhaveamobilephonetobereachable‘‘anywhereanytime’’;nothavingamobilephonebecomesanti-socialinScandinaviancountriesforexample,wherepenetrationishigherthan70%ofthewholepopulation.Likeforeverydisruptivetechnologywidelyused,anewetiquettehastobeunderstoodandagreedupon,e.g.phoneshavetobeturnedofforputinsilentmodeatconcertsorinrestaurants.Phonesarenowprogrammedwithdifferentringingprofilesthatare‘‘environmentfriendly’’(e.g.meetingmoderingsonlyonceandmakesthephonevibrate).Inthefuture,wemightseephonesthatareenvironmentaware,withsensorsthatdetectifthephoneisinabagandneedstoringlouderforexample.Inthepast,Matra-AEG,nowNokiaMobilePhones,introducedaGSMphonethathadaninfra-redsensorthatservedasaproximitydetectorsoastoputthephoneautomaticallyonoroffhands-freemode.Ringingprofileshavealsootherniceapplications:pairedwithCallerID,theyenableuserstohavedifferentringingtonesfordifferentcallers(friends,family,businesspartners,unknown…).1.2TheSuperPhone?Tothevastmajority,themobilephoneistheultimatetelecommunicationtool,viavoiceorshortmessages,soontobecomemultimediamessagesormultimediacommunications.Forsome,itisaforegoneconclusionthatwirelessterminalswillcontinuetheirmutationfromfairlysimple,voice-orienteddevicestosmarterandsmartersystemscapableofincreasinglymorecomplexvoiceanddataapplications.TheargumentgoesthatwirelessphoneswilltakeonthecapabilitiesofPersonalDigitalAssistants(PDAs)andPDAswillsubsumemanyofthevoicecommunicationscapabilitiesofmobilephones.Thislineofreasoningproclaimsthatthehandsetsofthefutureeventuallywillbecomesomesortofsuper-phone/handheldcomputer/PDA.Butintheend,themarketplaceisnevernearlyasneatandtidyasonemightimagine.Ratherthananinexorablequestforaone-size-fits-allsuper-phone,thefractiousforcesofthemarket,basedastheyareoncompletelyillogicalhumanemotions,nodoubtwillleadhandsetmanufacturersdownanumberofavenuesinsupportof2.5Gand3Gapplications(2.5and3Grefertocomingphonestandardgenera-tionstobedescribedlaterinthisbook).Manymobilehandsetswillbecapableofconvergedvoice/dataapplications,butmanywillnot.Instead,theywillfulfillaperceivedconsumerneedorperformacertainspecializedfunctionverywell.Ratherthanahomogenousmarketofconvergedsuper-phones,theterminaldevicesfornextgenerationapplicationswillbeasdiverseastheyaretoday,ifnotmoreso.Andtheywillbeasdiverseastheapplicationsthatwillmakeupthe2.5Gand3Gmarketplace.MobiledeviceOEMsmustbepreparedtomeetthechallengeofadiverseandsegmentedmarket.Figure1.2illustrateshowwirelessphoneservicestartedtobeaffordabletoafewprivilegedbusinessprofessionalsandhowitdiversifiedintimetobecomeaconsumeritem.Thehigh-endphoneoftodayistheclassicphoneoftomorrowasfashionandtechnologyevolveandaspeoplebecomeusedtoinno-vationsbroughttothem.Webelievethattheincreasingneedforfunctiondiversificationwilldrivetheprogram-mableDSPintoanevenmoreintegratedrolewithinthemobiledevicesoftomorrow.Non-programmableDSParchitectureswillhavetotakeonmanytraitsoftheprogrammableDSPinordertocompetewithit.ThelaterchaptersofthisbookhighlightthatthefutureofprogrammableDSPsinmobileapplicationshingesontheirabilitytobringtherightlevelofflexibility,alongwithlowpowerperformance.Overthelastseveralyears,themarketforterminalsfirstbecamepolarizedandthenstratified.Themarketfirstpolarizedatthehighandlowendsofthespectrum.Asmorefeaturesandfunctionscouldbeaddedtohandsets,theywereandthismadeupthehighend.Buttoattractnewsubscribers,wirelesscarriersstillwantedlow-end,low-costyetrobustmobilephones.Infact,fortheserviceproviderofferingfreehandsetstoeachnewsubscriber,thelowerthecostofthehandset,thebetterofftheserviceproviderwouldbe.Inthelastfewyearsthough,themarkethasshownthatitwillsplinterandstratifywithseveraldifferentlayersormarketsegmentsbetweenthepoles.Someofthedistinctsegmentsthatareemergingcanbedefinedas:†Data-centricdevices:evolvingfromthePDA,theseadvancedpalmtopcomputerswillbeintegratedwithcellularvoiceandretainorevenexpandupontheircomputingcapabilities.Data-centricdevicescanalsobemodemcards(nokeyboard,nodisplay!)thatcanbepluggedintolaptops.†Smart-phones:migratingfromthecellulartelephonesegmentoftoday’smarket,smart-phoneswillperformtheirvoicecommunicationsfunctionsquiteeffectively,buttheyalsowillbeequippedwithlargerdisplayscreenssotheycanbegintoperformnewapplicationslikee-mailaccess,Internetbrowsingandothers.†Fashionphones:thesedeviceswillusefashiontechniquestoappealtoseveralsegmentsofconsumers.Thebusinessperson,forexample,willbeattractedtoacertainlookandfeeltomakeafashionstatement.Youngerconsumerswillhavequitedifferenttastes.Althoughtheywillcrossseveraldemographicmarketsegments,thesetypesofphoneswillappealtobuyerswhoarefashion-consciousandwhowillusefashiontomakeastatementabouttheirlifestyles.†Classicmobilephones:foruserswhoarelookingforaworkhorsemobilephone,theclassichandsetwillbesmallandeasy-to-handle,anditwillperformeffectivelythemostfrequentlyusedcommunicationsfeatures.†Low-endphones:serviceproviderswillcontinuetoofferfreephoneswithservicecontracts.Thesesmall,lightandrobustphoneswillremainamainstayinthemarketbecausetheyperformaveryvaluablefunction.Theyoftencomewithapre-paidcallingplanbundle.Theyattractfirst-timeusers.Inthefuture,wemightseesuchphoneswithoutakeyboardoradisplay(tosavecost):phonecallswouldbemadeviaanoperatorsittinginacallcenteroravoicedialing/recognitionsystem,mostlikelyinthenetwork.†Bluetooth-enabledphones:Bluetoothisashortrange,low-cost,lowpowerwirelesstech-nologyoperatinginthe2.4GHzunlicensedband.Bluetooth-enabledphonescanbeanyoftheabovecategories,buttheformfactorsmaychangedramaticallyasthephonewillnowbedistributedaroundyourbody.ThetypesofhandsetsthatcanbeidentifiedareillustratedinFigure1.3(conceptphonescourtesyofNokia).Whatisnotknowniswhattomorrowmayholdandtheeffectsnewapplicationswillhaveonthesize,shapeandfunctionoffutureterminaldevices.Onethingisforcertain:newtechnologieswillbedevelopedthatwillaltertheformfactorsinusetoday.Forexample,aBluetooth-enabledphonemaybeabelt-attachedcontroller/gatewaydevicelinkedtoanearpiecethatcommunicatesaudioinformation.Adisplayunitofsomesortcouldbeconnectedtotheuser’seyeglassesforcommunicatingvisualdata.Andbeyondthesefairlynewapplications,medicalsensorscouldbedeployedtomoni-tortheperson’sheartbeatorothervitalfunctions.Asmallbox,comparabletoafiatpagerinsize,willincorporatecellularandBluetooth(oranothertechnologysuchasIEEE802.11BorIEEE802.15)functionalitiescombined,tocommunicatewithacollectionoffashionableaccessories;theaccessories,ofthesizeandweightofapen,orafiatscreenforexample,willformapersonalareanetworkofthinclientscommunicatingviaBluetoothwiththesmallbox,thePersonalMobileGateway(Figure1.4,courtesyofIXIMobileInc.).Thatwaythe‘‘all-in-one’’terminal,oftentoobigtobeaphoneandtoosmalltobeaPDA,willbecomeacollectionofsmartyetthin,fashionableandlowcostdevices.Theconceptwouldappealtobothmobileprofessionalsandteenagers,theprimarytargetfortheeverincreasingreplacementmarket.1.3NewServicesWehavediscussedwirelessdevices,butwhatusersreallycareaboutaretheservicesthosedeviceswillbringtothem,andindustryplayerscareabouthowmoneywillbemade.Beforedescribingthenewservicesthatarelikelytobeofferedthankstopersonalmobileterminals,alittlehistorylessonwillbeusefulandremindustobehumble,especiallywhenitcomestopredictingthefuture!Whenthetelephonewasinvented,itwasoriginallytoimprovethetelegraphsystem.ThefundamentalideaoftheelectricaltransmittingofsoundwaspublishedbyCharlesBourseulfirstin1854inthemagazineL’IllustrationdeParis.AlexanderGrahamBellpatentedhistelephoneonthe14February1876,just3hoursbeforeElishaGray.Nobodywasinterestedinhisinventionfirst.WhenheaskedtheWesternTelegraphCompanyin1877tobuyhispatentfor$100,000,theresponsewas‘‘Whatshallwedowithatoylikethat?’’.Therewassomedoubtastotheusetowhichtelephonesmightactuallybeputinpractice.Demonstrationsoftenincludedspeech,songandmusic,anditwasnotuncommonforthemusicaldemonstrationstobetechnicallythemostsuccessful.‘‘Themusicaltelephone’’wasamajorattractionattheInternationalElectricalExhibitioninParisin1881,wheretheFrenchengineerClementAderdemonstratedstereophonictransmissionbytelephonedirectfromthestagesoftheParisOperaHouseandtheCome,dieFranaise.Itwasbelievedtobethemajorapplicationoftelephony.In1890,acommercialcompany,CompagnieduTheatro-phone(Figure1.5),wasestablishedinParis,distributingmusicbytelephonefromvarioustheatrestospecialcoin-operatedtelephonesinstalledinhotels,cafes,etc.andtodomesticsubscribers.Theservicecontinueduntil1932,whenitwasmadeobsoletebyradiobroad-casting.Thephonehascomealongwaysincethen,andthefirstmassmarketapplicationissimply…talkingwithotherpeople.WiththeadventoftheInternetandwirelessdataservices,anewrealmofpossibilitiesarealreadyoffered,thatgofarbeyond‘‘justtalkingwithotherpeople’’,aswitnessedbytherecentsuccessofNTTDoCoMo’sI-modeserviceinJapan.Servicecategoriesofthenearfuturewillencompasspersonalizedinformationdeliveryfornews,location-dependantservices,travel,bankingandpersonalhobbies;itwillalsoincludeproductivity-relatedservicessuchasVirtualPrivateNetwork(VPN)withtheofficeorthefamily,personalassistant,agendas,andaddressbooks;extendedcommunication,includinge-mail,postcardtransmission,andofcourseentertainment.Nokiahasalreadyintroducedphoneswithgamessuchas‘‘thesnake’’,butthefuturewillbringmuchmoreexcitinggames(on-lineaswellasoff-line,puzzles,gambling)andnewformsofentertainment:music(ringtones,clipsandsongs),TV(schedules,clips),chatgroups,astrology,datingservicesandwhatissometimescalled’’adultentertainment’’.Figure1.6showssomeoftheservicecategories.Thesuccessfuldeploymentoftheserviceswilldependoneaseofuse,convenience,pertinence,andclearaffordablebilling.Thepertinenceoftheservicewillrequirepersona-lization;profilingtechnologycanbeusedtomatchcontenttotheneedsoftheusers.Loca-tion-basedserviceswillenableorfacilitatesuchprofiling.Ofcourselocalizationwillhavetobevolunteeredand‘‘legally-correct’’information.Mostmobilelocation-basedservicestodayusepositioningbasedonCellofOrigin(COO),buttheprecisionisoftenmediocre,linkedtocellsize;insomecases,thisisacceptableenough.Anothermethod,knownasEnhancedObservedTimeofDifference(EOTD)isusedinsomeGSMnetworks.TimeofarrivalsignalsfrombasestationsaremeasuredbythephoneandwhatiscalledaLocation-MeasurementUnit(LMU).InfutureUMTSsystems,asimilartechniquewillbeusedthatisknownasObservedTimeDifferenceofArrival(OTDOA).ThelocationmethodswejusttalkedaboutonlyusethenetworkandLMUsasameanstogetlocationinformation;theuseofGlobalPositioningSystem(GPS)givesbetterresults,butthecostofaGPSreceiverhastobeaddedtothephone.Anillustrationofaninnovativewaytoexploitandpresentlocation-basedservicesisgiveninthelastchapterofthebook.1.4TheCurseandOpportunityofMoore’sLawMoore’slawpredictedtherapidincreaseintransistordensityonsiliconchips.Alongwiththisincreaseintransistordensity,cameanincreaseinclockspeed,chipsize,andcomponentdensityonboards.Allthishasgiventhesystemdesigneranexponentiallyincreasingamountofprocessingpowertoplaywithinhisorherquestformoreandmoresophisticatedsystems.Thedesigncommunityhasreactedtothisexplosionbymakinglessandlessefficientuseofthetransistorsofferedtoit.Thishasbeentruesincewefirstmovedfromhandlaidouttransistorstologicgates.Thelatterislessefficientintermsofsiliconareaandspeedoptimization,butismuchmoreefficientintermsofamorepreciousresource:humanintel-lect.FromlogictoRTLtomicroprocessors,thedesignerhasmovedtoanincreasinglyhighlevelofabstractioninordertodesignmoreandmorecomplexdevicesinreasonabletime-frames.Despitethis,designerscontinuetolagbehindprocessengineersintheirabilitytoconsumethetransistorsbeingmadeavailabletothem.ThiscanbeclearlyseeninFigure1.7whichplotstheabilityofadesignertousetransistorsagainsttheavailabilityoftransistorsthatcanbeused.Thistrendmakestheuseofprogrammabledeviceswithinmobilecommu-nicationssystemsinevitablefortheforeseeablefuture.Theonlyquestionis,whatwilltheseprogrammabledeviceslooklike?ProgrammableDSPsareprogrammabledevicesthatincludefeaturesthatenableefficientimplementationofsystemswithinthespecialclassofsignalprocessingproblems.ByfocusingonsignalprocessingDSPdesignershaveputprogrammableDSPsattheheartofmanyconsumerdevices,includingmobilecommunicationsystems.RecentlyDSPshavebeenspecializedtoperformspecificallyinthedomainofsignalprocessingformobilecommunications(moredetailsaregiveninChapter2).ThebalancebetweenspecializationandflexibilityisimportantforanyDSPtosucceed.AsDSPsareprogrammable,theyarenot‘‘justpiecesofsilicon,’’theycomewithadevelopmentenvironment.Intheearly1980s,DSPwasconsideredblackmagic,usedbyguruswhowroteallapplicationsinassemblylanguage.Now,powerfuldevelopmenttoolsincludingapplicationboards,emulators,simulators,debuggers,optimizingHighLevelLanguage(HLL)compilers,assemblers,linkers,blockdiagramenvironments,codegenerators,real-timeoperatingsystems(enablingeasiermultitasking,preemptivescheduling,highspeedcontextswitching,lowinterruptlatency,andfast,flexibleintertaskcommunication)aswellasmanyDSP-relatedbooksandapplicationnotesandinnovativevisualtoolshavemadeDSPtechnologyatoolforrapiddesignofincreasinglycomplexsystems.IncompetitiontoDSPs,‘‘siliconcompilers’’havearisen.Thesecompilerspromisetotakehighleveldescriptionsofasystem,andoutputadesignreadyforsynthesis,usuallywithacertainamountofuserfeedbackalongtheway.Thoughsuchtoolshaveshownsomesuccessandarenodoubtausefultoolinadesignersarsenal,theydonotprovideawaytomodifyasystemonceithasbeenfabricated.Thisisbecominganincreasinglyimportantrequirementbecausesystemsevolvequicklyandareincreasinglydifficulttospecifyatdesigntime.Forinstance,amobilehandsetmaynotbefullytesteduntilithasbeenusedinthefield.Theincreasingcostofmasksetsforthefabricationofchipsmeansanychangethatcannotbedonebyreprogrammingmaycostmillionsofdollarsandmonthsoftime.Thisisunacceptableintoday’smarketplace.更多内容见附件免责声明:本页面/内容部分素材来源于互联网公开信息,旨在传递更多信息,不代表本平台立场。版权归原作者或机构所有,如涉及侵权,请通过平台联系我们,我们将在核实后第一时间处理。本平台对转载内容的真实性、准确性不作任何保证,用户需自行判断并承担使用风险。

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