標準解讀
《GB/T 44794-2024 家用和類似用途電自動控制器 微波傳感功能的技術要求和評價方法》這一標準針對家用及類似場景下的電自動控制器中采用微波傳感技術的產品設定了具體的技術要求,并提供了相應的性能評估方法。該標準覆蓋了微波傳感器的基本工作原理、安全性能、電磁兼容性等方面的要求,確保這些設備能夠安全可靠地運行于家庭環(huán)境中。
在技術要求方面,標準詳細規(guī)定了微波傳感器應達到的檢測精度、響應時間等關鍵參數(shù)指標,以及對環(huán)境適應性的要求,比如溫度范圍、濕度條件等。此外,還特別強調了產品必須符合國家對于電氣安全的標準,包括但不限于防止觸電、過熱保護等功能設計。
評價方法部分則介紹了如何通過一系列測試來驗證微波傳感器是否滿足上述技術規(guī)范。這包括實驗室條件下模擬不同應用場景進行的功能性試驗,以及針對長期穩(wěn)定性和耐用度的壽命測試。同時,也提到了需要考慮的特殊測試項目,如抗干擾能力測試等,以保證即使在復雜多變的家庭用電環(huán)境下,微波傳感器也能正常運作。
該文件旨在為制造商提供一個清晰明確的指導框架,幫助其開發(fā)出更加高效、安全且易于使用的微波傳感控制裝置;同時也為消費者選購時提供了參考依據(jù),有助于推動整個行業(yè)向更高水平發(fā)展。
如需獲取更多詳盡信息,請直接參考下方經官方授權發(fā)布的權威標準文檔。
....
查看全部
- 即將實施
- 暫未開始實施
- 2024-10-26 頒布
- 2025-05-01 實施
文檔簡介
ICS29.020
CCSL10
中華人民共和國國家標準
GB/T44794—2024
家用和類似用途電自動控制器
微波傳感功能的技術要求和評價方法
Automaticelectriccontrolforhouseholdandsimilaruse—Technical
requirementsandevaluationmethodsformicrowavesensingfunction
2024?10?26發(fā)布2025?05?01實施
國家市場監(jiān)督管理總局
國家標準化管理委員會發(fā)布
GB/T44794—2024
目次
前言··························································································································Ⅲ
引言··························································································································Ⅳ
1范圍·······················································································································1
2規(guī)范性引用文件········································································································1
3術語和定義··············································································································1
4技術要求·················································································································3
4.1通用要求···········································································································3
4.2探測距離···········································································································3
4.3探測視場角········································································································3
4.4探測精度···········································································································4
4.5有或無存在探測應用····························································································4
4.6運動存在探測應用·······························································································4
4.7微動存在探測應用·······························································································4
4.8靜止存在探測應用·······························································································4
4.9人員數(shù)量統(tǒng)計應用·······························································································4
4.10人員活動軌跡跟蹤應用························································································4
4.11動作(手勢)識別·································································································5
4.12人體姿態(tài)識別····································································································5
4.13生命體征探測····································································································5
4.14其他微波功能應用······························································································5
5評價方法·················································································································5
5.1評價資料要求·····································································································5
5.2被測樣品要求·····································································································6
5.3試驗場地和設備要求····························································································7
5.4探測距離的評價方法····························································································9
5.5探測視場角的評價方法························································································10
5.6探測精度的評價方法···························································································11
5.7有或無存在探測應用的評價方法············································································11
5.8人員運動存在探測應用的評價方法·········································································12
5.9人員微動存在探測應用的評價方法·········································································13
5.10人員靜止存在探測應用的評價方法·······································································13
5.11人員數(shù)量統(tǒng)計應用的評價方法·············································································14
5.12人員活動軌跡跟蹤檢測應用的評價方法·································································14
Ⅰ
GB/T44794—2024
5.13動作(手勢)識別應用的評價方法··········································································15
5.14人體姿態(tài)識別應用的評價方法·············································································16
5.15生命體征探測應用的評價方法·············································································17
參考文獻····················································································································19
Ⅱ
GB/T44794—2024
前言
本文件按照GB/T1.1—2020《標準化工作導則第1部分:標準化文件的結構和起草規(guī)則》的規(guī)
定起草。
請注意本文件的某些內容可能涉及專利。本文件的發(fā)布機構不承擔識別專利的責任。
本文件由中國電器工業(yè)協(xié)會提出。
本文件由全國家用自動化控制器標準化技術委員會(SAC/TC212)歸口。
本文件起草單位:廣東中創(chuàng)智家科學研究有限公司、中國電器科學研究院股份有限公司、廣東美的
制冷設備有限公司、珠海格力電器股份有限公司、廈門華聯(lián)電子股份有限公司、海信空調有限公司、青
島國創(chuàng)智能家電研究院有限公司、美的集團股份有限公司、威凱檢測技術有限公司、松下家電(中國)有
限公司、青島海爾電冰箱有限公司、海信容聲(廣東)冰箱有限公司、合肥美的電冰箱有限公司、青島海
爾洗衣機有限公司、北京小米電子產品有限公司、青島海爾智能技術研發(fā)有限公司、廣東美的廚衛(wèi)電器
制造有限公司、寧波科聯(lián)電子有限公司、杭州行至云起科技有限公司、中移(杭州)信息技術有限公司、
三門康創(chuàng)電子科技有限公司、惠州拓邦電氣技術有限公司、王力安防科技股份有限公司、杭州螢石軟件
有限公司、三橋惠(佛山)新材料有限公司、深圳市易探科技有限公司、深圳市海曼科技股份有限公司、
深圳麥格米特電氣股份有限公司、深圳市品思達科技有限公司、寧海凱特立電器有限公司、珠海市德潤
通電子科技有限公司、中山市科卓爾電器有限公司、寧波銀球科技股份有限公司、寧波歐知電器科技有
限公司、浙江高度環(huán)??萍加邢薰?、湖南麥格米特電氣技術有限公司、浙江坦?jié)娗餇杺鞲屑夹g有限公
司、矽杰微電子(廈門)有限公司、廣州市誠臻電子科技有限公司、浙江金凱德智能家居有限公司、中國
質量認證中心有限公司、寧波精芯科技有限公司、江陰市志駿電器線纜有限公司、廣東當家人智能電器
有限公司、北京西門子西伯樂斯電子有限公司、平湖李挺機械制造有限公司、廣東錦亞科技有限公司、
廣東百進新能源有限公司、深圳市矽赫科技有限公司、深圳市創(chuàng)榮發(fā)電子有限公司、山東遙思智能科技
有限公司、金久科技有限公司。
本文件主要起草人:莊偉瑋、孔睿迅、夏云龍、洪宜玖、張帆、別清峰、王曄、黃新建、景意新、李繼磊、
周小俊、韓志強、陳星、熊貴林、武繼榮、尹俊明、趙小平、溫良恭、許升、張力瀟、李萍、王雄偉、林璐璐、
沈援海、屈克勇、藍慧雪、支崇錚、李航快、龍克文、宋哲、曾勇剛、趙英軍、鄭浩華、儲之侃、朱榮船、
盧鑒恩、夏建安、柯賜龍、曾照亮、方旺林、戴佰慶、盧煜旻、李軍、唐仙強、王雅斌、王建立、陶瑞濤、
陳維會、林永明、馬志軍、蔣惠興、薛仕丁、李挺、王雪芬、皮坤林、李強、洪寶璇、陳家獻、王哲思、毛曉堯。
Ⅲ
GB/T44794—2024
引言
家用和類似用途電自動控制器的微波傳感功能一般是通過發(fā)射毫米波或厘米波波段的電磁波,并
對反射信號進行計算處理后,實現(xiàn)對探測物的感知和輸出對應控制信號,使各類電器產品能夠圍繞用
戶狀態(tài)提供功能服務。
現(xiàn)階段,家用和類似用途電自動控制器的微波傳感功能結合算法進行深度開發(fā),已實現(xiàn)了不同場
景條件下的多種應用。這些應用可歸類描述為如下項目。
——人員存在探測:
?有或無探測;
?距離探測;
?坐標探測。
——個體識別:
?人員數(shù)量統(tǒng)計;
?活動軌跡跟蹤。
——肢體識別:
?動作(手勢)識別;
?人體姿態(tài)識別。
——生命體征探測:人員的呼吸、心率等生命體征探測,并輸出相關體征數(shù)據(jù)。
——其他檢測應用。
在實際功能部署時,微波傳感模塊也可綜合上述應用,實現(xiàn)更復雜功能。
結合微波傳感功能的底層技術實現(xiàn),本文件的評價方法主要可分為兩類:
——與微波發(fā)射和接收特性關聯(lián)度較高的技術指標,如探測距離、探測精度等,因可能受其他電磁
波的干擾或影響,推薦在滿足適當技術指標要求的電波暗室中進行評價測試,以模擬開闊場
條件下的微波傳感模組工作;
——需要結合較復雜算法實現(xiàn)的應用層功能,如人員數(shù)量統(tǒng)計、動作識別等,因需驗證其在終端應
用中效果,故在模擬的家居場景中進行評價測試,不做額外的電磁屏蔽。
考慮到在現(xiàn)階段微波傳感功能存在一定的識別誤差,所以本文件在多項評價指標的要求中,主要
使用了“準確度限值”指標:如在多次測量中,只要微波傳感功能滿足重復性限要求即可?;谏鲜隹?/p>
慮,本文件的評價指標主要包括探測成功率,虛警率和漏檢率。探測成功率又包括誤差(不確定度)和
刷新率(延時)等指標。虛警率可分為靜態(tài)誤觸發(fā)和動作/對象誤識別。
微波傳感功能適用范圍廣泛,在不同應用場景中,微波傳感功能的技術指標差異較大。因此,本文
件主要是通過驗證微波傳感功能的具體技術指標在制造商自我聲明的條件下,能否達到規(guī)定的指標水
平作為判定依據(jù)。
Ⅳ
GB/T44794—2024
家用和類似用途電自動控制器
微波傳感功能的技術要求和評價方法
1范圍
本文件規(guī)定了家用和類似用途電自動控制器的微波傳感功能的術語、定義、技術要求和評價方法。
本文件適用于各類裝有微波傳感模組的電自動控制器在家用及類似用途場景下的微波傳感功能
和性能的測試與評價。
示例:類似家用用途的情況可以為養(yǎng)老機構等非醫(yī)療場景下的應用。
注1:本文件中適用的微波傳感模組包括以下產品形式:
——作為整體式或裝入控制器的一部分,并安裝在終端器具上,如空調器;
——作為智能家居場景中或安防用途的立式控制器的一部分,一般與其他器具聯(lián)動使用。
注2:本文件中所指微波傳感模組,也即具體評價對象范圍見5.2。
注3:本文件的技術要求旨在給出針對微波傳感功能的技術要求和評價方法,不涵蓋頻段的合規(guī)性(如《微功率短距
離無線電發(fā)射設備目錄和技術要求》中的規(guī)定)、通信能力和射頻性能等內容。
注4:
溫馨提示
- 1. 本站所提供的標準文本僅供個人學習、研究之用,未經授權,嚴禁復制、發(fā)行、匯編、翻譯或網絡傳播等,侵權必究。
- 2. 本站所提供的標準均為PDF格式電子版文本(可閱讀打?。驍?shù)字商品的特殊性,一經售出,不提供退換貨服務。
- 3. 標準文檔要求電子版與印刷版保持一致,所以下載的文檔中可能包含空白頁,非文檔質量問題。
最新文檔
- 專業(yè)廚房承接協(xié)議樣本(2024年度版)版B版
- 2024年軟件分銷商授權協(xié)議3篇
- 2024年貸款協(xié)議模板:不動產抵押借款條款版B版
- 2025年度智能機器人控制系統(tǒng)研發(fā)與采購合同3篇
- 2024年版租賃權轉讓合同
- 現(xiàn)金服務知識培訓課件
- 2024年量子計算機研發(fā)與轉讓協(xié)議
- 《消防逃生安全知識》課件
- 長安大學《土壤污染治理》2023-2024學年第一學期期末試卷
- 美容行業(yè)的護理顧問工作總結
- 工程結算業(yè)務咨詢服務協(xié)議書
- 床旁超聲監(jiān)測胃殘余量
- 上海市松江區(qū)市級名校2025屆數(shù)學高一上期末達標檢測試題含解析
- 綜合實踐活動教案三上
- 公交公司風險分級管控臺賬
- 食品安全應急管理和突發(fā)事故報告制度
- 《新能源汽車電氣設備構造與維修》項目三 新能源汽車照明與信號系統(tǒng)檢修
- 國際貿易風險防范與應對指南
- 2024年新課標《義務教育數(shù)學課程標準》測試題(附含答案)
- 2023年宜賓五糧液股份有限公司社會招聘考試真題
- 2024新教科版一年級科學上冊全冊教案
評論
0/150
提交評論