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題名 A Graphic-Algebraic Computation of Elementary Siphons of BS3PR
作者 趙玉
Chao,Daniel Yuh
關鍵詞 flexible manufacturing systems; deadlock control; Petri nets; siphons; elementary siphons; S3PR
日期 2007-01
上傳時間 17-Jan-2009 16:05:22 (UTC+8)
摘要 Unlike other techniques, Li et al. add control nodes and arcs for only elementary siphons, thus reducing the number of control nodes and arcs required for deadlock control in Petri net supervisors. Their method suffers from the expensive computation of all SMS (Strict Minimal Siphons). We propose a graphic-algebra approach to compute elementary siphons without the knowledge of SMS. We show that each SMS corresponds to a strongly connected resource subnet (sub-SCC) whose characteristic T-vector ζ can be computed as a linear sum of that of all resource places in the subnet. An SMS includes all resource places in the subnet plus all input operation places of transitions with positive components in ζ. We propose Algorithm 2 to find all sub-SCC. We prove that any sub-SCC N’, containing an elementary resource circuit c as a proper subset and N’ =N” ∪ c, N” ∩ c = {r}, corresponds to a dependent siphon. Hence, elementary siphons are closely related to (and can be constructed from) elementary (called basic) circuits and in general, combinations of elementary circuits may contribute to elementary siphons. For a simple basic subclass of S3PR (called BS3PR), the set of elementary siphons is identical to that synthesized from elementary (basic) circuits. As a result, we simplify Algorithm 2 to find all elementary circuits. It is more efficient than traditional algorithms by terminating earlier upon detecting that the net is not a BS3PR.
關聯 Journal of Information Science and Engineering, 23(6), 1817-1831
資料類型 article
dc.creator (作者) 趙玉zh_TW
dc.creator (作者) Chao,Daniel Yuh-
dc.date (日期) 2007-01en_US
dc.date.accessioned 17-Jan-2009 16:05:22 (UTC+8)-
dc.date.available 17-Jan-2009 16:05:22 (UTC+8)-
dc.date.issued (上傳時間) 17-Jan-2009 16:05:22 (UTC+8)-
dc.identifier.uri (URI) https://nccur.lib.nccu.edu.tw/handle/140.119/27046-
dc.description.abstract (摘要) Unlike other techniques, Li et al. add control nodes and arcs for only elementary siphons, thus reducing the number of control nodes and arcs required for deadlock control in Petri net supervisors. Their method suffers from the expensive computation of all SMS (Strict Minimal Siphons). We propose a graphic-algebra approach to compute elementary siphons without the knowledge of SMS. We show that each SMS corresponds to a strongly connected resource subnet (sub-SCC) whose characteristic T-vector ζ can be computed as a linear sum of that of all resource places in the subnet. An SMS includes all resource places in the subnet plus all input operation places of transitions with positive components in ζ. We propose Algorithm 2 to find all sub-SCC. We prove that any sub-SCC N’, containing an elementary resource circuit c as a proper subset and N’ =N” ∪ c, N” ∩ c = {r}, corresponds to a dependent siphon. Hence, elementary siphons are closely related to (and can be constructed from) elementary (called basic) circuits and in general, combinations of elementary circuits may contribute to elementary siphons. For a simple basic subclass of S3PR (called BS3PR), the set of elementary siphons is identical to that synthesized from elementary (basic) circuits. As a result, we simplify Algorithm 2 to find all elementary circuits. It is more efficient than traditional algorithms by terminating earlier upon detecting that the net is not a BS3PR.-
dc.format application/en_US
dc.language enen_US
dc.language en-USen_US
dc.language.iso en_US-
dc.relation (關聯) Journal of Information Science and Engineering, 23(6), 1817-1831en_US
dc.subject (關鍵詞) flexible manufacturing systems; deadlock control; Petri nets; siphons; elementary siphons; S3PR-
dc.title (題名) A Graphic-Algebraic Computation of Elementary Siphons of BS3PRen_US
dc.type (資料類型) articleen