CN1077978C - 用于控制冰箱内朝鲜咸菜贮藏温度的设备 - Google Patents

用于控制冰箱内朝鲜咸菜贮藏温度的设备 Download PDF

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CN1077978C
CN1077978C CN95102276A CN95102276A CN1077978C CN 1077978 C CN1077978 C CN 1077978C CN 95102276 A CN95102276 A CN 95102276A CN 95102276 A CN95102276 A CN 95102276A CN 1077978 C CN1077978 C CN 1077978C
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salted vegetables
refrigerator
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chaotic signals
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朴赞营
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Abstract

一种用来控制冰箱内朝鲜咸菜贮藏温度使其等于冬季大气温度的设备。该控制设备包括:不规则信号图形存储单元,用来存储应于大气温度变化图形的不规则信号图形,以及微处理器,用来取出预先存储在不规则信号图形存储单元中的不规则信号值,并把代表冰箱内咸菜烘干室温度的检测信号值和取出的不规则信号值进行比较,根据比较的结果控制咸菜烘干室的温度。

Description

用于控制冰箱内朝鲜咸菜贮藏温度的设备
本发明涉及一种用于控制冰箱内朝鲜咸菜如泡菜贮藏温度的设备,更具体地说,涉及一种用于控制冰箱内朝鲜咸菜的贮藏温度,使其等于冬季的大气温度的设备。
在一般的冰箱中,朝鲜咸菜在由冰箱内的朝鲜咸菜烘干加热器进行烘干之后在例如大约3℃的低温下贮藏。在该贮藏温度下,朝鲜咸菜则连续地经受低温干燥。然而,当贮藏的朝鲜咸菜的数量大时,在咸菜完全用完之前,这种持续的低温干燥则可能引起朝鲜咸菜的酸化。
因此,本发明的目的在于提供一种用于控制冰箱内朝鲜咸菜的贮藏温度,使其等于冬季的大气温度的设备。
按照本发明,这一目的可以通过提供一种控制冰箱内朝鲜咸菜(以下简称为“咸菜”)贮藏温度的设备来实现,该设备包括:用来存储相应于大气温度改变图形的不规则(chaos)信号图形的不规则信号图形存储装置;微处理器,用来取出预先存储在不规则信号图形装置中的不规则信号值,并把取出的不规则信号值和代表冰箱内的咸菜烘干室的温度的检测信号值进行比较,根据比较的结果控制朝鲜咸菜烘干室的温度。
从下面结合附图对实施例的说明中可清楚地看出本发明的其它目的和其它方面,其中:
图1是应用本发明控制咸菜贮藏温度的设备的冰箱的截面图;
图2是本发明控制设备的方框图;
图3A是在对冬季大气温度变化进行定量分析之后获得的一种结果的图示;
图3B是对冬季大气温度变化进行定性分析之后获得的一种结果的图示;
图3C和3D分别是按照图2所示控制设备的咸菜烘干室中的温度变化的图示;
图4分别是按照本发明的控制设备咸菜烘干室内贮藏的咸菜和按常规方式贮藏的咸菜的pH值和酸度的图示。
图1所示为应用本发明控制咸菜烘干温度设备的冰箱。如图1所示,该冰箱包括冰箱本体1,它具有上部的冷冻室2,中间的冷藏室3,和下部的咸菜烘干室4。下部的咸菜烘干室4适用于容纳用来进行咸菜烘干和贮藏的咸菜盒5。在咸菜烘干室4的下面,安置着咸菜烘干加热器6。在冰箱本体1上连接着冷冻室门7,用来打开和关闭冷冻室2。冰箱本体1上还安装着冷藏室门8,用来打开和关闭冷藏室3和咸菜烘干室4。在冷冻室门7的外壁的预定部分安装着显示装置9,使得用来显冰箱当前的操作。冰箱还包括:位于冰箱本体1的后下部的压缩机10,用于压缩制冷气体;安装于冰箱本体1后上部的蒸发器11,用来使在压缩机10内压缩的制冷气体膨胀借以产生冷气;冷却风扇12,用来把由蒸发器11产生的冷气吹向冰箱的各个部分;以及一对风挡13、14,分别用来控制进入冷藏室3和咸菜烘干室4内的冷气。还有一对风挡电机15、16,分别用来控制风挡13、14的打开和关闭。
一般地,咸菜烘干室4位于贮放蔬菜的蔬菜室(未示出)的一侧。显示装置9连接着温度检测器(未示出),用来检测冰箱周围的环境温度。咸菜烘干室4的上表面连着温度检测器RA,用来检测咸菜烘干室4的温度。
图2是说明本发明的控制设备的方块图。如图2所示,该控制设备包括:环境温度检测单元100,用来检测冰箱周围的环境温度并输出代表测得的环境温度的信号;咸菜温度检测单元200,用来检测咸菜烘干室4的温度并输出代表测得的咸菜烘干室温度的信号;以及微处理器300,用来把咸菜温度检测单元200输出的检测信号值和预先存储在微处理器300内的不规则信号值进行比较,并控制风扇电机12A,咸菜烘干加热器6和咸菜烘干风挡电机16,从而控制咸菜烘干室4的温度。
微处理器300包括:输入缓冲器23,用来暂时存储环境温度检测单元100或咸菜温度检测单元200输出的检测信号;不规则信号图形存储单元33,用来存储相应于温度变化图形的不规则信号图形;控制单元53,用来取出暂存在输入缓冲器23中的咸菜烘干室温度检测信号和存储在不规则信号图形存储单元33中的不规则信号,并把取出的信号供给操作单元43并控制操作单元43,从而输出相应于咸菜烘干室温度检测信号和操作单元43中的不规则信号之间比较结果的控制信号;以及输出缓冲器63,用来暂存控制单元53输出的控制信号。
现在结合图3图4说明具有上述结构的本发明的咸菜贮藏温度设备的工作。
一般地说,大气现象相当于一种不规则的现象。因而,这种大气现象可以通过分析不规则现象来进行分析。作为分析不规则现象的方法,有用来定量地分析不规则现象的方法和定性地分析不规则现象的方法。
作为定量分析法,有一种通过推导相关维数(correlationdimension)来分析不规则现象的方法。当通过实验以时间序列数据的形式得到条件的变化时,这种方法提供了计算的方便。
作为定性分析法,有一种用来改组吸引物(re—structuringattractors)的方法。
当通过实验以时间序列数据形式得到冬季大气温度的变化时,如图3A所示,按照本发明,所获得的时间序列数据的值被存储在微处理器300的不规则信号图形存储单元33中。
在另一方面,当根据改组吸引物法导出冬季大气温度的变化时,由吸引物改组(attractor re—structure)产生的值被存储在微处理器300的不规则信号图形存储单元33中。
在不规则信号图形的值已被预先存储在微处理器300的不规则信号图形存储单元33中的条件下,当用户由键输入装置(未示出)输入相应的健信号而选择所需的咸菜烘干方式时,所输入的键信号通过微处理器300中的输入缓冲器23送入控制单元53中。
根据对输入的键信号的识别,控制单元53接收来自输入缓冲器23的环境温度检测信号和咸菜烘干室温度检测信号。根据收到的检测信号,控制单元53控制冷却风扇电机12A、咸菜烘干加热器6和咸菜烘干风挡电机16,以便烘干咸菜盒5中的咸菜。
在上述的咸菜烘干完成之后,操作方式变为贮藏方式,从而进行长期贮藏已烘干的咸菜的操作。
现在详细说明这一操作。
首先,微处理器300的控制单元53取出暂存在输入缓冲器53中的咸菜烘干室温度检测信号,然后把取出的检测信号送入操作单元43。控制单元53也从不规则信号图形存储单元33中取出不规则信号,然后把取出的不规则信号送入操作单元43。
然后操作单元43把咸菜烘干温度检测信号的值和输入的不规则信号的值进行比较,并把由比较所得的值送入控制单元53中。
结果,控制单元53对输入的比较结果值进行识别。如果控制单元53根据比较结果辩认出咸菜烘干室温度检测信号的值大于不规则信号的值,它就控制咸菜烘干电机16打开风挡14,从而减少咸菜烘干室4的温度。另一方面,当控制单元53辩认出咸菜烘干室温度检测信号的值小于不规则信号的值,它就控制咸菜烘干电机16关闭风挡14,从而增加咸菜烘干室4的温度。
随着重复进行上述操作,咸菜烘干室4的温度就类似于如图3A或3B所示的冬季大气温度的变化而变化,如图3C或3D所示。
图4所示为在按照本发明如图3C或3D所示的温度变化的咸菜烘干室4中贮藏的咸菜和以常规方式贮藏的咸菜的酸度和pH值。由图4可见,按照本发明贮藏的咸菜比用常规方法贮藏的咸菜的有较低的pH值和较高的酸度。
从上述可明显看出,本发明提供了一种这样控制冰箱内咸菜贮藏室温度的设备,使得温度的变化类似于冬季温度的变化,从而能够改善所贮藏的咸菜的味道并延长咸菜贮藏时间。
换句话说,本发明的控制设备助长了pneuconostoc的产生和生长,从而改善了咸菜的味道和香味,而抑制了使咸菜味道和香味变差的乳酸杆菌的产生和生长,并因而提供了增加咸菜的酸度同时又减少咸菜的pH值的效果。
虽然为了说明的目的对本发明的最佳实施例进行了描述,然而本领域的技术人员在不脱离所附权利要求的范围内可以作出各种改型、增加和替代。

Claims (1)

1.一种用于控制冰箱内朝鲜咸菜贮藏温度的设备,包括:
不规则信号图形存储装置,用来存储相应于大气温度变化图形的不规则的信号图形;以及
微处理器,用来取出预先存储在不规则信号图形存储装置中的不规则的信号值,把代表冰箱内咸菜烘干室的温度的检测信号值和取出的不规则信号值进行比较,根据比较的结果控制咸菜烘干室的温度。
CN95102276A 1994-02-23 1995-02-23 用于控制冰箱内朝鲜咸菜贮藏温度的设备 Expired - Fee Related CN1077978C (zh)

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KR1019940003214A KR950025384A (ko) 1994-02-23 1994-02-23 냉장고의 김치저장 장치

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AU1343995A (en) 1995-09-07
IT1273943B (it) 1997-07-11
JPH0882466A (ja) 1996-03-26
CN1112998A (zh) 1995-12-06
JP2577201B2 (ja) 1997-01-29
KR950025384A (ko) 1995-09-15
ITMI950307A1 (it) 1996-08-21
AU672345B2 (en) 1996-09-26
US5542262A (en) 1996-08-06
ITMI950307A0 (it) 1995-02-21

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