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减污降碳协同多元共治体系需求及构建探析 被引量:52
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作者 王涵 马军 +4 位作者 陈民 张真 丁杉杉 王淑兰 阳平坚 《环境科学研究》 CAS CSCD 北大核心 2022年第4期936-944,共9页
碳达峰、碳中和目标的提出标志着我国生态环境保护进入减污降碳协同治理新阶段,减污降碳协同增效成为促进经济社会发展全面低碳绿色转型的重要抓手.面对经济社会高质量发展、空气质量改善与碳达峰、碳中和的多目标需求,仅依靠命令控制... 碳达峰、碳中和目标的提出标志着我国生态环境保护进入减污降碳协同治理新阶段,减污降碳协同增效成为促进经济社会发展全面低碳绿色转型的重要抓手.面对经济社会高质量发展、空气质量改善与碳达峰、碳中和的多目标需求,仅依靠命令控制型手段为主的大气污染物治理措施将不足以实现减污降碳协同目标.结果表明:构建“政府-科研机构-市场-社会组织”多元共治模式,通过命令控制与非命令控制的协同实现治理方式转变,从而提高减污降碳协同治理水平.在顶层设计层面,综合考虑城市经济发展水平、空气污染程度及各行业污染控制措施的不同,因地制宜的制定差异化减污降碳政策;在科学研究方面,开展学科融合、部门协作的减污降碳协同治理科技研究,解决减污降碳协同增效措施评估以及科技数据、资源共享和研究成果落地等问题;在市场方面,将自愿减排交易和更多高排放行业配额交易纳入碳排放交易市场,加强与排污权、用能权、绿色电力等环境权益交易之间的协同,强化市场手段的减污降碳协同增效;在治理机制和手段方面,充分发挥社会组织纽带作用,利用数字化信息系统构建第三方环境信用平台,促进政府、企业、金融机构和公众等关键利益方形成有效沟通和良性互动.研究表明,“政府-科研机构-市场-社会组织”多元共治模式能有效构建减污降碳协同增效的多元共治体系,充分发挥政府、科研机构、市场与社会组织的作用,解决碳达峰、碳中和目标下的减污降碳协同治理新需求. 展开更多
关键词 减污降碳 多元共治 非命令控制 数字化信息系统
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Parameter identification of inertially stabilized platforms using current command design 被引量:2
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作者 黎志强 张智永 +1 位作者 周擎坤 范大鹏 《Journal of Central South University》 SCIE EI CAS 2013年第2期342-353,共12页
Accurate parameter identification is essential when designing controllers for inertially stabilized platforms (lSPs). But traditional identification methods suffer from observation measurement noise and operating re... Accurate parameter identification is essential when designing controllers for inertially stabilized platforms (lSPs). But traditional identification methods suffer from observation measurement noise and operating restrictions of ISPs. To address this issue, a novel identification method based on current command design and multilevel coordinate search (MCS) algorithm without any higher order measurement differentiations was proposed. The designed current commands were adopted to obtain parameter decoupled models with the platform operating under allowable conditions. MCS algorithm was employed to estimate the parameters based on parameter decoupled models. A comparison experiment between the proposed method and non-linear least square method was carried out and most of the relative errors of identified parameters obtained by the proposed method were below 10%. Simulation and experiment based on identified parameters were conducted. A velocity control structure was also developed with disturbance observer (DOB) for application in disturbance compensation control system of an ISR Experimental results show that the control scheme based on the identified parameters with DOB has the best disturbance rejection performance. It reduces the peak to peak value (PPV) of velocity error integral to 0.8 mrad which is much smaller than the value (10 mrad) obtained by the single velocity controller without DOB. Compared with the control scheme based on sweep model with DOB compensation, the proposed control scheme improves the PPV of velocity error integral by 1.625 times. 展开更多
关键词 parameter identification current command design multilevel coordinate search inertially stabilized platforms
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