P98-1114 technological framework of our Kana-to-Kanji conversion systems is outlined . In chapter
P98-1114 We first developed a prototype Kana-to-Kanji conversion system which we . call System
P98-1114 results of our experiments of Kana-to-Kanji conversion , focusing on the usage of large
P98-1114 contribute to the accuracy of Kana-to-Kanji conversion is not known yet . In this paper
W11-3505 Japanese text inputs together with kana-to-kanji conversion . 2 . A high level of input speed
P98-1114 character conversion technology . The Kana-to-Kanji conversion is performed by the morphological
P98-1114 , we report the results of our Kana-to-Kanji conversion experiments which embody the
P11-1017 increase in the precision rate of kana-to-kanji conversion for a commercial Japanese word
P98-1114 collocations which are used in our Kana-to-Kanji conversion system consist of two kinds :
P98-1114 Systems We developed four different Kana-to-Kanji conversion systems , phasing in the collocation
W11-3505 . This interactive feature of kana-to-kanji conversion prevents us from touch typing
W11-3505 called homophone problem . 2.2 Kana-to-kanji conversion The complexity of Japanese writing
P90-1039 interface , speech recognition , Kana-to-Kanji conversion , which is the most popular Japanese
W11-3505 and/or semantic analyses , then kana-to-kanji conversion might to be best solution for
C94-1032 lication in many areas including kana-to-kanji conversion 7 , speech recognition , character
W11-3505 coded input method with ordinary kana-to-kanji conversion enables a novice user to input
W11-3505 is the most severe one and , in kana-to-kanji conversion sys - tems , all homophonic kanjis
P98-1114 we . call System A , revising Kana-to-Kanji conversion software on the market , WXG
J87-1020 identification of homonyms in kana-to-kanji conversion systems and of multivocal words
W11-3505 input Japanese text using the kana-to-kanji conversion by inputting the corresponding
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