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Heuristics for Improving Operational Performance of Permutation Circulati on-type Vehicle Routing System
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作者 Hiroshi KISE Mingzhe LU +1 位作者 Guiyan HU Tan LI 《厦门大学学报(自然科学版)》 CAS CSCD 北大核心 2002年第S1期197-199,共3页
This paper discusses an optimization of operating a p ermutation circulation-type vehicle routing system (PCVRS, for short), in w hich several stages are located along by a single loop, and a fleet of vehicles travels... This paper discusses an optimization of operating a p ermutation circulation-type vehicle routing system (PCVRS, for short), in w hich several stages are located along by a single loop, and a fleet of vehicles travels on the loop unidirectionally and repeatedly. Traveling on the loop, each vehicle receives an object from the loading stage and then carries it to a cert ain processing stage, or receives an object from a certain processing stage and then carries it to the unloading stage per a turnaround. No passing is allowed f or the vehicles on the loop (from which the system is called permutation, and th is restriction may cause interferences between vehicles). Material handling systems such as PCVRS are actually encountered in flexible man ufacturing systems and in automated storage/retrieval systems. In this paper, we propose a heuristic algorithm for operating the PCVRS, which i ncorporates a new scheduling method for the vehicles with the SPT (shortest proc essing time) numbering of jobs and a round-robin manner of allocating jobs to t he stages, aiming to reduce interferences between the vehicles. We also give num erical results with respect to system performances attained by the heuristic. Description of the system The PCVRS consists of a set of n v vehicles V={V 1,V 2,...,V n v}, a set of n s, processing stages S p={S 1,S 2,...,S n s}, a loading stage S 0 and an unloading stage S n s +1. We denote by S=S p∪{S 0,S n s+l} the set of all the stages. The vehicles travel on a single loop unidirectionany and repeated ly. The system layout is depicted in Fig.1. There is a set of n jobs J={J 1,J 2,...,J n} to be processed b y the vehicles. Each job consists of two tasks: That is, each vehicle receives a n object from S 0 and then carries it to S l with a certain l∈{1,2, ...,n s} (a throw-in job), or receives an object from S l with a certain l∈{1,2,...,n s} and then carries it to S n s+1 (a throw-out job ) per a turnaround. The loop consists of buffer zones BZ(l) and travel zones TZ(l) (see Fig. 1). Each buffer zone BZ(l) is placed in front of stage S l, l=0,1,..., n s, n s+1, in order to avoid a collision between vehicles (i.e., the syste m adopts the so-called zone control strategy). A heuristic algorithm We develop a heuristic algorithm to obtain a good performance for the PCVRS. An operation π={A/B/C} for the PCVRS consists of three decision factors: (A) Numbering jobs Jobs are loaded into S 0 according to an assending order of job numbers. In this paper, we use the following rules to number jobs: SPT: Order jobs in the shortest processing time rule, i.e., P 1≤P 2≤...≤P n for the set of jobs J={J 1,J 2,...,J n}, rather than the FCFS numbering (i.e., number jobs in first-come-first-served order). The SPT rule intends to reduce interferences between two adjacent vehicles at stages. (B) Allocating jobs to stages For the purpose of balancing loads of processing stages, we adopt the following to allocate jobs to the stages: ORDER: Allocate n jobs to n s, processing stages by an in-order manner , i.e., let l(i) be the index of processing stage allocated job J i by ORDER, it holds that l(i)=n s+1-(i-[(i-1)/n s]n s).(1) The ORDER rule intends to process jobs parallel at stages as many as possible. (C) Scheduling vehicles The following method for scheduling vehicles under ORDER rule is already known: Fig.1 The vehicle ro uting system, PCVRS Fig.2 Mean turnaroun d times by heuristics Unchange: Assign n jobs to n v vehicles such that let k(i) be the i ndex of vehicle processing job J i, then k(i)= i-[(i-1)/n v]n v.(2) In csse of n v≥n s, mod (n v,n s)=0 or n v<n s, mod (n s,n v)=0 (mod(x,y) is the remainder of x/y), the number of interferences between vehicles is minimized at stage S 1 under Unchange sche dules, while in the other cases it is not [Lu et al. (2001a)]. Therefore, in t his paper, we develop a new scheduling method of the vehicles, denoted by Ex change, to modify Unchange schedules. Note 展开更多
关键词 Heuristics for Improving Operational Performance of Permutation circulati on-type Vehicle Routing System type
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双循环视角下我国全球供应链韧性体系建设研究 被引量:35
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作者 刘家国 许浩楠 《中国软科学》 CSSCI CSCD 北大核心 2023年第9期1-12,共12页
百年变局与世纪疫情交织叠加,暴露我国全球供应链的脆弱性,严重威胁我国国家产业安全,如何构建全球供应链韧性体系以抵御外部挑战成为急需解决的问题。党的二十大提出增强国内大循环内生动力和可靠性,提升国际循环质量和水平,为我国供... 百年变局与世纪疫情交织叠加,暴露我国全球供应链的脆弱性,严重威胁我国国家产业安全,如何构建全球供应链韧性体系以抵御外部挑战成为急需解决的问题。党的二十大提出增强国内大循环内生动力和可靠性,提升国际循环质量和水平,为我国供应链韧性建设指明了路径。在厘清新挑战的基础上,面向新发展格局构建供应链韧性闭环循环路径。以基础创新为开关形成“动态迭代”的内循环供应链韧性建设路径,以“三力协同”为源泉推动外循环供应链“四位一体”的韧性建设,设计“一体两翼”路径实现联动韧性建设。根据战略路径的规划,提出“从上到下”“从左到右”“由内而外”的中国式供应链韧性建设的对策建议,在全球碎片化趋势下部署中国方案,为中国式现代化建设提供安全保障。 展开更多
关键词 供应链韧性 内循环供应链 外循环供应链 双循环
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反循环钻孔灌注桩的施工工艺及常见问题处理 被引量:5
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作者 应子水 《建筑施工》 2019年第3期380-381,385,共3页
反循环钻孔灌注桩因具有钻进速度快、成孔质量好、清孔效果佳和施工成本低等特点而被广泛应用于高层建筑、公路桥梁等的基础工程中。结合施工实践,介绍了反循环钻孔灌注桩的施工工艺和常见的质量问题处理。
关键词 反循环钻孔灌注桩 施工工艺 质量控制 技术措施
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TE RTV84直流驱动器在集装箱装卸桥改造中的应用
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作者 刘旭 《南通职业大学学报》 2001年第2期36-40,共5页
法国TERTV -84直流驱动器采用可逆逻辑无环流回路 ,速度、电流双闭环直流调速系统。系统动静态性能均十分出色 。
关键词 速度调整器 恒功率 ET RTV84直流驱动器 集装箱 装卸桥 应用 可逆逻辑无环流回路 速度
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开放循环论:新中西之争及其解决之道 被引量:2
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作者 张曙光 《探索与争鸣》 CSSCI 北大核心 2022年第9期158-166,180,共10页
现代社会是一个开放的、复杂的系统,它包括并且内在地要求器物、制度与观念等各方面的契合或配合。我们应当也能够在现代人类文明的维度、尺度上跳出中西之分和对立,明确中西之同,并在文化类型差异和文化多样化的意义上承认中西之异。... 现代社会是一个开放的、复杂的系统,它包括并且内在地要求器物、制度与观念等各方面的契合或配合。我们应当也能够在现代人类文明的维度、尺度上跳出中西之分和对立,明确中西之同,并在文化类型差异和文化多样化的意义上承认中西之异。中国近代以来的理论和实践深受中外关系和社会转型的冲击与影响,特别是在实践方面,这种冲击与影响更为强烈。从理论上来说,开放的循环论是对兴起于近代西方的进步主义和古老的循环论的双向扬弃,它既蕴含着方向,也昭示着道路。 展开更多
关键词 中西 文化 世界 差异 开放的循环
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