软件学报
軟件學報
연건학보
JOURNAL OF SOFTWARE
2014年
10期
2409-2420
,共12页
庞辽军%李慧贤%崔静静%王育民
龐遼軍%李慧賢%崔靜靜%王育民
방료군%리혜현%최정정%왕육민
公平性%匿名性%签密%多接收者签密%基于身份的签密
公平性%匿名性%籤密%多接收者籤密%基于身份的籤密
공평성%닉명성%첨밀%다접수자첨밀%기우신빈적첨밀
fairness%anonymity%signcryption%multi-receiver signcryption%identity-based signcryption
针对现有基于身份的多接收者签密方案中存在的接收者身份泄露以及解密不公平性等问题,提出一种具有解密公平性的基于身份的多接收者匿名签密方案。新方案不仅能够解决现有方案中不能保护接收者身份隐私性的问题,并且满足解密公平性,从而有效地防止了发送者可能的欺骗行为。接着,基于双线性Diffie-Hellman假设和计算Diffie-Hellman假设,对所提方案的保密性和不可伪造性进行了证明。同时,对方案的正确性及性能进行了分析。分析发现,该方案是一个安全、有效的公钥签密方案,能够解决现有方案中存在的接收者身份暴露和解密不公平性等问题。这使得该方案具有非常重要的应用,尤其是可以用来实现安全广播,以便在不安全和开放的网络环境中安全地广播敏感信息。
針對現有基于身份的多接收者籤密方案中存在的接收者身份洩露以及解密不公平性等問題,提齣一種具有解密公平性的基于身份的多接收者匿名籤密方案。新方案不僅能夠解決現有方案中不能保護接收者身份隱私性的問題,併且滿足解密公平性,從而有效地防止瞭髮送者可能的欺騙行為。接著,基于雙線性Diffie-Hellman假設和計算Diffie-Hellman假設,對所提方案的保密性和不可偽造性進行瞭證明。同時,對方案的正確性及性能進行瞭分析。分析髮現,該方案是一箇安全、有效的公鑰籤密方案,能夠解決現有方案中存在的接收者身份暴露和解密不公平性等問題。這使得該方案具有非常重要的應用,尤其是可以用來實現安全廣播,以便在不安全和開放的網絡環境中安全地廣播敏感信息。
침대현유기우신빈적다접수자첨밀방안중존재적접수자신빈설로이급해밀불공평성등문제,제출일충구유해밀공평성적기우신빈적다접수자닉명첨밀방안。신방안불부능구해결현유방안중불능보호접수자신빈은사성적문제,병차만족해밀공평성,종이유효지방지료발송자가능적기편행위。접착,기우쌍선성Diffie-Hellman가설화계산Diffie-Hellman가설,대소제방안적보밀성화불가위조성진행료증명。동시,대방안적정학성급성능진행료분석。분석발현,해방안시일개안전、유효적공약첨밀방안,능구해결현유방안중존재적접수자신빈폭로화해밀불공평성등문제。저사득해방안구유비상중요적응용,우기시가이용래실현안전엄파,이편재불안전화개방적망락배경중안전지엄파민감신식。
Existing ID-based multi-receiver signcryption schemes presents some security problems. For example, the identities of receivers can be revealed and the receivers do not have fairness in decryption. In order to avoid those problems, this paper proposes a fair ID-based multi-receiver anonymous signcryption scheme. The new scheme can not only solve the problem that the existing schemes can not protect the privacy of receivers, but also meet the fairness of decryption to effectively prevent possible cheating behavior of the sender. It then proves the confidentiality and unforgeability under of the scheme the bilinear Diffie-Hellman assumption and the computational Diffie-Hellman assumption. Simultaneity, the correctness and the performance of this scheme are analyzed. It concludes that this scheme is a secure and effective public-key signcryption scheme and can solve the problems of the receivers’ identity exposure and unfairness decryption. Therefore, the new scheme has very important applications, especially it can be used to broadcast sensitive information in unsafe and open network environment.