首页> 外文会议>2016 IEEE PES PowerAfrica Conference >Analysis of an energy constrained power system and incorporation of demand response into the load shedding framework
【24h】

Analysis of an energy constrained power system and incorporation of demand response into the load shedding framework

机译:分析能源受限的电力系统并将需求响应纳入减负荷框架

获取原文
获取原文并翻译 | 示例

摘要

Summaery form only given: Zambia is currently facing an energy crisis. In the recent past ZESCO, the national electricity utility has heightened load shedding, throughout the country. The reason for this being attributed to insufficient water in the reservoirs at Kariba and Itezhitezhi due to “below average” rainfall experienced during the 2014/15 rainy season. The load shedding averages 6-10 hours per day and affects industries, businesses and domestic customers. Load shedding is the last measure used by an electric utility company to avoid a total blackout of the power system. Load shedding for such long hours has great economic impact especially on the mining sector which is the backbone of the Zambian economy. Essential loads like those found in the hospitals like neo-natal units and refrigeration are also greatly affected. This paper seeks to analyse an energy constrained system and to incorporate Demand response as a smarter way of managing the area under the load curve without denying the customer 6-10 hours of electricity supply. Demand response programs are designed to decrease electricity consumption or shift it from on peak to off-peak periods depending on consumers'preferences and lifestyles. Demand response programs can be used by electric system planners and operators as resource options for balancing supply and demand. Demand Response can be a more cost effective alternative than adding generation capabilities to meet the peak or occasional demand spikes. It is a transition from a service driven to a market driven system.
机译:仅给出摘要形式:赞比亚目前正面临能源危机。在最近的ZESCO中,国家电力公司在全国范围内加大了负荷削减的力度。其原因归因于2014/15雨季期间“低于平均水平”的降雨,导致Kariba和Itezhitezhi的水库水量不足。每天平均减少负载6-10个小时,影响行业,企业和家庭客户。减载是电力公司避免电力系统完全停电的最后措施。如此长时间的甩负荷对经济产生重大影响,特别是对采矿业来说,这是赞比亚经济的支柱。诸如新生儿病房和冷藏室等医院中的基本负荷也受到很大影响。本文旨在分析一个能源受限的系统,并将需求响应作为一种管理负荷曲线下面积的更智能方法,而又不会拒绝客户6-10个小时的电力供应。需求响应程序旨在减少耗电量或根据消费者的偏好和生活方式将其从高峰时段转变为非高峰时段。电力系统计划者和操作员可以将需求响应程序用作平衡供需的资源选择。与增加发电能力以满足高峰或偶尔的需求高峰相比,需求响应可以是更具成本效益的替代方案。这是从服务驱动到市场驱动的系统的过渡。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号